Showing posts with label compost. Show all posts
Showing posts with label compost. Show all posts

Tuesday, 26 January 2016

Conquering Compost

They say composting is easy. They say you just chuck your garden and kitchen waste in a big box and leave it a year. Then they talk about greens and browns, and layering, and mixing, and activating it if it's not going well. They talk about insulating it, ventilating it, aerating it, covering it, making sure it's not too wet, making sure it's not too dry. Then they talk about formulae; two thirds brown and one third green, or maybe it's 90% brown and 10% green (and what kind of waste do we create more of? Green!), or maybe it's half and half. Then some guy says you've gotta add ash or clay, and another says you've gotta buy worms, and another says you need a bokashi bin, and another says a hotbin is the only way, and another says you only get really good compost if your heap is three cubic yards. One guy says you have to turn it regularly and another guy says never turn it. Then there are the big questions: how hot does your heap get? Is that really properly-formed humus, or is it just decomposed organic matter? Let me tell you, compost is THE number one most hotly debated subject at our community veg-growing plot at FoodSmiles.

Me, I find life's too busy to worry about it very much. On our allotment, we have a two-cell bin made of pallets. We fill it up, it sinks a bit, we keep filling it up until we can't fill it any more, and then when we have to - usually every two years or so - we dig it all out and use the good stuff at the bottom and in the middle. There's always a lot of uncomposted stuff, on the top and round the edges where it's exposed to the air, so we just return it to the bottoms of the bins to keep going. It's slow going, and the compost isn't going to win any prizes and is usually still full of fibrous bits of root and twigs that didn't quite break down enough, and a few bright white bindweed roots to pick out, but it makes a satisfactory mulch, must contain plenty of nutrients, and disappears into the soil soon enough - and I certainly can't complain about the quality of my soil.


Last autumn, though, we were despairing about the size of our compost heap, which just didn't seem to be breaking down at all. It may be because we moved it into the part-shade of a tree, or because of the big piece of cardboard we threw in without tearing it up, or maybe we just produced more waste than usual for some reason. But we couldn't add any more to the mountain - we even had to start a new heap in another corner temporarily.


In November we started forking all the uncomposted matter off the top onto an empty bed. We didn't have time to finish the job and it just sat there all through December, but yesterday, at last, we got back to it. We forked out the rest of the uncomposted stuff, piled the good stuff into the right-hand bin (plus three plastic dustbins) ready for use, and piled the uncomposted stuff back into the left-hand bin.

We also wrapped black plastic sheeting round the bins and stapled it in place. Despite the popularity of compost bins constructed from old pallets and a lingering notion that bins should be well-ventilated, I've noticed lately that bins without ventilation seem to be much more effective, and by enclosing the waste you don't get a layer round the outside that dries out and doesn't break down. We'll have to find a lid as well, I think...


Somehow, almost everything fitted back into the bins (we did also fill three 80 litre plastic dustbins with good stuff), and despite mostly ignoring the bins for two years, one of them was 80% or more good compost and the other about 50%. The mountain is no more - hurrah!

I guess composting is easy...

Saturday, 21 March 2015

More Geeky Soil Stuff: My Soil Analysis Results!

As I've mentioned before, I resolved to get a proper lab analysis done of my soil this year, to identify any deficiencies and attempt to bring it to - or close to - the ideal mineral balance described in Steve Solomon's book The Intelligent Gardener: Growing Nutrient-Dense Food.

I took not just one but four soil samples. The allotment is perhaps the most important, but I also wanted to test the raised bed soil which gave poor growth last year and the soil of my garden veg bed, which did very well last year but which I suspected of a boron deficiency due to some hollow courgettes. Finally, I thought I might as well send off a sample of FoodSmiles soil as well, mostly out of curiosity.


To take a sample, you're supposed to cut regular-sized-and-shaped slices of soil, six inches deep and an inch or so across each way, from several points on the plot, to get a mix representative of the whole area. Professional soil-testers have a tube-shaped device they use to get a perfect even core of soil each time. I was just working with a spade and trowel... but I think I did good enough for a first-timer! For each sample, I put all the soil 'slices' in a bucket or bowl and let them air-dry near a radiator for a few days, then broke up any big lumps, picked out stones and twigs, mixed it all up really well and bagged up two cups of the soil for sending off.

Sending it off was a faff as well! I could only find one lab in the UK that would do the soil test described in Solomon's book - what's called a Mehlich 3 extraction along with pH, organic matter, total cation exchange capacity and base saturation - and it cost three times more than what it costs in Solomon's recommended lab in the US... So I sent my samples off to the US! I felt a bit guilty about the air miles, but I couldn't have afforded to do it any other way. Samples had to be labelled and double bagged, sealed very securely in a strong envelope with all the seams taped up, and an import permit and special label attached to the outside of the package to declare what was inside and show that I was allowed to send foreign soil to this address!


It must have made it through, because two weeks later, my results came by email, and you can see the full report here if you like. But most of the numbers are fairly meaningless until you take a deeper look; everything swings on the TCEC, which indicates the amount of nutrition a soil can hold, so XX lbs per acre of a nutrient might be way too much for a soil with a low TCEC, but not nearly enough for a soil with a high TCEC. Solomon provides worksheets to help crunch the numbers and figure out exactly what your soil has and what it needs.

A Note on Organics...

The soil amendment 'prescriptions' mentioned here, involving measured amounts of all sorts of mineral compounds, might seem to go against the grain for someone who is concerned with gardening organically and sustainably, and have certainly given me cause to think a bit about 'organic' versus 'chemical' fertilisers. But there are plenty of mineral soil amendments approved for organic use where a need is identified, and just because it's not organic compost or manure, doesn't mean a substance is necessarily harmful in any way. Adding pure mineral supplements carefully chosen according to measured needs is a very far cry from routinely applying synthetic, high-nitrate, petroleum-based mixes (many of which contain heavy metals) at maximum application rates, as is much too often done in modern agriculture; these kinds of chemical fertilisers feed the plants but diminish soil fertility. In his book Solomon spends quite a lot of time discussing the sustainability and impacts of different amendments, and before buying I will check out each one and decide individually whether I want to use it - but even though Solomon's method isn't 100% 'organic' all the time, these amendments are all designed to help the soil and its microlife, which is of key importance in this soil health business!

Allotment

The allotment soil has a pH of 7.1 - just above neutral which is what most veg-growers will aim for, with a range of 6.0-7.5 commonly recommended. 6.5 might be nearer to ideal, but since different veggies like slightly different conditions it's certainly good enough.

It contains 7.6% organic matter, which will supply more than enough of nitrogen through the growing season as it is digested by soil organisms. 7% is plenty - 4% is about the minimum it needs and 10% is more than a soil can efficiently use. More good news! I'm actually surprised it's this high, since I've never been good at adding organic stuff to the soil. I compost allotment waste and return it to the soil as and when it's ready, but only once in eight years have I bought in manure and compost to spread, and I know some gardeners do it religiously every year.

The TCEC is 13.1, which indicates a good level of nutrient-holding clay and humus in our soil. TCECs in very rich clay soils might be as high as 40 or more, but for the purposes of the analysis it only matters whether our TCEC is below or above 10, and above is a good result.

The main purpose of this exercise is to make sure the major cations - calcium, magnesium, potassium and sodium - are in balance, and a good supply of sulphur, phosphorus and trace nutrients are available. 68% of the TCEC should be calcium, 12% should be magnesium, 3 or 4% percent potassium and 1 or 2% sodium. The allotment soil has an excess of calcium and potassium and a deficiency of magnesium and sodium - a balance of 81%, 10%, 4.5% and 0.3%, so I'll take some action to adjust this balance. It also has very significant sulphur deficiency. Phosphorus is very slightly low but not enough to worry about.

Trace minerals measured are boron, iron, manganese, copper and zinc. In the allotment soil, iron, copper and zinc are plentiful (with more than twice the iron needed and more than four times the zinc!) but boron and manganese are very low, so I'll aim to add more of these.

The prescription to amend this soil is to add, per 100 square feet, 225g manganese sulphate, 120g sea salt, 110g agricultural sulphur, 60g magnesium oxide and 20g borax.

Garden soil

It was extremely difficult to get an accurately representative sample of the garden veg bed as it comprises two very different layers: a few inches of old bagged compost and used growbags on top, and a hard clay just underneath at a depth that varies across the bed... So my confidence in the accuracy of these results is lacking slightly, but I was interested to see them anyway.

The pH is 6.8 - very slightly acid and pretty perfect for growing vegetables. The organic matter was very high - 38% - but perhaps not surprising given the thick layer of old compost. The TCEC is high too at 17.9, probably thanks to the heavy clay.

The cation balance is heavily weighted to calcium and magnesium, with potassium slightly low and sodium very low. Funny how we're told salt is terrible for soil - actually a small amount is very important, but it looks like most of our soils don't even have that much. Sulphur and phosphorus are both significantly low, as are boron, manganese, copper and zinc. The boron deficiency I suspected is shown, but actually it's only very slightly lower than any of the other soils I had tested.

The prescription for this soil is 760g monoammonium phosphate, 414g sea salt, 212g manganese sulphate, 110g sulphur, 40g zinc sulphate, 28g copper sulphate and 20g borax per 100 square feet. I think I might take a cautious approach to making the amendments, considering I'm not confident in the consistency of my soil sample, and just aim to fix the worst of it this time round.

Raised Beds

Now this one was interesting. As I described at length a few posts ago, this soil, bought in to fill my new raised beds about this time last year, gave extremely poor growth last season. I suspected an overabundance of potassium and perhaps a low pH, and added calcium and nitrogen to try to counter those things and help plant growth but it didn't really help.

In fact, this is a calcareous soil with an overabundance of free lime and a high pH which makes trace nutrients unavailable to plants. If I pour vinegar onto the soil, it actually fizzes! This means the test I ordered isn't accurate, as a Mehlich 3 extraction can't test accurately where high lime is present - I should have done the vinegar test first and ordered a different soil test... Doh!

The soil shows a pH of 7.7 but this is likely to be artificially low. There does indeed appear to be a high level of potassium, but the level of lime and high pH is clearly the bigger problem and, save ordering a new soil test and a whole load more mucking about, I think the easiest way forward is to address that first by applying sulphur, which is turned into sulphuric acid by soil bacteria and neutralises the surplus calcium carbonate, turning it into highly soluble gypsum which will then easily leach from the soil. This takes time; a year or more. So in the meantime it will be important to only grow what is happy in these beds; so far garlic, brassicas, lettuces, carrots and beets; and to feed plants with a foliar spray to ensure they get the trace elements they need.

I have real trouble understanding how a soil mix that was obviously so high in manure and woody waste can be so very high in lime, but I guess it looks like my lime application last year may have only made things worse - doh again!

FoodSmiles

The FoodSmiles soil has a pH of 7.3 - right at the high end of a good range - a TCEC of 15.2, and 7.6% organic matter. Its cation balance is not too far from the target, with small excesses of calcium, magnesium and potassium but a deficiency of sodium. Phosphorus and sulphur are both very low. Like the allotment, it has very high levels of iron and zinc, but it is low in boron, copper and manganese.

Amending this soil with mineral applications would be a whole different ball game, since it is Soil Association certified land and we'd have to show a clear need for every amendment and have it approved in advance - and we've got more than enough to do at the moment anyway! But it hasn't had a lot of organic matter added in recent years and I expect applying manure would bring a beneficial pH change. IF I was going to tackle anything else, the priority would be to amend the sulphur and phosphorus levels, but at the moment the soil is growing crops very well indeed.

Some Thoughts

As I write this, I'm wondering about those high levels of iron and zinc... Solomon warns that tiny flakes of rust or galvanizing from the tool used to take the samples can inflate these levels. I didn't have a steel tool I could do it with but I did clean my trowel thoroughly and make sure nothing looked like it was going to come off it... If I do this again in future I'll be sure to be prepared and use stainless steel instead just in case!

All the soils tested require, according to this method, a significant application of sea salt, which feels a bit wrong but I'm doing my best to trust the method and go with it!

I have high hopes that if I correct the sulphur level on the allotment, I might be able to grow onions and garlic there again; sulphur protects against fungus so perhaps the lack of it allows the white rot to thrive.

My next task, then, is to read up on and source the various minerals needed to amend the allotment soil and garden bed, and sulphur for the raised beds. It's quite a bit of work, all in all, but it's absolutely fascinating and I'm really looking forward to seeing the results!

Sunday, 18 January 2015

A Tale of Three Raised Beds

When we first moved into the 'granny annex' at Mum and Dad's house I could only grow vegetables in pots and grow bags on and around the patio - their shrubby, woodlandy garden didn't have any space for vegetables and most of it was too shady anyway. That was okay by me - we had the allotment too, after all. But plant pots have a funny way of multiplying, don't they...? And with Mum and Dad moving toward organic food more and more (100% now I believe!), last year they gave me some more space to grow food for the whole family.

We planned three new veg-growing areas; one garden bed in a rare sunny spot where the shrubs weren't thriving any more, a large raised bed just in front of the patio which was occupied by a multitude of pots and tubs, and two smaller raised beds at the shadier end of the garden, where a small lawn was becoming overrun with moss and weeds and I had already put some moveable growbeds and containers for leafy crops (pic below). We decided against growing straight into the ground mostly because the garden soil is extremely heavy clay - not much fun to work with, but it'll make an excellent nutritious subsoil!


The timing was perfect; early spring when it warm enough to work outside but I'd still be able to sow everything in time. I cleared the garden bed, re-edged it to a slightly higher level and topped it off with the previous year's growbags and tubs. I hacked back the honeysuckle and snowberry that keep moving in from under the fence and planted strawberries round the edge, and it became a nursery bed for young plants for a while, while I worked on the other areas...


The big raised bed was to go on a slated area, so my first task was to scrape back all the slate chips.


We drew up some plans and ordered half sleepers (from UK Sleepers) cut from oak - a naturally long-lasting hardwood that doesn't need treating with chemicals to protect it.


I enlisted the help of my friend Dave (and his power tools!) to cut the wood to size and build the beds, using long outdoor-use 'green organic coated' timber drive screws from Wickes...



And a day and a half later all three were done and ready for filling!

 

I ordered the four tonnes of  'Veggie Gold' compost to fill them; a "ready-to-use" peat-free mix of compost, topsoil and manure, recommended for raised veg beds, which promised to be from sustainable sources with no added chemicals. I had to wait a while for it to arrive, which was a tad frustrating, but eventually it did...


...and the next two days were spent wheelbarrowing compost from the front of the house to the back (by myself, I'd like to add!). The larger bed has a weed membrane beneath it anyway, but in the two smaller beds I laid cardboard at the bottom to provide a barrier against weeds (until it rots, by which time they should have died from lack of light anyway).

 

Not a bad job, I think, and certainly a lot tidier than a jumble of containers. Hurrah! I got sowing right away, planning a row of peppers and chillies along the back of the big bed, some dwarf beans in front of them, and square-foot patches of different salad veg and small root crops along the front, with a few herbs and flowers dotted around as well. The two shady beds would take leafy greens - mostly kale and chard.


A few weeks in, I realised that all was not well... Things were growing rather strangely and inconsistently. Along a row of mustard seeds, the seedlings had grown large in patches and stalled at a tiny size in others. Some had bolted. A poached egg plant and some tiny spring onions I'd transplanted had yellowed very badly and become stunted. Spinach plants and radishes had bolted extremely prematurely, before reaching anything like a usable size.


A few weeks later still, little had changed. Those things that were growing were growing painfully slowly, or running straight to seed, while my crops on the allotment and in the garden bed in the corner were doing just fine. I began an experiment which confirmed my worst suspicions...


The two pots on the left contain the same 'Veggie Gold' compost that I filled the raised beds with; the two on the right contain old multipurpose compost out of one of the previous year's containers. The bottom two also have Complete Organic Fertiliser added. I sowed spinach seeds in all four pots at the same time, and thinned to three seedlings per pot after germination. The results are pretty clear I'd say - wouldn't you?

The company I had bought the stuff from - Compost Direct - didn't want to know. After three emails to them they finally replied to say that they only ever had good feedback about this compost and I should just add some more nitrogen or general-purpose fertiliser. I did, in the forms of chicken manure, chicken manure 'tea', and a commercial liquid feed. Nothing helped. I sent them the picture above. They didn't care. Just keep adding extra feed, they said. My blood boiled... All that sweat and hard work and money and anticipation and I couldn't even grow anything in my raised beds!

Luckily there were a few things that did seem to grow okay in the soil; little gem lettuces were slow but getting bigger, the carrots and beetroots didn't seem to mind, and the kale and chard down the garden was not too bad.


After giving it some thought, I suspected perhaps the problem was an excess of potassium; that would explain why adding more nitrogen hadn't helped leaf growth, as potassium blocks it. Potassium also encourages fruiting (perhaps hence the early bolting), and is prevalent in woody matter and straw - there had been loads of partially-composted woody stuff and strawy manure in the compost mix. I try not to consider myself a soil mineral expert after reading just one book but I still feel this is pretty likely the problem! And how do you get too much potassium out of soil? You wait for the rain to leach it out...


Growth improved very gradually throughout the year. I did get a couple of handfuls of beans even though the plants were more dwarf than ever, and the perpetual spinach got going after a while. I took to planting lots of spare plants and more lettuces in the bed - the more plants grow in it, the more potassium they use up, right? Nothing really thrived. I even let the weeds grow! I got a few nice peppers, though again the plants were small. The lettuces, it turned out, tasted starchy and bitter. My cucumbers, which I'd planted in a large container filled with the same compost, yellowed and died.


Happily, however, my bed in the corner of the garden was doing wonderfully! Two huge courgette plants gave us more than six of us could eat from June to September, and from all around them we had strawberries, lovage, tarragon, parsley, mangetout and drying beans. Calendula filled in all the gaps and brought bees buzzing to that corner of the garden. What a delight! I haven't grown courgettes at the allotment for years since we don't go there often enough to pick them, so I've made do with small courgette plants confined to pots and sulking. To see them going crazy like this - like they're meant to - was great!


The growth in the oak beds has continued to improve slowly and I am feeling quietly confident that I'll get better results this year. At the moment the large one has that same perpetual spinach (though it's rather slug-eaten just now!), some new and healthy garlic shoots, a tangle of old carrots and beetroots and a few sorry-looking herbs. The compost level has sunk a lot - nearly 25% - which will give me an opportunity to top it up with something better (though I still have nearly a half-ton of the 'Veggie Gold' sitting around...). I also plan to get the soil lab-tested at the same time as I get the allotment soil done - that'll be interesting... The kale in the bottom bed never really got very big - though caterpillars can be blamed for some of that - but it's okay, and I'm looking forward to a bit more growing success in the months ahead...



Saturday, 10 January 2015

Allotment Tour

We finally made it to the allotment this week, after having not managed to go at all during December, and did some much-needed catching up.

Here it is:


Of course, it doesn't look like much at the moment, but there's plenty going on, and considering what a battle we've always had with couchgrass and other perennial weeds we're pretty pleased with it. But it's been a long time since I took or shared any pictures of it, so let me give you the tour...

It's split roughly into seven sections, more by accident than design, with woodchip paths in between them, lined with bricks and some cheap weedproof fabric that isn't quite doing the job any more.


Section one, above, is where our compost bins are. We built them last spring to replace our old ones, in another spot, which were falling apart, and we relocated them here because it's under the shade of an elder tree and the soil is full of roots - everything we've grown here in the past has struggled a bit, so it's a good spot to use for something other than plants! The area covered in weedproof fabric over there has also been problematic, but we're determined to get it under control this year and plant a new fruit patch here, mulching heavily between the plants to try to beat the couchgrass!


Section two is the first of our three rotation beds. Last year we grew potatoes here - now the near half is covered in a phacelia green manure (and quite a few annual weeds) and the far half has rows of spinach and chard (again with the weeds...) There's also a row of scabiosa I planted out too late to flower, but it seems to be coming through the winter a treat! After we clear this patch in late spring we'll grow squashes and pumpkins here.


Section three (our second rotation bed) is where our root crops were grown, though it's beginning to look a little sparse now. The spring cabbages in the foreground are at a variety of stages - we picked our first this week but others are not ready yet, and one has rotted! :-( Beyond that is a small row of calabrese which should produce in the spring, some carrots, parsnips, swedes, celery and leeks. We've just finished the beetroots. When this patch is clear in early to mid spring, we'll plant our potatoes here.


Section four (our third rotation bed) was pumpkins and squashes last year, but now it's bare, which is pretty disappointing because I sowed most of it with field beans (a green manure) and broad beans in November. (The cardboard is there to protect a patch I left unsown, intending to make a second sowing in March.) I guess I left it just a little too late; they say early November is the latest you should sow but we did it near the end of the month. Still, never mind, there's plenty of time to sow more broad beans, and our root veg and leeks will go here from March onwards.


Section five is what we call our perennials bed, though it's not the only one! We planted it last year with asparagus (along the left hand side) strawberries (in the raised beds) and globe artichokes (far end, under little mounds of woodchip mulch and black plastic to protect the crowns from frost), as well as some parsley, sage, lavender and lemon balm. It's done okay so far but the plants are still getting established - hopefully they will be even better this year. I'd also like to plant some perennial kale among the sage - supposedly sage keeps cabbage white butterflies away, but we will see!


Section six is home to our pond (far end), two columnar 'spur' fruit trees, and our old strawberry patch (this end) which is now under a mulch of thick cardboard until we can dig it over. There used to be a really nice herb garden planted around the pond and the trees, but over the years it's become swamped with couchgrass and very few plants are left, so this area is up for redevelopment this year... We will replant the herb garden - perhaps through a membrane to keep the grass down - and the old strawberry bed will become a flower patch! We'll also be giving away the pear tree - we don't like the fruit! - and we need to right the very wonky apple tree before it goes over! We'll have to do this soon while the trees are still dormant - they won't like having their roots messed with.


Finally, section seven is where we keep our tools in our storage bench, and it's where our old compost bins were (on the right). That spot is now a lovely fertile patch where we'll put a plastic greenhouse this year for a few tomatoes, peppers and cucumbers. We've also got a little comfrey patch here which we use to feed the compost and make plant feed, and at the far end is a little bed which used to grow asparagus, though it's almost all been choked out by grass - another redevelopment project for this year. I think it's just big enough for a couple of bean teepees... or I might decide to grow the beans at home and grow sweet peas here instead, or some more fruit! I'd also like to narrow this path a bit to maximise the growing space in section six on the left.

You'll notice there's not much space here for summer fruiting crops like French beans, courgettes and tomatoes, nor salads or brassicas. A few years ago we decided we were better off only growing reasonably low-maintenance veg at the allotment, since we struggle to get here enough to look after them. It's working out really well, and we can still grow those things at home where we can keep an eye on them and pick them regularly! We don't grow many brassicas simply because we find them so problematic (what with flea beetles, whitefly, rootfly, slugs, three kinds of caterpillars and pigeons all wanting a share!) but we are adding them to our repertoire gradually. And we don't grow onions or shallots because we have dreadful white rot in the soil which destroys the crop, but we manage a bit of garlic and plenty of spring onions at home, and I'm sure we'll return to onion-growing at some point...

During our trip on Monday we pruned the apple and pear trees and made a good job of weeding and tidying the perennials bed, cutting down last year's asparagus ferns, herb flower spikes and sunflower stems. Here's a 'before' picture!


There's much more weeding to be done before things start growing again in spring, and we need to make a start on that digging very soon too. We're all crossing our fingers for no flooding this year, so we can keep at it!

Friday, 11 April 2014

Complete Organic Fertiliser

My last post, Grow Your Own Nutrition, was all about how I'm intending to remineralise my soil for the best results in my garden and allotment, and how it's really all about feeding the soil, not the plants - if you missed it please do take a look. The best way to remineralise a soil is to send off a soil sample to a lab, find out exactly what it's got and calculate exactly what it needs, and my new favourite book The Intelligent Gardener can help to do that. But The Intelligent Gardener offers a simpler one-size-fits-all solution too, and because I've got a lot else going on this spring and I could really do with another read-through of the book before I jump in too deep, I've decided to use this recommended 'Complete Organic Fertiliser' (COF) for my plot this year. Steve Solomon, the author, stresses that COF has its limitations and can cause its own imbalances if used year on year, but promises much better results - better growth, better plant health, better flavour and far more nutritious food - than with the conventional organic way of feeding soil just with compost and manure.

There's a version of the COF recipe online here in Solomon's own words, so it can't hurt to share the recipe I've settled on with you here. In the book, Solomon recommends a few other optional additions, but I'm keeping it simple this year and sticking to the main ingredients below:

4 parts seedmeal
Seedmeal is what's left over when oils are pressed, and added to soil it provides a natural, highly-effective, slow-release source of nitrogen as the soil organisms feed on it.

1/3 part lime, 1/3 part dolomite lime, 1/3 part gypsum
The lime provides calcium - probably the most important soil mineral - while the dolomite and gypsum provide more calcium plus doses of magnesium and sulphur, respectively.

1 part bonemeal
This provides phosphorus. There are other things you could use, such as hard or soft rock phosphate - arguably better as it doesn't contain the sodium that bonemeal does - but bonemeal is more sustainable and more easily available, and soil needs a little sodium anyway.

1 part seaweed meal
Seaweed meal is rich in trace elements and also provides plant hormones which boost plants' natural defences.

This mix is to be applied once a year, at a rate of 4-6 litres per 100 square feet, along with a modest amount of compost or manure. If the thought of adding lime to soil every year challenges you, or you're wondering why there's no potassium in the mix (actually, there's just a little in the seedmeal), do go back and read my previous post!


Bonemeal and lime were easy to find in a garden centre, and I ordered the seaweed meal, dolomite and gypsum from The Organic Gardening Catalogue. The seedmeal presented a bit more of a challenge: it's apparently sold as animal feed in the US and Tasmania, where Solomon lives, but here in the UK I struggled to find it anywhere - but I eventually found a friendly local farmer growing rapeseed for oil who was happy to sell me a couple of big bagfuls. It came as quite large pellets, which wouldn't mix well with the powdered ingredients, so I've been stomping on it in a washing up bowl to smash the pellets up.

 

They don't break down completely - it'd take ages! - but it's a big improvement. I found using a stick blender worked really well too - until the thing overheated. Now I have to buy a new stick blender... Doh!


I've been making COF in small 7 litre batches using 1 litre as 1 part - partly because I have only ordinary-sized buckets to mix it in, partly because I'm using it bit-by-bit anyway as each bed gets prepared for planting, and partly to reduce any effects of the stuff not mixing together evenly: if I find a pile of seedmeal pellets at the bottom of the bucket it's easy enough to remedy on a small area.

It's dusty stuff, and I've had to be careful to mix it (and spread it) when winds are low to stop all the gypsum and dolomite blowing away!


Solomon recommends digging it into the soil, but it can also just be raked into the surface for no dig plots like (most of) mine.

I've spread it over much of the plot already and I intend to use it everywhere. It's too early to see the results, but you can be sure I'll keep you posted!

Friday, 4 April 2014

Grow Your Own Nutrition!

Okay, this post is going to be long, and I'm sorry about that, but I promise it will be absolutely worth it! During the winter I had the pleasure of reading two fascinating and wonderful books about soil nutrition and its impact on our health, and I've got to tell you why my approach to growing food will never be the same again.


The first book, which I just happened upon while idly browsing for free Kindle books one day, was Beyond Organic: Growing for Maximum Nutrition by Dr Jana Bogs. It kicks off with an analysis showing how vastly different the levels of vitamins and minerals could be in vegetables grown in different soils across the US: "not by just 10 or 20 percent, or even a two-fold difference..." but "...as great as 1,938ppm (parts per million) iron in some tomatoes as opposed to only 1ppm in other tomatoes of the same variety. This is nearly a 2000-fold difference!" Not rocket science, is it, to work out that more nutritious soils would grow more nutritious veggies? But I'd always assumed that a carrot was a carrot was a carrot, and any variations would be so small as to be irrelevant.

It's funny the way we often just go on doing things the way we were taught, without really thinking about them. For years I've believed it when I was told that all my soil needed was as much compost as I could make, plus a bit of horse manure or fish, blood and bone for a boost, and some lime every few years to keep the pH level where it should be. 

Nutrition levels in our food have dropped off by around 75% in the last hundred years or so. Concerns about depleted soils and nutrition deficiency leading to poor health in Americans were first brought to the US Senate way back in 1936. Between 1948 and 1991, Australia's 'Commonwealth Scientific and Industrial Research Organization' recorded an 80% drop in vitamin C in apples, an 82% drop in magnesium in broccoli, a 75% drop in iron in potatoes and an 89% drop in calcium in potatoes, and a similar American study showed that roughly half the vitamins in vegetables had significantly decreased between 1950 and 1999. An analysis on canned peaches over a hundred years old found that they contained more vitamins, even after a hundred years in a can, than today's canned peaches do! We'd need to eat a huge amount of today's fruit and veg to get the same nutrients we would have got from our 'five-a-day' a hundred or a thousand years ago. Is it any wonder we're all fat and sick??

Dr Bogs explains some of the complex interplay between nutrients in plants: minerals taken up by their roots activate enzymes which create the proteins, fats and vitamins we need. Though plants need only around 20 nutrients to survive (some say up to 42), if given a fuller range of nutrients they are capable of generating all the 50+ (some say up to 90) nutrients that we humans need. In other words, a vegetable might have everything it needs to reach maturity looking and tasting good, but that doesn't mean it has reached its full potential by producing all the nutrition it can, and should, contain: plants pass on a certain amount of nutrition from the soil (iron, copper, magnesium, calcium) but they're also little factories producing fatty acids, proteins and vitamins, as long as they have the building blocks to do so. You might have plied your plot with N:P:K fertilisers, but have you ever wondered whether your veggies get enough zinc, cobalt, boron, molybdenum or selenium? I hadn't!


The second book, The Intelligent Gardener: Growing Nutrient Dense Food by Steve Solomon, was even more eye-opening and exciting, not to mention more practical, offering a full hands-on approach to finding out what your soil needs and making it the best it can be, and I have to thank Douglas of @SweetPeaSalads for recommending it to me! This book busts some myths about the usual organic approach to feeding the soil, and offers a really good and easy-to-understand lesson in soil science. Solomon speaks from a broad range of experience from gardening on a variety of soils in several different parts of the world, and tells of healthier, tastier plants, a complete halt to fungal disease, and dramatic improvements in his own health when the soil on which he grows his food is properly nutritionally balanced. He also keeps a free online library - The Soil and Health Library - full of books, papers and studies on holistic agriculture, the connections between soil and health, and more, and he draws heavily on the works in this library to explain his theory and method.

He particularly highlights a study published in 1939 by one Weston Price called Nutrition and Physical Degeneration. Price visited remote communities around the world; tribes and isolated villages that as yet had no access to the mass-produced "foods of civilization", but survived on what they hunted, foraged or grew on a small scale locally with old methods. Despite his subjects having a wide variety of colours and shapes, of diets and of lifestyles, across the board their health was far, far better and when analysed, their foods were found to contain a huge amount more nutrition; for example, the primitive people's diets contained at least ten times more vitamins A and D than the American diet even back in the 1930s! Steve Solomon believes that the ideal human diet "has more to do with the soil food comes from than which foods are chosen"; some of these people ate no animal products while others ate virtually no vegetables, and others subsisted on just fish and oats supplemented with a few leafy greens. You can read Solomon's in-depth review of Price's book here, and I highly recommend it.

It would be impossible to share everything of importance in The Intelligent Gardener here - it's a fabulous and fascinating book - but here are my main take-aways:

Leaching is the factor with the biggest impact on nutrient density. Leaching is what happens when soil becomes saturated with rain, which dissolves a lot of the soil minerals and eventually drains downward carrying those minerals with it so that they end up in the subsoil or offsite altogether. Leaching is worse in climates where evaporation is also low - warmer weather slows leaching - and in climates where there is a lot of heavy rain in a short period of time. It's also a great deal worse where soil is left bare. Some nutrients leach out of soil more easily than others: calcium goes fast, while potassium tends to get left behind. This leads to imbalances.

Loss of soil microlife and organic matter is another major factor that harms nutrient density, since micro-organisms help to release the nutrients from the soil for use by plants, and high-quality humus holds a lot of nutrition in the soil and helps prevent leaching! This isn't generally a big problem for us organic food-gardeners, but industrial farming methods have devastated agricultural soils.

Compost isn't enough! Composting waste from the plot to feed the plot cannot provide all the nutrition the plot needs - unless the plot is already perfectly balanced. In fact, feeding a plot exclusively with compost from the plot will only magnify existing imbalances! There's a sustainability discussion to be had here: feeding your plot with compost alone is a permaculture ideal; a natural recycling process where we make the most of our waste to fulfil another need without importing costly additional materials from elsewhere. But Solomon explains that a soil can virtually sustain itself nutritionally - once it's properly healthy and balanced and cared for.

Remineralisation is the answer, Solomon says. Soils that have not been cared for properly have lost their ability to stay balanced, and their mineral content has been devastated. Solomon's own experiences and research (and Jana Bogs' studies) show that remineralised soil allows crops to reach their full genetic potential, enjoy proper health with much less chance of pest attack and disease, and provide the maximum nutrition for us.

Total Cation Exchange Capacity (TCEC) is a measurement (calculated in a lab) of how much minerals a soil can hold. Clay and humus particles in the soil have a tiny electrical charge that makes positively charged mineral particles in the soil attach to them - a bit like static cling. These positively charged particles are called cations, and include calcium, magnesium, potassium, sodium and others. The clay and humus particles have a set number of 'exchange points' where cations can stick, so a soil with lots of clay and humus has a high TCEC and a lot of these exchange points, and a light sandy soil with very little organic matter has a low TCEC and few exchange points. Some cations cling harder than others: calcium will always take first priority, magnesium second and the others will follow suit if there's space left. Solomon likens the TCEC to the number of shelves in a pantry. Calcium will fill up the shelves first and the others fill up the gaps in order. If the shelves are empty, they just fill up with air - hydrogen actually, from the soil water. As well as from the TCEC, plants can also get nutrition from the soil solution: mineral particles in the soil (or in slow-release fertilisers) breaking down slowly in tiny amounts and dissolving in the soil water. But that soon runs out and needs recharging. The soil solution is like plates on the table. When the plates are empty they can be refilled from the pantry (the TCEC). The bigger the pantry, the longer the meal goes on. Thus while a plant relying on nutrients in the soil solution would require very regular feeding to keep up with its needs, the TCEC buffers plants against nutritional ups and downs: with big reserves, their plates are never empty!

Balance, balance, balance. It's not about having a certain weight or volume of each nutrient in your soil, nor about throwing all the nutrients you can at it; too much of a good thing can lead to overdosing and cause even more problems. Instead, it's all about balance and the interplay between the nutrients.

Not all compost is made equal. As we all know, organic matter is vital for healthy soil. It improves texture, structure, and moisture retention. Most crucially, it feeds soil life, and it holds anions (negatively-charged mineral particles such as phosphorus, sulphur, nitrogen and boron) in the soil. But Solomon warns against adding too much organic matter and recommends only a 1/4" to 1/2" inch layer per year! Too much compost, he says, can overload the soil and its nutrients can end up just going to waste. He also warns that you never know what you're getting when you buy in compost (or organic waste to compost yourself); it may contain contaminants, or you could be importing unbalanced material that adds to your soil's imbalances without you knowing it. Most crucially, he teaches that much of our home-made compost (and shop-bought compost) is only partially decomposed organic matter, but our goal should be truly mature humus...

Humus and clay, clay and humus. These are the two most important components of soil, and they must both be present in abundance to hold a lot of nutrition. Humus is organic matter that has broken down to a point of stability and will change no further. It stays in the soil, instead of breaking down and disappearing. And while clay holds cations in the soil, humus holds both cations and anions. But great humus needs clay to form properly, so it will only form in your compost heap if you add enough clay to the heap as well. Solomon recommends adding around 5% by volume soil, of which 40% should be clay, to your compost heap. If your soil doesn't contain much clay, he recommends finding some, creating a clay slurry with water in a bucket, and sprinkling it generously between layers! Humus might also form in the ground when you add your partially-decomposed compost to a clayey soil - but when added to a light, low-clay soil, little humus will form, if any, and the organic matter will rot away to nothing, and so light sandy soils have great difficulty building up a useful level of organic matter.


Calcium is arguably the most important mineral in a garden soil, not because plants need a lot of it, but because it is critical for good soil structure: not enough calcium but too much of the other cations (especially magnesium) leads to a closed and airless soil structure in which microlife cannot thrive and other nutrients remain unavailable. Calcium is also the mineral most often lacking, as it's so easily leached away. A soil's TCEC should be around 68% full of calcium.

Magnesium takes second priority after calcium, when it comes to sticking to these exchange points in the soil, so it's the magnesium/calcium balance which will most often cause a problem. Magnesium is present in dolomite lime, often used by organic gardeners, so care must be taken to avoid an excessive build-up. Magnesium should fill around 12% of the soil's TCEC.

Potassium always rolls to the front of the pantry shelves, so if there's an abundance of it, plants use it first instead of reaching to the back for the other cations. When plants have lots of potassium they make lots of sugars and starches, but fewer proteins and vitamins and other more important nutrients. An excess of potassium, therefore, can boost yields, but those yields will be lower in nutrition than they should be, and higher in calories. Potassium can accumulate in soils because it doesn't leach away as much as other cations, and because imported composts made with hay, straw and woody wastes are often very high in it (potassium accumulates in the structural parts of plants; the trunks, barks and stems). I guess endlessly throwing N:P:K fertiliser at a plot might well add to this imbalance too, and presumably potassium is a particularly beneficial yield-booster for commercial growers whose primary concern is the size of the crop. Solomon recommends a soil balance that leaves potassium "just a little bit scarce" - just a few percent of the TCEC - for crops with the highest nutrition.

Sodium. We all know salt isn't good for most plants, but a small amount of sodium in soil is crucial and some crops need it. However, Solomon warns that growers using tapwater to irrigate their crops should be aware of the sodium level in their irrigation water. Annually, twelve inches of water containing 50ppm sodium would bring 200lbs per acre of sodium! There's something I'd never considered before! My local mains water contains an average 17ppm sodium, according to an analysis on my water company's website, but I have no idea how many inches of it I put on my soil... There should be around 1-2% sodium in the TCEC.

Phosphorus is a controversial soil amendment, since it is mined from the ground and we are steadily running out - but even a slight deficiency slows plant growth. Many agricultural soils are severely depleted of phosphorus and heavily dependent on phosphate fertilisers, but a healthy balanced soil can hold on to phosphorus for decades, because phosphorus is held in the soil by humus. If it fails to connect with humus, it soon connects with other minerals and becomes insoluble iron phosphate or calcium phosphate instead, and remains unavailable to plants long-term. Solomon suggests there should be around the same amount of phosphorus as potassium in soil, but that it should be added gradually over a number of years to ensure as little as possible goes to waste. Bonemeal provides a sustainable source, but comes with additional sodium and calcium too.

Nitrogen is crucial for healthy green growth: it's vital for production of the plant protein chlorophyll, which plants absolutely depend on for photosynthesis and energy. Dark leafy greens grown on fully mineralised soil can contain up to 20% protein - as much as beef steak! Nitrogen is released when soil organisms feed on organic matter - annually, every 1% of organic matter existing in a soil will provide 15-25lbs of nitrogen per acre, and to produce a good crop, 100lbs/acre is needed. So a healthy soil with 4-7% organic matter should have plenty of nitrogen available (although if it is hitherto dependent on nitrogen fertilisers, it might need weaning off them first). Solomon also advocates digging in leguminous green manures to provide nitrogen naturally, and points out that a healthy stand of field beans can provide the full 100lbs/acre needed.

Sulphur is a really interesting nutrient which helps plants to form amino acids (proteins) and enzymes, and boosts flavour. While we see sulphur as a fungicide and dust it on our plants as a defence, Solomon suggests that fungal disease is actually a symptom of sulphur deficiency, and describes how the onion root-rot on his plot completely disappeared when he rebalanced his soil. This is great news for me, as I've had to give up growing onions on my allotment thanks to my white rot problem! Sulphur is another anion, held in the soil by humus, and when it dissolves into the soil solution it bonds with cations to become a water soluble sulphate (iron sulphate, calcium sulphate, zinc sulphate etc.) Thus too much sulphur can leach cations from the soil - or it can be used, with care, to deliberately deal with a cation excess.


Micro-nutrients and trace nutrients are vital for maximum plant health and maximum nutrition too, and Solomon reveals the amounts needed for good balance and recommends amendments such as seaweed or Azomite for adding trace elements. Surprisingly, he's not such a fan of rock dust, and his analysis of it makes interesting reading.

pH. Wow, now this is important! pH is NOT the be-all-and-end-all of soil health, but a side-effect of the chemical and microbiological activity in the soil. It's not really as meaningful as we tend to think, and it fluctuates in a much more complex way than most of us know! pH stands for 'potential hydrogen' and is defined as the density of hydrogen atoms in water (or in a solution of a substance, such as soil). All the exchange points in the soil must always be filled up, so if there is no calcium, magnesium or other useful minerals around, hydrogen atoms from the water in the soil will stick instead, and the soil will contain a lot of hydrogen and have a low pH (an acidic soil). A soil rich in cations such as calcium and magnesium, on the other hand, has very little hydrogen and a high pH (an alkaline soil). So the pH of your soil can indicate how nutrient-rich it is - certainly an acid soil is lacking in cations. BUT a soil high in cations (alkaline) may have completely the wrong balance of cations and still benefit from liming, and in fact, the liming might not raise the pH further (since the new calcium ions knock off and replace the excess magnesium, potassium or sodium ions) but allow it to fall because correcting the balance allows the microlife to thrive again and kicks off the normal cycles of nitrate release and so on!

Soil testing is the only way to really know what's going on in a soil, and this is the method Solomon recommends to get the maximum potential out of any food-growing plot. The book explains how to take a soil sample and where to send it, and provides worksheets for readers to interpret the results and work out a perfect prescription of amendments for their soil. He also acknowledges that a soil test and a bunch of calculations won't be for everyone and might be severely over the top in a very small plot - so he offers a generic one-size-fits-all solution too, which he promises will greatly improve virtually all garden soils and increase its benefits year by year. He calls this his Complete Organic Fertiliser, or COF.

The Intelligent Gardener is a garden-changing book - maybe even a life-changing book - and I thoroughly recommend it to all home-growers. It's the kind of book that, once you've read and understood it, you just have to put into action. Steve Solomon believes that "many of our current social problems would also vanish by themselves, if only the mass average health of people were uplifted", and I'm inclined to agree, having seen the enormous variation possible in the nutrient content of our foods, and considering how far the impact of an unhealthy soil can reach into every part of our diets. If I'm going to grow my own food, then I want to do it properly and really get the best out of it. And if brilliant health is within my grasp (and my family's), just by changing what I feed my soil... well, no-one's getting in my way!

I intend to have my soil analysed and to remineralise it with The Intelligent Gardener's guidance, but not this year, with so much else going on. This year I'm trying Steve Solomon's Complete Organic Fertiliser (more on this in a future post), both on the allotment and on my beds at home, and I have high hopes for some excellent results.

I hope you're itching to go out and read this book for yourself right away! (I don't get anything for that, by the way.) But if money's tight or you're not convinced yet, there are three great interviews with Steve Solomon available free on the Ruminant Podcast website, here, here and here - do have a listen. And watch this space for more on Complete Organic Fertiliser...

Tuesday, 25 March 2014

Allotment Week, Part One: A Good Tidy Up

Every year, in the middle of March, Eddie and I take a week off together with the primary intention of getting the allotment in order for the growing season ahead. To be honest, it rarely works out like that; weather or household tasks usually get in the way and we don't tend to get as much done as we'd like - if I recall correctly, the plot was under snow this time last year! - but the intention is there. Well, last week was our "allotment week 2014", and I'm pleased to report that it was rather jolly good!

First things first: After seven years in the elements, our trusty storage bench neither functioned as a bench, nor kept the contents dry any more, and definitely needed replacing. You gotta have somewhere to sit!


I'd have liked to get something non-plastic, but wooden options are much more expensive and require more care and maintenance, so I confess we went for plastic again. We did dutifully take the old one to the 'rigid plastics' recycling bin at the tip though!


Our new bench looks pretty good and seems a bit more insect-proof than the first! Without a shed, we really rely on this space to keep all our tools and bits and pieces.


Next, we badly needed a new compost bin. Our old one is seven years old, just like our bench, and literally falling apart, with one side threatening to burst and spill compost all over the path...

 

With a few pallets from my brother's workplace and a bulk pallet delivery from the local Wood Recycling Centre, we soon had a new one built at the opposite end of the plot.


We moved it here for a few reasons: first, it's the shadiest part of the plot, under an elder tree, and the soil seems to be very poor here and full of roots; nothing we've planted here has ever done well. Second, the grass and nettles here go crazy and it'll be a sure way to stamp them out (while cutting any remaining nettle growth to feed to the compost). And third, we can use the sunny and now super-fertile spot where the old bin used to be for something else! Once we've finished deconstructing the poor thing and moved all the half-finished compost, that is...


You might have noticed we built a little flower bed next to the compost bin too, alongside the path. I lined it with thick cardboard to try to keep the grass out, and in it I've planted cowslip, forget-me-nots (not shown), wild pansies which self-sowed elsewhere on the plot, and some primrose seeds. I'll pop a few bulbs in later in the year, too. I'm not exactly sure which of these plants will thrive in this little semi-shaded spot and which won't, but hopefully it'll soon be a mini haven for pollinating insects!


Speaking of attracting wildlife, the pond needed a bit of TLC too. It was so overgrown this winter that we pulled basically all the vegetation out and then replaced a few small bits to regrow. Then the site flooded, and the pondweed (and the tadpoles) all floated away. Hmph. So we replenished it with oxygenating weed and put some barley straw in it to tackle the algae that's covering everything. It's looking much better already, and the water's so clear we can see the big fat frogs at the bottom. (It's rather silted up: the 'bottom' isn't nearly as deep as is used to be - so I think we still have more work to do on it...) Now when will those big fat frogs give us some more tadpoles? That's what I want to know!

The flooding, the inability to put anything else in our compost bin lest it exploded, and some neglect over winter had really left the whole allotment in a bit of a mess. The once-lovely blue frames round our beds are rotten now and fallen to pieces (and we're gradually replacing them with brick borders), our table made of bits of pallet fell apart when we tried to move it, and there was flood debris lying around here and there. So before we got down to any, like, actual gardening, we spent some time giving the place a good tidy up too; moving heaps of weeds from last autumn to the new compost bin, bagging up rubbish, and piling up stray wood. Quite a lot of stray wood... Now do we drag it all to the dump, or is this the time to give hugelkultur a try, hmmm...?


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