Showing posts with label vermiculite. Show all posts
Showing posts with label vermiculite. Show all posts

Friday, 29 November 2013

Hydroponics - growing without soil

hydroponics, growing chillies

Growing plants hydroponically, or without soil, is a clean, and resource-efficient way to successfully raise a variety of produce. While it has only become an established way to grow vegetables on a commercial scale in recent years, it's not a particularly new invention. The Hanging Gardens of Babylon are reputed to have used hydroponic growing techniques as were the floating gardens of Aztec Mexico. It's been used on Pacific Islands with no topsoil .  Closer to home, the philosopher/scientist and parliamentarian Francis Bacon – the one who some people suppose may have written some of the plays attributed to Shakespeare – wrote about soilless planting, and called it 'water culture'.


Conventionally, plants are grown in soil, typically made up of minute rock particles, organic matter (material which was once living, now decayed) and water. The chemical nutrients in soil, dissolved in the water, feed the plants and enable them to grow. The purpose of the soil itself, rather than the water in the soil, is to act as an anchor for the plant's roots, keeping it stable. So long as you provide the same liquid nutrients in such a way that the plant's roots can take them up, and you also give your plants something to hold the roots in, you don’t need the soil itself.


There are advantages to eliminating soil. Soil is messy stuff for one thing, and for another there is always an element of guesswork in using soil. It's difficult to know precisely, how rich, how chemically balanced, how fertile a soil is. If you have no garden, or are restricted to a patio or courtyard, or maybe have no outdoor space at all, you may not want to be lugging bags of compost through the house. Soil can also be contaminated, by toxic metals, or more mundanely, by pests or harmful fungi living in it. In this last case, you may not wish to grow edible foods in such an environment.


In a hydroponic set-up, you need a container for your plants, plus a growing medium which will be an inert material such as Perlite, Vermiculite, or rockwool (available from most garden centres), all three of which are rock-based, and highly water-absorbent. You can float your roots in water so long as the main stem has a collar, or block, to stabilise the plant. You will need to provide your plants with warmth, light and nutrients.


If you look around on the Internet you'll find off-puttingly long lists of technical equipment required for a hydroponic set-up: pumps, filters, hoses, lights, heat lamps, etc. You would be forgiven for thinking it's less like growing plants and more like a laboratory experiment.


However, much of this expensive and hi-tech kit is needed for hydroponic growing on an industrial or commercial scale. To successfully grow salad leaves an herbs on a windowsill, some pots, water and a soil-less growing medium is all you really need. And your liquid nutrients, of course. I tend to stick my hydroponic pots in a south-facing window and let them make the most of the natural warmth and light from that, but then I'm growing mostly herbs and salads which are less fussy than some plants.


Many of the salad leaves sold in supermarkets are grown hydroponically, as are what they call salad vegetables: tomatoes, peppers and cucumbers. If you’ve ever wondered how tomatoes can be labelled as UK grown and sold at this time of year, it’s because they are grown indoors, hydroponically. You may have heard of Thanet Earth, which is a site of four massive greenhouses covering over 200 acres, which grows solely tomatoes, cucumbers and peppers, all grown without soil, and all for distribution into supermarkets in the south-east. For Thanet Earth, being able to precisely control the environment means they can harvest tomatoes 52 weeks a year, cucumbers from February to November, and peppers from March to November. With no soil-borne diseases to worry about, Thanet Earth aims to use no pesticides at all – they do use biological controls, ie, introducing predators to deal with any pests.


Hydroponic cultivation has its opponents. The development of Thanet Earth was covered in the Daily Mail and included a quote from Jeanette Longfield of the food campaign group Sustain, who said: 'What are they going to taste like if they are grown in water rather than soil? … This is about producing bland food’.


The argument here is about what the French call 'terroir', when referring to growing grapes for wine: the complete environment that the plants are grown in, including the microclimate, the soil, and terrain. If the idea of terroir can give grapes their own individual characteristics, then logically it can also apply to fruit and veg. That while we calibrate liquid nutrient solutions and precisely control the climate (heat, light and water) for hydroponic crops, there may be trace elements or micro-minerals present in soil that we are overlooking in the hydroponic environment. I don’t know the definitive answer to the taste question. If you follow the terroir argument through, then a hydroponic crop should be very 'pure' tasting, with little or no deviation from one growing location to another. And there should be no bad years.



Pak choi plants growing in a hydroponic trough on the windowsill.
Pak choi plants growing in a hydroponic trough on the windowsill.

In this age too where organic growing is seen as 'better' than intensive farming - and hydroponic growing is pretty intensive, hydroponic cultivation can be seen as a step backwards.


What an organic philosophy and hydroponic growing have in common is the desire for sustainability. Both methods are far less fuel-intensive than using manufactured fertilisers. Organic systems aim to reduce soil erosion and exhaustion with the addition of organic matter; in many hydroponic systems, the growing medium can be reused many times. For example, perlite, the rock granules which are often used to anchor the roots, can be sterilised in a microwave and then used again for the next batch of hydroponically-grown seedlings. Thanet Earth exports electricity to the neighbouring area and recycles all its water. The micro-management that delivers precisely the nutrients needed to the growing plants also means there is far less waste.


Hydroponics - the good news ...

+ Sustainable
+ Efficient use of resources - less waste
+ Takes up relatively little space, with high yields
+ Versatile – does not need fertile soil, can be grown anywhere
+ Cleaner to maintain

... and the not-so-good

- Cannot be called organic
- Lot of management required to get the balance right
- Leaching if not managed properly
- Only suitable for some plants
- Concerns that soil-grown vegetable taste better

Hydroponic growing is ideal if you don’t have a garden, or you are restricted to pot-growing. The lack of soil makes it less messy for a start; the use of a precise set of nutrients administered at regular intervals takes a lot of the guesswork out of growing.


Where to buy

We used a simple base kit, costing £32.50 from The Achiltibuie Garden. Based in the north-west highlands of Scotland, this company specialises in developing hydroponic growing systems for domestic use. Many of their systems are modular, so that you can add extra units to the base kit if your needs increase. This windowsill kit shown below, is good for raising salad cut-and-come-again leaves and herbs.
 growing hydroponics: trough on the windowsill.

The acorn pot in the top photo is suitable for growing chillies and also tomatoes, and also comes from the Achiltibuie Garden, costing £45.00 for a pack of three pots, plus a Perlite-based growing medium, mini-propagator, sample seeds and a generous supply of liquid nutrients.

Closer to the Secret Garden Club is Growell Hydroponics in Neasden, just off the North Circular in Brent Park and with branches throughout England, in Merton, south London, Birmingham, Bristol and Sheffield, among other places. They sell everything from nutrient mixes to complete irrigation, lighting and tenting systems for indoor growing.

Monday, 27 May 2013

Growing microleaves

If you can remember growing mustard and cress on blotting paper at school then you are familiar with the idea of microleaves.
These are new-born baby versions of salad leaves, sown thickly and harvested when still just a centimetre or two high. You get all the flavour and nutrients from the full-size plant in a miniature package.

Microleaves were all the rage in restaurants not so long ago – around the time that making everything into foam was fashionable too. They’re used mainly for garnish, but also are good for adding flavour and texture to a salad.

Good varieties to try in microleaf form include mizuna, mustard, shiso, radish, rocket, basil, coriander, and peas. Especially peas - this is a quick and easy way to get pea shoots for a salad.

I sow microleaves when I have a few seeds left in the packet and no space left in the ground.
  1. You need a shallow tray to grow microleaves in, one with drainage holes in the bottom. I use up these clear plastic supermarket trays which fruit, veg or even meat come in. The tray gets a good wash before we do any sowing! 
  2. Helpfully, many of these trays already have holes punched into the bottom. If yours doesn’t you’ll have to add some, with a skewer or fork or scissors.
  3. Cut a single piece of kitchen towel so that it fits snugly into the bottom of the tray. This is to stop your growing medium falling through the drainage holes while still letting water in and out.
  4. Now add your growing medium – I’m deliberately not specifying what it is because there are a number of effective things you can use:
a.     Seed compost. There are plenty of people who say that using compost gives your microleaves the best flavour. 
b.     Perlite. These are particles of volcanic rock that have been heated to a very high temperature so that the granules become light and very porous. Good for anchoring the roots in place and absorbing water, which is then available to the growing plants. Looks like cat litter.c.     Vermiculite, a silicate mineral which provides a clean inert anchorage for the micro-seedlings. It also has the advantage of being much cleaner than soil.
d.     Cotton wool covered with kitchen towel (or blotting paper). This has to be the cleanest solution of all. My only objection here is that I’ve found I get patchy germination using kitchen towel to germinate seeds.

Whichever you use, it needs to be about 1.5 centimetres deep in the tray. Sprinkle it in and tap or shimmy the tray from side to side so that the granules are evenly distributed.

5.     Sow the seed on the surface. You should sow quite thickly, so long as the seeds remain in a single layer on top of the vermiculite. You don’t need to cover the seeds.
6.     Now place your tray in a shallow dish, into which it fits comfortably. Add water to the dish, not the seed tray. The water will be drawn up into the seed tray, moistening the seeds.
7.     Place the seed tray and dish somewhere bright and consistently warm – a south-facing windowsill, especially if you have double-glazing, is good.
8.     All you have to do now if to make sure that the bottom of the dish doesn’t dry out. Check it daily and top up with water if necessary. And wait. Your seed should germinate in 2-4 days (2 days for pea shoots and mizuna, 4-5 for shiso or coriander), and, if it’s on a windowsill, you may have turn it so that the shoots continue to grow up straight.

Pea shoots are my all-time favourite here. You know that distinctive taste of pea shoots in salad? This is by far the easiest way to grow your own tender pea shoots – if you pick the growing tips of the peas you’re growing for full-grown pods, you will reduce your harvest.


Wednesday, 25 July 2012

Kitchen table hydroponics


Mixed salad seedlings growing hydroponically, without soil.

Growing plants hydroponically, or without soil, is a clean, and resource-efficient way to successfully raise a variety of produce. Yet it seems to be viewed with a great deal of suspicion in many quarters. This extract, from Green Harvest, an Australian website, is reasonably typical:


"A large quantity of the salad greens available in the supermarket are grown hydroponically, the complete opposite of organically. Hydroponics is a growing system that bypasses the soil in favour of a 'nutrient soup' made from chemical fertilisers fed directly to the plants. The lettuces in the supermarket might look like a lettuce but chemical cocktail might be a better description."

I don't know what they put in bagged salad in Australian supermarkets, but I wonder what the author thinks soil consists of, if it's not a chemical cocktail itself.

Conventionally grown plants have their roots in soil, which is typically made up of minute rock particles, organic matter (material which was once living, now decayed) and water. The more fertile the soil, the more chemically rich it will be, especially in nitrogen, potassium, and phosphorus, the three main nutrients needed by plants.

However, the soil isn't necessary for plant growth; it's only there as the medium for delivering water and nutrients to the roots. Hydroponic growing eliminates the soil and concentrates on getting water and nutrients directly to the roots.

Growing hydroponically isn't the "complete opposite" of organic growing. You can incorporate many organic elements into a hydroponic set-up - using organic coir as a growing medium, for example. I suspect that what makes people suspicious of hydroponic systems is the micro-managed nature of it.

What an organic philosophy and hydroponic growing have in common is the desire for sustainability. Both methods are far less fuel-intensive than using manufactured fertilisers. Organic systems aim to reduce soil erosion and exhaustion with the addition of organic matter; in many hydroponic systems, the growing medium can be reused many times. For example, perlite, the rock granules which are often used to anchor the roots, can be sterilised in a microwave and then used again for the next batch of hydroponically-grown seedlings. The micro-management that delivers precisely the nutrients needed to the growing plants also means there is far less waste.

If you look around on the Internet you'll find off-puttingly long lists of technical equipment required for a hydroponic set-up: pumps, filters, hoses, lights. You would be forgiven for thinking it's less like growing plants and more like a laboratory experiment.

However, much of the expensive and hi-tech kit is needed for hydroponic growing on an industrial or commercial scale. To successfully grow salad leaves an herbs on a windowsill, some pots, water and a soil-less growing medium is all you really need. And your 'nutrient soup' of course.

Hydroponics
+ Sustainable
+ Efficient use of resources - less waste
+ Takes up relatively little space, with high yields
+ Versatile – does not need fertile soil, can be grown anywhere
+ Cleaner to maintain

- Cannot be called organic
- Lot of management required to get the balance right
- Leaching if not managed properly
- Only suitable for some plants

We used a simple base kit from The Achiltibuie Garden. Based in the north-west highlands of Scotland, this company specialises in developing hydroponic growing systems for domestic use. Many of their systems are modular, so that you can add extra units to the base kit if your needs increase. This windowsill kit shown below, is good for raising salad cut-and-come-again leaves and herbs.

The kit: long plastic trough and four pots. The growing medium, a mix of perlite and vermiculite, containers with liquid nutrients and four packets of seeds.

The absorbent material which fits into the slotted base of each pot will take up water and the liquid nutrients into the pots.

The pots are filled with the perlite/vermiculite. This growing medium is there to anchor the roots and so keep the plants stable. Its structure means there is still air held in the growing medium and its ability to hold water means the plants can access the liquid feed.
Seeds are sown in each pot and lightly covered with more perlite/vermiculite.

The pots are covered to keep the seeds dark until germination. The funnel in the middle delivers water to the base of the trough, from where it can be taken up by the absorbent wicks protruding below each pot.

First signs of germination.
Once germinated the seedlings are covered with a strip of fleece to provide a protective 'micro-climate'.

Topping up the water beneath each pot via the funnel.
Our seedlings ten days after germination. From the bottom up: chervil, dill, salad mix and lamb's lettuce.

We'll be discussing hydroponic growing in more detail in a future Secret Garden Workshop, looking at ways to set up a simple system in a restricted space and the most suitable plants for this kind of set-up. Keep an eye on our Events pages for scheduled dates.

Further reading
http://ag.arizona.edu/hydroponictomatoes/overview.htm
Highly detailed discussion of hydroponic tomato growing, including a history of hydroponic development.

http://www.theecologist.org/News/news_analysis/269753/hydroponics_in_the_city.html
Sustainability of hydroponics, roof top gardening, using excess heat from air-conditioning units
The Achiltibuie Garden website, addressing issues of sustainability

http://www.simplyhydro.com/whatis.htm
A detailed overview of hydroponic systems.