Showing posts with label garden. Show all posts
Showing posts with label garden. Show all posts

Weedponic Garden

Many people are growing with hydroponics and aquaponics because they wish to reduce their water consumption,  eat healthy organic food,  live in a more sustainable way, and reduce the carbon foot print of their existence.

Soil based gardening has become dependent upon outside resources but Aquaponics is even more reliant.    Some of those resources are affordable only because fossil fuels are still available.  If those resources were not available how would you feed your fish?  How would you supply nutrients such as iron, calcium, potassium, phosphorous and magnesium.

Aquaponics has good intentions, but it is not a sustainable agricultural method.  I currently do not have all the answers, but Im working on it. Here are some options and food for thought

Ill start by defining the problems.   Fish food is made from grains and wild caught fish comprised mostly of fish with little commercial value, and processing waste. But the fishing industry is not sustainable, and much of the grain used to produce fish food is GMO;  raised using large amounts of fossil fuels for fertilizer and machinery in order to produce a profit while neglecting the environment. For more about the analysis of fish food read http://www.oscarfish.com/fish-food-ingredients.html.
The result is that similar to feeding cattle enormous amounts of gain are used to produce a small amount of meat.  


But we dont need to feed our fish commercially produced fish food.


David Epstein at Bioponica has been feeding his fish only vegetable matter.  This is a great way to avoid dependance upon fish food.


Live food such as Black Soldier Fly larvae, fly maggots, worms, and other insects are also good sources of protein.


But do we even need fish?  If you are like me an only eat fish a few times per year, maybe you will consider bioponics which replaces fish and fish food with humonia.  Bioponics is hydroponics using readily available urine rather than fertilizers made with fossil fuels.

Humonia (aged urine) is a strong source of nitrogen and potassium plus it provides many other trace minerals.   I have been growing with nothing but humonia, epsom salts and Fe-DTPA for quite a while, and I like the freedom it allows.  Humonia will always be available, but iron and magnesium are still missing and a bit more difficult to make at home.

I personally have no problem using humonia for a nutrient source in a bioponic garden.  Human urine shouldnt contain pathogens or bacteria if you are healthy.  Aged urine turns to ammonia.  But I get that some people would prefer not to collect their urine, or use it anywhere near a vegetable garden.  So I have been exploring various avenues to find a source of nutrients.

What if you could grow vegetables without any animal input including humonia.  Similar to David Epsteins plant matter for fish food; bags of plant matter can provide nearly everything a garden will need.  For example coffee grounds can provide the following.
Nitrogen: 2.28 percent
Phosphorus: 0.06 percent
Potassium: 0.6 percent
http://www.sunset.com/garden/earth-friendly/starbucks-coffee-compos...


A little more research turned up these sources of nutrients:
Weed/Herb Tea
    Nettles, comfrey, yellow dock, burdock, horsetail and chickweed - Potassium
Cornmeal - phosphorus and nitrogen
Molasses  – [ acts as a chelate ]  [Calcium,Magnesium,Potassium,Iron]
Banana - potassium
Coffee Grounds -  phosphorus, potassium, magnesium, copper, sodium and chloride
Egg Shells - 93% calcium carbonate
Seaweed – trace elements
Manure – nitrogen
Grass Clippings – nitrogen
Humonia –  nitrogen, phosphorous and potassium
Wood Ash - calcium  and potassium
Epsom Salts - magnesium and sulfur
Fish-Emulsion - nitrogen, potassium, phosphorous, and amino acids

Vermicompost -
  • • Organic Carbon 20.43 – 30.31 %
  • • Nitrogen 1.80 – 2.05 %
  • • Phosphorus 1.32 – 1.93 %
  • • Potassium 1.28 – 1.50 %
  • • Carbon : Nitrogen 14-15 : 1 %
  • • Calcium 3.0 – 4.5 %
  • • Magnesium 0.4 – 0.7 %
  • • Sodium 0.02 – 0.30 %
  • • Sulphur Traces to 0.40 %
  • • Iron 0.3 – 0.7 %
  • • Zinc 0.028 – 0.036 %
  • • Manganese Traces to 0.40 %
  • • Copper 0.0027 – 0.0123 %
  • • Boron 0.0034 – 0.0075 %
  • • Aluminium Traces to 0.071 %
  • • Cobalt, Molybdenum Present in available form
Grass clippings - Over 3 days the Ammonia increases significantly  Plenty of Phosphate too
Soaking grass clippings for 3 days produced a lot of ammonia and phosphate

The iron in vermicompost and planting nitrifying legumes are the only sources Ive found. Tests will have to be done.   I have yet to grow a garden this way but it appears a lot will be learned when I do.  Perhaps you too will set up an experimental Weedsponic Garden and let me know your results.
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Testing Garden Assumptions



I dont believe everything I read or hear and tend to experiment with a lot of ideas.  This guy likes to do the same, but I have to say he is doing a much better job of testing garden assumptions.  If you have ever wondered about the efficacy of things like coffee grounds, Epsom salts, or rock dust, heres the place to see for yourself what you might expect.

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Garden in my shop

I had an epiphany today.  My 48 x 36 shop has south facing doors.  My plan is now to remove a roll up door and replace it with polycarbonate and build an 8x10 aquaponic room within the shop.  The material costs will be much less than if I insulate my existing greenhouse and I should be able to control the environment much easier within the shop. 
I found a pretty decent article about how to calculate the requirements of a Passive Solar Thermal Mass System. But Im still looking for the entire package.  Its unbelievable that this information is so hard to find.

In an effort to understand the process I created this spread sheet.   
This spread sheet contains the formulas and data for Specific Heat Density and Volumetric Heat Density.  Its is probably more than we need to know.

I would like to add Coefficient of Heat Transfer and then create a systematic approach to entering the required data in order to design a Solar Thermal Storage System.

Just for grins, I just did a measurement of an unheated room inside my shop.  This room has no insulation in the floor and R19 in the walls and ceiling of this room which takes up about 1/4 of my shop.  The outside temperature has ranged from 43F - 65F and inside the room has ranged from 46 to 56F.   So what I learned from this is that the thermal mass inside this room levels out  near the low end of our daily temperature swings.

Update June 15, 2012
Its now June 2012 and the temperatures are over 100F  With the ad of an evaporative cooler the garden room stays at about 82F.  In February with a little help from an electric water heater element in line with the pump the room stayed a comfortable 70F.   The power to control the environment is probably costing me about $1.50 - $2.00 a day at 33 cents per Kilowatt Hour.  
Compared to previous green house attempts this is extraordinary.   This is still my first year and Im experimenting, but I think I used too much supplemental lighting during the winter months.  Next winter I will cut that back and only use it to extend the hours rather than add brighter light.
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Making and Installing Ollas in the Garden an Ancient Watering System


Saving water with ollas is a great idea.  This series of videos from High Desert Garden shows how to do it easily and inexpensively.     High Desert Garden also created a video showing how to make your own ollas from clay, but using terracotta pots is less expensive, faster and easier.

Ollas will buffer the water needs of a garden, but realistically they are not large enough to get you through the day, so High Desert Garden uses an ingenious method of feeding the closed ollas from a larger reservoir.

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What I Learned From My 2014 Summer Garden

I wanted a record of this years garden.  The foliage grew so thick in the hydroponic section I was unable to track down a leak.  Usage became ridiculous and I ended up filling the sump twice a day with water rather than waste the hydroponic fertilizer. 

The bioponic systems did well.  Summer heat put a damper on everything including the tomatoes.  Even the squash seemed to regain vigor once the 100+ days passed.  Bell peppers in the hydroponic system did well, but failed due to blossom end rot in the bioponic systems.  I found [this article about Blossom End Rot] that may be helpful.

One Earthan bed became clogged by a root and I lost all the flowers on my Tomatillo, but even though a second set of flowers came back, I doubts I will get a crop.

My wicking barrels did not wick quite as well as I would have liked.  So Ill adjust the soil mix.  These barrels did not get enough sun in this location, so I will have to find a different location.  That is one of the best attributes of this simple low cost design.  Relocation is not a problem.

The vertical section will get a modification to the water supply.  I plan to install a check valve after the pump and a high pressure connection after that.  When the 1/4" tubes clog I will simply give it a blast of fresh water.   In fact this is how I will maintain the level in the sump tank.  Each time I fill the sump I will be clearing the 1/4" lines.

The 8W Earthan Bed system performed well over the summer.  Water usage was extremely low in both the wicking barrels and the 8W Earthan Beds.  Without a doubt I feel these two systems hold the most promise.  But one thing Ive learned is that any garden that relies on a mechanical system is prone to some type of failure which places the wicking barrels squarely in the best position.

I began the season using weed teas, fish emulsion, and kelp in the 8W Earthan Bed and the Vertical Garden, but the Vertical Garden was abandoned due to high maintenance (clogging).

After the other bioponic Earthan Bed clogged I began to fear that the system might become clogged, but I now feel it would have been okay since it was a root not muck that caused the problem.

But this caused me to switch the 8W Earthan Bed over to plain well water with an occasional slurp of fish emulsion and liquid kelp plus a little Fe DTPA, MgSO4, and HCl after only a few weeks.  My goal for this system was to use no urine.

Clogging is a concern I will eventually have to face with all of the Earthan Beds as I doubt even the worms will be able to keep the rock bed clear forever.   The advantage is that the water stays well aerated which should increase plant vitality and vigor. 

Water use was extremely low in this systems even though I top watered every few days.   

Im still enjoying handfuls of cherry tomatoes from every section of the garden everyday The soil less section of the bioponic system produced more cherry tomatoes than we could eat. This and the hydroponic section were the best performers.  I credit this to aeration and high nutrient levels.  The main bioponic garden (not the 8W garden) received about 50% of my fresh urine plus fish emulsion, kelp, Fe DTPA, MgSO4, and HCl.


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How to Trim a Tomato Plant Garden Guides

I planted tomato as an experiment.  I wanted to see if they would grow, and set fruit indoors, but it is becoming obvious that I will need to do some trimming as I dont have the space they require.
This article is short and simple.  It describes the method of trimming indeterminate tomato plants in order to produce a better quality crop.

Basically the method involves breaking off the suckers in order to direct the energy to the main stem.
Other sources indicate that these suckers can then be propagated and grown as individual plants which will space out the peak production over a wider time.

Some may disagree with the use of a knife or shears, opting to break the suckers off because it is less likely to cause infection and spread disease.

If the suckers continue to grow back it is important to continue breaking them off.   In addition to breaking off suckers some also recommend topping the plant near the end of the growing season in order to let the last few tomatoes mature and ripen.

How to Trim a Tomato Plant | Garden Guides
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Kratky Method DWC Compost Tea Hydroponics 2 Hydroponic Tomatoes


I have considered conducting this same experiment.  After skipping ahead to #5 it appears that using synthetic fertilizer won out over compost tea.
It only makes sense if you believe the vast amount of research that has been done around formulas.

Here are the formulas Ive been able to collect from https://hydro-gardens.com/product-category/fertilizers/chemgro/

Tomato Formula 4-18-38
  Dutch Tomato Varieties
     Seedlings
     2.27 gm/gal Chem-Gro 4-18-38
     1.14 gm/gal CaNO3
     1.14 gm/gal MgSO4
     pH = 6.5
     Conductivity 1200ppm + Source water
    (1.60 mhos + Source Water) at 2nd cluster of flowers
   To 4th Flower Cluster
     2.27 gm/gal Chem-Gro 4-18-38
     2.27 gm/gal CaNO3
     1.14 gm/gal MgSO4
     pH = 6.2
     Conductivity 1500ppm + Source water
      (2.00 mhos + Source Water) at 4th cluster of flowers
   Older Plants
     2.27 gm/gal Chem-Gro 4-18-38
     2.27 gm/gal CaNO3
     1.14 gm/gal MgSO4
     pH = 6.2
     Conductivity 1500ppm + Source water
      (2.27 mhos + Source Water)

Heirloom Tomatoes may find this formula a bit too high in nitrogen so some experimentation will be required.
 

Chem-Gro makes several fertilizers.
Below are formulas that balance NPK and nutrients specifically for different crops.
Tomato Formula 4-18-38
Strawberry Formula 8-12-32
Lettuce Formula 8-15-36
Cucumber Formula 8-16-36
Pepper and Herb Formula 11-11-40
Hobby Formula 10-8-22
Southern Vegetable Formula 7-14-36
Hydroponic Special Formula 5-11-26








Strawberry Formula 8-12-32
   After Transplanting
     1.14 gm/gal Chem-Gro 8-12-32
     1.14 gm/gal CaNO3
     0.71 gm/gal MgSO4
     pH = 6.5 - 6.8
   Flowers Begin To Open
     1.70 gm/gal Chem-Gro 8-12-32
     1.70 gm/gal CaNO3
     1.14 gm/gal MgSO4
     pH = 6.5 - 6.8

Lettuce Formula 8-15-36
   Seedlings
     2.27 gm/gal Chem-Gro 8-15-36
     1.70 gm/gal CaNO3
     1.14 gm/gal MgSO4
     pH = 6.4 - 6.7
     1350 ppm + Source Water
     1.80 mhos + Source Water
   Mature Plants
     2.27 gm/gal Chem-Gro 8-15-36
     2.27 gm/gal CaNO3
     1.41 gm/gal MgSO4
     pH  = 6.0 - 6.5
     1575 ppm + Source Water
     2.10 mhos + Source Water


Cucumber Formula 8-16-36
   Seedlings
     2.27 gm/gal Chem-Gro 8-16-36
     1.70 gm/gal CaNO3
     1.14 gm/gal MgSO4
     pH = 6.4 - 6.7
     1350 ppm + Source Water
     1.80 mhos + Source Water
   Mature Plants
     2.27 gm/gal Chem-Gro 8-16-36
     2.27 gm/gal CaNO3
     1.42 gm/gal MgSO4
     pH  = 6.4 - 6.7
     1570 ppm + Source Water
     2.20 mhos + Source Water

 Pepper and Herb Formula 11-11-40
   Seedlings
     2.27 gm/gal Chem-Gro 11-11-40
     1.70 gm/gal CaNO3
     1.14 gm/gal MgSO4
     pH = 6.2 - 6.5
     1350 ppm + Source Water
     1.60 mhos + Source Water
   Mature Plants
     2.27 gm/gal Chem-Gro 11-11-40
     2.27 gm/gal CaNO3
     1.41 gm/gal MgSO4
     pH  = 5.8 - 6.2
     1500 ppm + Source Water
     2.20 mhos + Source Water
 
 Hobby Formula 10-8-22

   Seedlings
     2.27 gm/gal Chem-Gro 10-8-22
     1.14 gm/gal MgSO4
     pH = 6.2 - 6.5
     800 ppm + Source Water
     1.07 mhos + Source Water
   Mature Plants
     4.54 gm/gal Chem-Gro 10-8-22
     1.14 gm/gal MgSO4
     pH  = 6.2 - 6.5
     1500 ppm + Source Water
     2.00 mhos + Source Water

 Southern Vegetable Formula 7-14-36
   Seedlings
     2.27 gm/gal Chem-Gro 7-14-36
     1.70 gm/gal CaNO3
     1.14 gm/gal MgSO4
     pH = 6.4 - 6.7
     1375 ppm + Source Water
     1.83 mhos + Source Water
   Mature Plants
     2.27 gm/gal Chem-Gro 7-14-36
     2.27 gm/gal CaNO3
     1.41 gm/gal MgSO4
     pH  = 6.0 - 6.5
     1575 ppm + Source Water
     2.10 mhos + Source Water

Hydroponic Special Formula 5-11-26
   Seedlings
     2.84 gm/gal Chem-Gro 11-11-26
     1.14 gm/gal CaNO3
     0.57 gm/gal MgSO4
     pH = Adjust to your crop
     1350 ppm + Source Water
     1.80 mhos + Source Water
   Mature Plants
     2.84 gm/gal Chem-Gro 11-11-40
     2.27 gm/gal CaNO3
     1.14 gm/gal MgSO4
     pH  = Adjust to your crop
     1570 ppm + Source Water
     2.20 mhos + Source Water


  
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Test results Rock Dust BioChar pH


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Vertical Garden Sausage

This is my Vertical Garden Sausage.  After pricing pipe and stacking gardens I started thinking about ways to do it less expensively. 
This is made of fiberglass reenforced weed cloth.  I glued the seems with Goop Marine Glue and filled it with Perlite.  I imaging other media such as compost or Vermiculite could be used instead.
I was able to use the same pump that I pump water into my fish tank to drip water into the top. 
The advantage I see in vertical gardening that the produce is within easy reach, less media than a standard grow bed is used, plenty of aeration,  easy to manage in sections. 
Seeds can be started directly in to sausage, but I had these seedling and used them to get it going.

Nine Days Later


Ive made more since first posting this and have been using regular Type 1 silicon.   Type 1 silicon is safe for fish.


Nate Storey shared his vertical setup
 
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Water Rules for Chico CA

Lawn watering restricted to three days a week.
Odd numbered addresses: Sunday, Wednesday and Friday.
Even numbered addresses, Tuesday, Thursday and Saturday.
No lawn watering on Monday
• No watering from 8 a.m. to 6 p.m., except by drip irrigation, microsprayers or by hand.
• New homes need to have drip irrigation for landscaping.
•Water should not flow to non-irrigated surfaces, like sidewalks or into the gutter.
• When watering, water should not run off the landscaping.
• When washing cars, the hose needs to have a shut-off nozzle.
• Water features such as fountains need to recirculate.
• No watering outdoors within 48 hours of a measurable amount of rain.
• No watering or refilling ornamental lakes or ponds except to sustain existing aquatic life.

For the past few years I have been actively experimenting with many water conservative method of gardening.  I have built experimental gardens which I enjoy sharing with others. 

If you are interested seeing a variety of water saving ideas, and wish to visit my gardens send me a message on Facebook - bob.campbell.chico

Some of my gardens can be scaled up to commercial size while others are appropriate for apartment balconies.



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Water Wise Garden

This is basically the same Earthan Beds Ive been building, but its done in the ground.
Here are some pictures of how I built this water wise garden.
The hole was dug with a trench for the 4" drain line and a sump pit at the lowest point

The pond liner placed with 4" perforated drain line.  Notice the filter sleeve on the drain line.

Gravel being spread level
  Here the water is used to help me spread the gravel level across the entire bed.  I find it useful to temporarily raise the water level to the top of the gravel for this procedure.  When finished the water level will be maintained 2" below this level so that the soil does not sit directly in the water.
This black shade cloth is laid on top of the gravel to keep the soil from washing down into the gravel
The water tank has not been installed yet.  I will bury it next to this garden bed and pull the pond liner down so that it drains excess water into the tank. 
The soil has been added.  This soil mix contains has enough clay that it will wick the moisture up from below
I will clean up the edge so that it looks nice.  The pump sits inside the 6" PVC pipe.  I used 1/2" PVC pipe to connect the tube that runs to the other end through the 4" drain line.  I will also extend electricity to the side of the garden so that I dont have to use this extension cord.

A thick layer of mulch will be added when I plant.  This garden will save rain water, and maintain moisture below the surface without loss to evaporation.   There is no need to water this garden other than occasionally maintaining some water in the reservoir tank.  The amount of water used will depend upon the type of crop and the heat, but it will not waste a drop.

After I install the large reservoir water tank the pump will be moved out of the sump to the larger tank.  It would have been easier to have done it this way from the beginning, but I did not feel that I was up to digging a hole that size right now, and wanted to get this garden planted.   Here is a diagram of how it will eventually work.

This could be duplicated on a much larger scale for commercial farming. Sure its a lot of work and extra expense, but the savings in water should count for something. With a large enough reservoir, and contouring of the land; the need for any extra water could be eliminated by capturing rain water..
 This is July 4th.  The basil and tomatoes have done well.  Its been about 10 weeks since this garden was planted and it has used about 100 gallons of water from the reservoir which provides flowing water under the garden bed 24/7.   Its been the easiest of all my gardens because I have not had to water it.  The tank pictured below holds 135 gallons.  There is a small Model 5 utility pump inside that pumps water to the far end of the rocks buried below the soil.
I plan to build a top for this so that it looks nice.  I would not want someone to trip into the hole. I also need to finish running an electric outlet over to the pump.


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