Aquaponics (archived - 2012): Difference between revisions

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== Project Scope ==
== Project Scope ==


To research and develop multiple installations of hydro, aqua and aero-ponics systems
To investigate various methods of growing food for personal use and the possibility of industrial use. We aim to collect data and share with other groups to further the collective knowledge on the subject. As the project progresses, no doubt the scope will change.


Hopefully we will be able to come up with some best practices and schematics so anyone who wants to can make there own system.


== Details ==


Many members has expressed interest in developing hydroponics systems that both stay at the space and for installing in their own home.  
==Aquaponics==
Aquaponics is a system who's aim is to emulate the natural cycle of growing food as closely as possible. It uses a combination of hydroponic growing with fish care to create a (almost) closed loop system. Basically, fish food is added to the tank, the fish eat it. The fish waste is used to fertilize the plants. Water is recycled in the loop. In a perfect system, the extra plant mater that isn't used by humans could also be used as fish food. A full explination on the Nitrogen cycle can be found [http://en.wikipedia.org/wiki/Nitrogen_cycle here]


===Current Situation===
We have a member that is willing to donate a working system to us. We will also have to decide on what sort of crop we want to grow.


== Progress thus far ==
===Moving Forward===
First things first, we need to get the system up and running. Once it's up, we can start tinkering and monitoring it's progress. There are several areas that we can look into.


* December 27th - Michael B has a hydroponics system that he is delivering to the space
====Lighting====
Natural light is great, but it's not always available. Maybe your house doesn't face south, maybe you live in a cave. Either way, light is how plants do there thing and it also takes a lot of energy. Current lights can easily draw 1000W and cost a [http://www.progressive-growth.com/solarmax.php hundred dollars]. I think we can do better than that. Plants have a very narrow spectrum where they absorb light; so white light isn't really necessarily. With LEDs, the correct spectrum can be used thus creating a more efficient system. If we really want to get fancy, we could liquid cool the LEDs and use that heat to keep the fish at the proper temperature.


[http://en.wikipedia.org/wiki/Grow_light#Luminous_efficiency_of_various_light_sources Luminous efficiency of various light sources]


**January 6th 2012 - note from Mike B - I don't have a such a system; not sure where this info comes from? needs editing. :)
====Monitoring Progress ====
There are many different things that need to be monitored. Nutrient and pH levels, temperature, flow rates, luminosity and so on. We are going to need some micro controller wizards to whip up some code to keep track of all these data points and log them. We can't figure out our efficiency without numbers. Once we have data we can start comparing it to other systems and tweak as necessary.
 
For an example as to why monitoring is important, fish and plants need different pH levels, so it must be monitored to keep it in habitable zones for both.
 
====Tweaks====
There are many different pumps, tanks, filters and systems out there. Should we use a gravity system or multiple pumps? How are we going to deal with heavy metals? What about bacteria? (Good and bad)
 
All sorts of questions since this is a relativity new science. That's what makes it awesome.
 
==Other Groups==
[http://www.edmontonaquaponics.org/ EDMONTON AQUAPONICS]
 
[http://aquaponicsjournal.com/docs/articles/Evaluation-of-Aquaponics-Technology-in-Alberta.pdf An article about a setup in Brroks]
 
It was mentioned that we look at city resources, such as the [http://www.calgary.ca/CSPS/Parks/Pages/Locations/SE-parks/Inglewood-Bird-Sanctuary.aspx Bird Sanctuary] and the [http://srd.alberta.ca/RecreationPublicUse/BowHabitatStation/Default.aspx Fish Hatchery.]

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