diy aquaponics ibc
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When I was preparing and starting to think about the notion of selling aquaponics, the first thoughts in my business school-trained brain were about target markets. How is the typical buyer of home aquaponics different than the typical market for these hydroponic businesses?
That thought, however, was immediately crowded out by a second, more basic thought. In order to sell aquaponics to a hydroponics customer, you really need to understand how aquaponics differs from hydroponics which leads me to the point of this article. How does aquaponics differ from hydroponics? Let me count the ways
Startup speed This is perhaps the biggest downside to aquaponics from a hydroponics perspective. In hydroponics you just add commercially formulated nutrients to your nutrient reservoir and you are off to the races. With aquaponics it takes about a month to start your system by developing a colony of nitrifying bacteria through a process called cycling. The ammonia from the fish waste will not be converted into the nitrates that the plants are seeking until this process is complete.Relationship with bacteria Hydroponic systems tend to be fairly sterile. Ive visited hydroponic growing facilities where I had to wear coveralls and a hairnet to enter. Not so with aquaponics. Bacteria are revered by aquaponic gardeners because, as described above, they are the engine that drives our systems.Flood and Drain cycle Hydroponic growers using flood and drain techniques generally only fertigate their plants once every four to six hours. Academic studies and vast, collective experience have shown that this optimizes the water and fertilizer the plants need. When you move to an aquaponics system, however, the ideal schedule changes to flooding for 15 minutes every 45 minutes. The reason is that the grow bed now has taken on the additional role of being the filter for the fish waste. If you only ran the fish water through the filter every four to six hours, fish waste would build to dangerous levels.Grow bed depth Hydroponic growers tend to use standard 6 deep flood tables and put pots or cubes with plants in them inthe flood trays. Again, because an aquaponics grow bed is serving a dual role of both home for the plants and bio-filter for the fish waste, both need to be considered and optimized. Most media based aquaponic gardeners use 12 deep grow beds filled with an inert media. Over the years, side by side trials have shown that this depth of grow bed develops the kind of robust bacteria colony needed to not only filter the liquid waste, but also to provide an excellent home for composting red worms and the heterotrophic bacteria needed to break down the solid waste from the fish.
Nutrients ( supplementation) Hydroponic gardeners live and die by their nutrients, and the supplements to those nutrients. Not so with aquaponic gardeners. The goal of an aquaponic garden is to achieve a state of balance within its eco-system. Everything that goes into the system must work towards this end goal, and not harm any other element of the system. Anything added to the system to boost plant growth could, and probably will, harm the fish and possibly the bacteria colony and the compost worms. There are a few exceptions to this, including the use of liquid seaweed, small amounts of chelated iron, and a few minerals to adjust pH. But beyond those, aquaponic gardeners will think long and hard before adding anything to their systems except of course, fish feed.Nutrients (dumping) Hydroponic nutrients must be dumped and replaced on a regular basis to address nutrient imbalances that arise over time. This concept mystifies an aquaponic gardener. We only top up the fish tank with water and never dump and replace it unless there is a severe, unexpected problem. Why on earth would you get rid of all that beautiful fish waste?, the aquaponic gardener would query. The notion of nutrient imbalance is as foreign to an aquaponic gardener as it is to an organic soil gardener. Just as with healthy soil, a healthy aquaponics system just keeps getting better and better the longer it operates.Plant disease When I oversaw the plant grow lab at AeroGrow, we were constantly worried about disease. We sterilized anything that ever came into contact with the plants, their roots or the nutrient solution. The disease we feared the most was a fungus called pythium, or root rot, which is widely considered the scourge of hydroponics. Fortunately, pythium is almost non-existent in aquaponics. Researchers in Australia are currently studying why this is so, but my money is on all the bacteria and other living organisms in an aquaponics system. Logically they would help boost immunity; just as bacteria helps boost our own bodys immunity. Hydroponics is more of a boy in the bubble by comparison. In addition, the very high oxygen levels in an aquaponics system and the activity of the composting worms to clean up dead plant matter probably both help mitigate disease outbreaks.Temperature An important part of an effective program to prevent pythium outbreaks in hydroponics is to make sure thatEnjoyed this post? Here are some others you might like:
From Hydroponics to AquaponicsPlant Nutrient Management in an Aquaponics SystemAquaponics How-To Guide Part 1: Why Aquaponics and What Type of System?Aquaponics vs. Hydroponic nutrientsAquaponics How-To Guide, Part 2: Grow Beds and Fish TanksPosted: April 25th, 2011 under Blog, Growing, The AP Life.Tags: aquaponic, Aquaponic Fish, aquaponic gardening, aquaponic grow bed, AQUAPONIC INDOOR, aquaponic systems, aquaponics, aquaponics grow bed, aquaponics system, aquaponics tilapia, DIY AQUAPONIC, diy aquaponics, EASY AQUAPONICS, HOME AQUAPONICS, hydroponics, organic hydroponics, pythium
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