Showing posts with label aquaponic. Show all posts
Showing posts with label aquaponic. Show all posts

Wednesday, July 3, 2013

Mini Aquaponics -- Small in Size and Expense

This small and simple mini aquaponic
system is the perfect size for classrooms,
offices, or a sunny windowsill at home.
What I love about aquaponic systems is the versatility there is.  Really all you need for a successful system is water, plants, fish, oxygen (and maybe some worms).  This allows for creativity and flexability in construction.  Some systems are massive and produce as much food as a farm.  This system is little.  It's the perfect size to use as a demonstration of the concept of aquaponics.

A smaller aquaponic system works well near a sunny classroom window.  Students can use the system for experiments, and they can learn a lot about concepts like botany, symbiosis, the water cycle, the nitrogen cycle, and technology.  Aside from using the system to meet state and common core standards in lessons, the presence of plants indoors has been shown to increase productivity and reduce stress.  Having live plants in the classroom would benefit the students and the teachers.

Not a teacher?  Not a problem.  An aquaponic system is like a living piece of art.  It can beautify your workplace or residence, and stimulate conversation with coworkers and visitors.

What is an aquaponic system?

Plants are grown hydroponically without soil.  Instead of adding fertilizer for the plants, fish live in the water reservoir for the plants.  Through the power of the nitrogen cycle, when fish release waste into the water, they supply nutrients for the plants.  In return, the plants keep the water clean for the fish.

To build this mini aquaponic system, you'll need:

Depending on the scale of your new mini-aquaponic system, your components should come to somewhere between $15 and $30.
Putting it all together

Day 1

Start by rinsing out the aquarium, gravel, and small container with clean water.  Put a layer of gravel on
Oxygen is important for a successful aquaponic system.
Add a pot or jar to protect your betta fish from the current.
 bottom of the aquarium, and add water.  Place the small container on the gravel in the aquarium.  This will provide a place for your betta fish to rest without getting pulled into the current of the air pump.

In the corner of the aquarium lid, there will be a little circle in the grating.  Use a nail to open that hole.  Put together your air pump, stone, check valve and connective tubing as per the manufacturer's instructions.  Run the connective tubing through the new hole in the aquarium lid.  This will hold your air stone in place.  Turn on the air pump.  You should see bubbles come out of the air stone.

Allow the water to cycle for 24 hours before adding the fish.  This should allow the chlorine in the tap water to evaporate.  If you are using water from a rain barrel, you don't need to wait before moving to the next step.

Day 2

Add the betta fish to the aquarium.  If you have worms, you can add them to the aquarium at this time.  They will tunnel in the gravel and consume the solid fish waste.  Don't be alarmed if your fish eats one or two worms while you're adding them to the aquarium.

Remove the plastic cover from the aquarium lid.  If you are using a strawberry basket, put it through the opening in the lid to make sure that it fits snugly.  If you are using a foam egg carton, use scissors to cut the carton to fit snugly in the opening.  Use scissors to punch small holes in the bottom of each section of the egg carton.  The basket or carton should touch the water of the aquarium, but should not fall in through the opening.

Add plants to the basket or carton.  Pull some of the roots out through the openings in the bottom of the basket or carton.  Add gravel around the plant in the basket or carton.  Check to make sure each plant's crown is not covered by the gravel.  Adjust as needed.

Place your planter snugly in the lid.  Check to make sure the bottom of the planter or the plant roots are touching the water.

Ongoing Maintenance

To feed the fish, you can pull up the side of the lid that does not have the air pump, or you can remove the planter and add food through the opening.  Add water to the aquarium as needed.  Replace dead plants as necessary (it may take a few tries to get a plant to thrive).

In conclusion...

Again, if aquaponics are anything, they are versatile.  If this system doesn't work exactly right for you, make modifications.  

Trial and error are an important part of
creativity.  I went through a bit of failure
before finding a system that worked.
For example, one of my good friends is a school teacher.  She attended one of our "Gardening in the Classroom" sessions where we showed teachers how to build one of these mini systems.  She already had an aquarium in her classroom and wanted to add plants without having to build a new, separate system.  She used a foam egg carton planter, but found that the planter was too small to fit snugly in the top of her aquarium.  So she used pipe cleaners to secure her planter to the edge of her aquarium.  What a great idea!

The idea for this mini aquaponics system spitballed after I built my Bare-Bones Aquaponic System late last year.  We built the bare bones system at the Hazlewood ECO Center at Paris Landing State Park and the "Every Child Outdoors" Youth Vegetable Garden at the Knoxville Botanical Garden and Arboretum.  My boss and I came up with the idea to take that, make it smaller, less expensive, and easier to build.  Before Wendy's strawberry basket revelation, I absolutely destroyed an aquarium lid by trying to drill holes in it with a hole saw.  Then I got this idea to build a plywood piece that would fit on the hole in the aquarium lid.  That worked, but it was too much work.  In this case, simpler is better -- much, much better.

So feel free to get creative with this project.  Then, please check in and share what you've done.

To see more photos of building a raised bed garden, check out my flikr set.

If you have any questions, comments, ideas or suggestions, please leave a comment or shoot me an email.

What is your experience (victories or pitfalls) with aquaponics?  What would you try growing if you had this mini aquaponic system?



Tuesday, November 6, 2012

Tabletop Aquaponic System, $50

On the morning of my most recent birthday, I sat up in bed, yawned, and rubbed the sleep out of my eyes.  I walked out to the patio with a cup of coffee, and lo and behold, a $50 bill had sprouted on my money tree.
"How far can I stretch $50?" I asked, and decided I'd challenge myself to build a thrifty home aquaponic system.

What is an aquaponic system?

Plants are grown hydroponically without soil.  Instead of adding fertilizer for the plants, fish live in the water reservoir for the plants.  Through the power of the nitrogen cycle, when fish go to the bathroom they supply nutrients for the plants.  In return, the plants keep the water clean for the fish.

Some benefits of aquaponic gardening include
  • Increased access to fresh veggies and herbs year-round.
  • In larger systems, edible fish like tilapia and catfish can be grown.
  • Can be easier to maintain than strictly hydroponic systems, aquariums, or aquaculture where fish are grown to eat.
  • Vegetables, herbs, and fish can be sold for $$$.
  • Can be used in a classroom setting to teach about cycles of matter, communities, mutualism, and more.
To build a bare-bones home aquaponic system, I'd need
  • A fish tank -- 10 gal aquarium, $12.97 from Wal-Mart
  • Something for the plants to grow in
    • 2 foot section of 4 inch PVC pipe, $7.18 from Home Depot
    • 2 4-inch PVC endcaps, $4.86
  • A pump to push water from the fish tank up to the plants,
  • An air pump to inject oxygen into the water,
    • 5-15 gal air pump, $6.77 Wal-Mart
    • 1 air stone, $0.99 Petsmart
    • Connective tubing, $1.72 Wal-Mart
  • Aquarium gravel - $3.74 Wal-Mart
  • Plants -- grown free from rooted cuttings
  • Fish -- a handful of feeder goldfish cost about $1.00 Petsmart
Some other tools that I thought may come in handy included:
  • A drill, 1/8-inch and 1/16-inch drill bits
  • Caulk and caulk gun
  • A hacksaw
Putting the pieces together

It's a good idea to start with feeder fish
My first step was to fill the aquarium with water and put in the air pump.  The water needed to sit out at least 24 hours to allow chlorine from the tap water to evaporate before it was safe for the fish to live in. After a day passed, I added the fishies.

Cut a channel
With the fish in place, the next step was to give the plants some room to grow.  I started out by using a hacksaw to cut a 2-inch section of the 4-inch PVC pipe.  This step takes some patience, but I promise it's possible to finish.  The open section becomes the top of the pipe that the plants will sit in.

Next, I flipped over the PVC pipe and drilled 4 holes on the bottom to one side.  The fourth hole that's closest to the end of the pipe was drilled with the larger 1/16-inch bit, and the other holes were drilled with the smaller 1/8-inch bit.  I recommend starting with only two or three holes and adding more if needed rather than drilling several and having to plug them up when the plants get too dry down the road.
Drill drainage holes

With the channel cut and the holes drilled, it was time to add the end caps.  Although an employee at Lowes assured me that no caulk would be necessary for this part, it is.  I added a line of caulk along the edge of the PVC pipe, then popped the end caps on.  

Once the caulk had dried overnight, it was time to start pumping water.  Set the channel on top of the aquarium and partially fill with gravel.  Submerge the fountain pump and run the vinyl tubing up into the channel.  Secure the tubing with gravel inside of the channel.

I added plants, turned on the fountain pump, and the aquaponic system was complete!

The system has been running successfully for 3 weeks now.  I did lose some fishies, but I've also been able to add a couple fancier fish now that the cycling is complete.

The system continues to run
smoothly after 2 months
Helpful hints:
  • A note about the fish:  It's a good idea to start off with just a few inexpensive feeder fish that are available at just about any pet store.  Don't get too attached to these fishies, because they're probably going to die of ammonia toxicity.  To speed up cycling, leave a clean sponge in an established aquarium for a few days.  Add the sponge to your tank when you add the fish.  This will transfer some of the beneficial bacteria needed for cycling to your system.  To learn more about ammonia toxicity, nutrient cycling, and other options to this process, check out the Aquaponic Source's cycling page.
  • Another note about fish: Although comet feeder goldfish are great to kick start cycling, I've learned that they aren't great long term residents for this particular system.  Comet goldfish have a habit of jumping out of tanks that don't have a lid.  There are slightly more expensive fantail goldfish that have shorter bodies and are less likely to be able to build up the momentum required to jump out of the tank.  I wouldn't recommend black moor goldfish because they are likely to experience fungus problems.  Fish fungus illnesses should be treated with aquarium salt that can stress out your plants.
  • A note about worms: Red wiggler worms can be added to the gravel to help break down fish waste.  Worms release nutrients for the plants to use and help keep the system clean for the fish.
  • A note about PVC:  Be sure to remove all the little shavings left over from sawing and drilling.  If there are any left, they'll get into the water and the fish will eat them.
  • A note about gravel:  Be sure to use aquarium gravel and not just any old rocks you happen across.  Rocks that contain limestone or seashells can raise pH to dangerous levels for both the fish and the plants.  Check out the Aquaponic Source for a simple test to determine if your gravel contains limestone.  Another good medium for the grow-bed is Hydroton clay pebbles.
  • A note about the fountain pump: The model of pump that I selected was small and inexpensive, but it does not have a filter that protects the pump from getting clogged by fish waste.  For the first month or so, I removed the filter weekly and rinsed the intake in a sink.  Although that was effective, I scratched together a couple dollars for some filter foam.  Using scissors, I cut out a square and placed it under the fountain pump intake.  The filter foam should be removed and rinsed every month or so.
  • A note about light: My system ran fine for over a month with just the ambient lighting in my apartment, but I grew tired of leaving my office overhead light on all day.  I sprung for a small desk lamp and fitted it with a 10 watt fluorescent aquarium bulb.  The lamp is plugged into a timer that turns the light on at 7:00 a.m. and off at 8:00 p.m.
  • Side view of the system after 2 months
For updated information on my bare-bones, home aquaponic system, check out my profile at the Aquaponic Source.

To see more photos of my home aquaponic system, check out my photobucket story.

If you have any questions, comments, ideas, or suggestions, I love to get email!

A special thanks to my Dad for giving me an opportunity to do such a neat project on my birthday!

My system continues to run smoothly after 2 months.