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U tube.stlU shaped tube, hollow. It is to be filled with salt gelatinStandard Tesselated Geometry - 25.08 kB - 07/11/2018 at 21:37 |
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Lid V.2 Bio Reactor.stlcorrected holes on reactor cell lidStandard Tesselated Geometry - 20.79 kB - 07/11/2018 at 21:37 |
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lid 2 bio reactor.stlfirst version smaller holesStandard Tesselated Geometry - 28.60 kB - 07/11/2018 at 21:37 |
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hollow electrode bioreactor.stlwrap copper or zinc wire to create the anode or cathode.Standard Tesselated Geometry - 18.73 kB - 07/11/2018 at 21:37 |
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electrode tube bioreactor.stlalso a electrode holder but not hollowStandard Tesselated Geometry - 13.17 kB - 07/11/2018 at 21:37 |
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Hello All, I do plan to print a copper zinc emergency cell similar to what is pictured but more refined. I would LIKE however to produce working model that others can made themselves at home for science projects or even larger scale off the grid aspirations! I am really banking on the Phytoplankton microbial fuel cell in overall effort however.
getting around .8 volts for this small amount and this is with minimal 1 inches of wire as a electrode submerged. The cells I printed were around 5 times the capacity for more mah capacity. Voltage is pressure but we need more columet I actually do work like charge a phone.
the lids are almost perfect, but I did widen the holes so that the parts will slide in without too much force. the parts will be adhered together once put together.
The Salt bridge fits but is snug at this time. A little cleanup with dremel and sanding drum should clean it up.
I am using these materials for the anode and cathode electrodes. Copper wire and Zinc wire. Both I purchased from Amazon.com and received quickly. The wire can be wrapped around a cylinder to hold it tightly in place. These larger cells are for initial prototyping , and I would like to print a smaller version that is portable power.
https://www.amazon.com/gp/product/B000IJYRDE/ref=oh_aui_detailpage_o01_s00?ie=UTF8&psc=1
https://www.amazon.com/gp/product/B001QUVU0W/ref=oh_aui_detailpage_o01_s00?ie=UTF8&psc=1
Here are the prints on the bed themselves.
These are a couple pics of the parts for the reactor that will collect electrons and make current. Four main pieces, casing, salt bridge tube , lid and electrode holders. Here are 3d pics of the designs before printing, I will post the files for use by anyone. I may add my name to the pieces to mark them for future use.
Here is the cell with a divider to separate the anode and cathode aqueas solution
This is the salt bridge, the salt bridge is a salt enriched gelatin that is a semipermeable barrier that allows electrons to flow , but not allow the aquaes solutions on each half cell to mix.
inside you see the U shaped tube is printed hollow to fill with salt gel
This is the cell topper , two holes allow for the salt bridge to be installed. The two further holes are for the electrode holder, since the electrodes are wire I would have something to wrap them around. The topper has a inner ledge that drops down into the cell and the divider is offset, so when removing the cell top, you cannot put the cell electrodes back in backwards causing polarity to be wrong.
The first version of the electrode holder was solid with infill. I found that making the hold hollow like a tube significantly reduced the print time and amount of filament used.
All parts shown together , cell casing, divider, U tube , and electrode holders
Final Proposed assembly of the urine fuel cell.
The first cell for testing is galvanic with only one chamber, I will posts the pictures both in 3d format and the actual product later when I am home. One chamber means there is only one aquas solution and no barrier between the anode and cathode. This cell does not have a divider.
Here I will notate and Cite sources that support my idea, In almost all cases of our modern society every idea is not completely a new invention , but putting it in use is what makes the process and devices unique. I want to make sure this project can basically be duplicated anywhere in the world with basic resources. In the long term this could be a VERY small portable device that goes into emergency packs to generate electricity for an emergency battery.
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I never had the funds to complete this project. https://hackaday.io/project/10560-urine-fuel-cell-sans-titaniumplatinum If you would accept my application I can make this thing work legitimately not just be a galvanic zinc copper cell. All I need is some precursor for nickel nanoparticle precipitation and some nafion membrane. I have all the other stuff ironed out.
Im progressively upgrading the setup. Selectively Permeable membrane, urine on one side and another half cell side. The electrode materials can be swapped out, but not enough time in the challenge to swap the materials and get a cellophane membrane.
My "secret weapon" is a portable device you can Wiz in to make power for a module device or charge batteries in an emergency.
there are three main ways I can use the Urea, one is direct Galvic Cells, second is Microbial reactor in which the energy generating bacteria feeds on the urea, third is feeding micro algea AND fill a fuel cell anode side and power could be made that way. I have a few ideas.
I'm really interested to see where you go with this. I know nothing about the process, but it makes me dream of waste treatment centers that generate power necessary for the process using a similar technique.
The energy is from redox reaction of the metals. It is more like a traditional battery than real power generation - refining of metals requires energy which a smaller portion is released when you are using it as a battery.
To show real energy harvesting, I would like to see non-reactive electrodes such as graphite used.
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I believe I will get a working prototype within the next month for the P cell, enough so that I can demonstrate a larger amount of power being generated.