Efficiency of chemical reactions rate increased by Carbonic Anhydrase enzyme in Capturing CO2
AJAS · 2022 Environmental Science
Overview
CO2 in the atmosphere is a major driver of global warming, trapping heat in the atmosphere. Much CO2 release and the resultant increases in global warming have been attributed to widespread human use of fossil fuels. Keeping CO2 from the atmosphere is called sequestration, and specifically focusing on power plants, which generate 33% of emissions current methods involve using liquid amine scrubbers to purify CO2 from coal flue gas, and then injecting it into mile deep underground sites. This method is inefficient, logistically and financially, to deploy en masse to global powerplants. This project aims to find a better method to sequester CO2, through biochemical reactions. The enzyme carbonic anhydrase, catalyzes interconversion of CO2 and water to carbonic acid, around a million times per second in ideal conditions. Carbonic acid is then reacted with calcium hydroxide(a base) to form calcium carbonate, a precipitate with many industrial uses. Proof of concept was provided through testing four 15 min. trials of 4 different millimolar concentrations of carbonic anhydrase in a prototype bucket with a 200 micron polypropylene mesh, simulating a reaction chamber with high CO2 concentration(10 g of CO2 and water, 20 g of calcium hydroxide); measured for efficiency and cost to effect ratio, through a 100% CO2 sensor. The 5 micromolar concentration was best in cost to efficiency, 50 micromolar was best in total sequestration. At industrial scale, this could in theory sequester 1 ton of CO2 in 12 hours at a cost of $3,800 dollars.
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From the student
This was my first year research project in high school. I've always liked science because of the way it helps us understand how the world works, and the brilliance of natural phenomena. AS we gained more public insight into global warming and its mechanisms throughout the 2010s, I myself became much more aware of the threats it posed to our well being and future, especially caused by human emissions. Thus, when I had the opportunity to do a research project, one of the topics I researched as a potential proposal was methods that could help us more effectively capture carbon dioxide emissions. Current methods aren't as widely applied as they could be due to complexity, cost , and time, so I looked for a pathway that could supplement or be better these methods. Thats how I came to my project, and I learned a lot about possible solutions to this problem and the research process through this experience
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Awards (1)
- AJAS Fellows Badge
Competition history
- AJAS 2022
Resources
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