UC Irvine Finds Nitrogenase Ferritin Or Will Be Biofuel

As a team at the University of California, Irvine discovered that a natural enzyme (nitrogenase) contains ferritin (a reductase component) that does not react with natural catalysts and can convert carbon dioxide to carbon monoxide - the latter can be used As a synthetic gas, it produces useful biofuels and other chemicals. The team was led by Professor Yilin Hu in the field of Molecular Biology and Biochemistry.

According to the study, they may be able to place the reductase component alone in the soil bacterium, Azotobacter vinelandii, to convert carbon dioxide to carbon monoxide in a more practical way. The whole-cell system may be able to further explore new ways of converting carbon dioxide, converting the substance into biofuels and other commercially valuable chemicals. His current paper has been published in the journal Nature Chemical Biology.

For the global nitrogen cycle, nitrogenase is crucial and converts nitrogen into ammonia (NH3). Ferritin is a nitrogenase reductase component. Reductases can promote the chemical reduction of substances.

In the future, this technology may be used to produce biofuels, or it will be applied in the field of new energy vehicles.

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