Scientists find a more effective way to produce hydrogen from organic waste

Although most people think of electric vehicles when considering zero-emission driving, vehicles powered by hydrogen fuel cells are another option, but the challenge now is hydrogen fuel infrastructure and hydrogen production. Scientists at Tokyo Institute of Technology have discovered a new technology that uses rust and light to accelerate organic waste solutions to produce hydrogen.

Researchers believe that this discovery may bring revolutionary changes to the clean energy industry. New research shows that under the same light, α-FeOOH rust and Hg-Xe lamp irradiation can become a more effective hydrogen production catalyst than titanium dioxide, and the efficiency is increased by 25 times. In this process, a key problem that must be solved is to prevent the reconnection of hydrogen and oxygen. Once hydrogen is produced, the reconnection constitutes a potential danger. The research team was surprised to use rust as a catalyst to produce hydrogen. According to one researcher, most iron oxides do not reduce hydrogen.

The team found that α-FeOOH is activated by oxygen, which is another surprising phenomenon, because previous studies have shown that oxygen inhibits the production of hydrogen by capturing excited electrons. In the test, light and rust combined in the process to produce stable hydrogen for more than 400 hours. The team intends to continue to study the process, the specific process of oxygen activation of α-FeOOH is still unknown. The team's next challenge is to explore this mechanism. It is hoped that this perfect process will help achieve zero emissions through sustainable energy.

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project

index

Drying time,h

Table dry

≤4

action

≤24

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Bending strength

≥7

Compressive strength

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Shore strength

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Wear resistance(750g/500r,weightlessness,g)

≤0.03

Adhesive strength

≥2

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30 days without exception

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Special Epoxy Stop Slurry Floor

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