Photocatalytic hydrogen production system and hydrogen gas preparation method thereof
A photocatalysis and system technology, applied in the production of hydrogen and other directions, can solve the problems of loss of catalytic activity, increase in cost, and complex structure, and achieve the effects of easy operation, improved hydrogen production efficiency, and increased hydrogen production.
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Embodiment 1
[0057] A photocatalytic hydrogen production system using a stabilizer and a method for producing hydrogen: wherein the concentration of the polycarbonyl diiron disulfide cluster compound is 1.00×10 -5 mol / L; the concentration of MPA-CdTe QDs (as Cd 2+ gauge) is 7.00 x 10 -5 mol / L; stabilizer chitosan concentration (calculated as chitosan monomer) is 3.00×10 -3 mol / L; ascorbic acid (H 2 A) The concentration is 8.75×10 -2 mol / L; the size of MPA-CdTe QDs is 3.4nm; the solvent is a mixed solvent of methanol and water with a volume ratio of 1:1; the total sample volume is 10mL; the pH of the sample before irradiation is 3.8.
[0058] The method for preparing hydrogen by using the above photocatalytic hydrogen production system is: irradiate the sample with visible light of λ>400nm, and monitor the sample by gas spectrometer every 2 hours of light; after 28 hours of light, the calculated hydrogen production of the sample is about 3.63mL, The hydrogen turnover number (TON) calcul...
Embodiment 2
[0062] A photocatalytic hydrogen production system using a stabilizer and a method for producing hydrogen: wherein the concentration of the polycarbonyl diiron disulfide cluster compound is 1.00×10 -5 mol / L; the concentration of MPA-CdTe QDs (as Cd 2+ gauge) is 7.00 x 10 -5 mol / L; stabilizer chitosan concentration (calculated as chitosan monomer) is 3.00×10 -3 mol / L; ascorbic acid (H 2 A) The concentration is 8.75×10 -2 mol / L; the size of MPA-CdTe QDs is 3.4nm; the solvent is a mixed solvent of methanol and water with a volume ratio of 1:1; the total sample volume is 10mL; the pH of the sample before irradiation is 3.8.
[0063] The method for preparing hydrogen by using the above photocatalytic hydrogen production system is: irradiate the sample with visible light of λ>400nm, and monitor the sample by gas spectrometer every 4 hours of light; after 24 hours of light, the calculated hydrogen production of the sample is about 1.67mL ( TON=748); the sample continued to produc...
Embodiment 3
[0067] A photocatalytic hydrogen production system using a stabilizer and a method for producing hydrogen: wherein the concentration of the polycarbonyl diiron disulfide cluster compound is 1.00×10 -5 mol / L; the concentration of MPA-CdTe QDs (as Cd 2+ gauge) is 7.00 x 10 -5 mol / L; stabilizer chitosan concentration (calculated as chitosan monomer) is 3.00×10 -3 mol / L; ascorbic acid (H 2 A) The concentration is 8.75×10 -2 mol / L; the size of MPA-CdTe QDs is 3.4nm; the solvent is a mixed solvent of methanol and water with a volume ratio of 1:1; the total sample volume is 10mL; the pH of the sample before irradiation is 3.8.
[0068] The method for preparing hydrogen by using the above photocatalytic hydrogen production system is: irradiate the sample with visible light of λ>400nm, and monitor the sample once every 4 hours of illumination; after 24 hours of illumination, the calculated hydrogen production of the sample is about 0.64mL ( TON=286); the sample continued to produce...
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