Application of a powder photocatalyst on the surface of a bipolar membrane in water splitting
A technology of photocatalysts and bipolar membranes, applied in electrodes, electrolytic components, electrolytic processes, etc., can solve problems such as difficult recycling, easy powder agglomeration, and low efficiency of semiconductor photocatalyst photogenerated electron-hole separation. , solve the effect of easy reunion
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Embodiment approach 1
[0034] The surface of the powder state photocatalyzed bipolar membrane is used as the diaphragm of the cathode chamber and the anode chamber (wherein the surface of the cation exchange membrane constituting the bipolar membrane is loaded with Ag 2 O semiconductor photocatalyst powder, TiO loaded on the surface of the anion exchange membrane constituting the bipolar membrane 2 semiconductor photocatalyst powder), the Ag 2 O semiconductor photocatalyst powder material as a cathode, the TiO 2 Semiconductor photocatalyst powder material as anode, 0.5 M H 2 SO 4 The solution was used as the catholyte, and 1.0 M KOH solution was used as the anolyte; a xenon lamp was used as the simulated sunlight light source, and the photocatalytic water splitting hydrogen production was continuously carried out under the action of an applied voltage of 1.0 V.
[0035] The results of hydrogen production efficiency are attached Figure 12 And attached Figure 13 It is shown that at the same cur...
Embodiment approach 2
[0037] The surface of the powder state photocatalyzed bipolar membrane is used as the diaphragm of the cathode chamber and the anode chamber (wherein the surface of the cation exchange membrane constituting the bipolar membrane is loaded with Ag 2 O semiconductor photocatalyst powder, the surface of the anion exchange membrane constituting the bipolar membrane supports Fe 2 o 3 semiconductor photocatalyst powder), the Ag 2 O semiconductor photocatalyst powder material as a cathode, the Fe 2 o 3 Semiconductor photocatalyst powder material as anode, 0.5 M H 2 SO 4 The solution was used as the catholyte, and 0.5 M KOH solution was used as the anolyte; a xenon lamp was used as the simulated sunlight light source, and the photocatalytic water splitting hydrogen production was continuously carried out under the action of an applied voltage of 0.8 V.
[0038] The research results show that at the same current density, the hydrogen production efficiency of the catalyst-supported ...
Embodiment approach 3
[0040] The bipolar membrane with powder state photocatalysis on the surface is used as the diaphragm of the cathode chamber and the anode chamber (wherein, the surface of the cation exchange membrane constituting the bipolar membrane is loaded with CoO semiconductor photocatalyst powder, and the surface of the anion exchange membrane constituting the bipolar membrane is loaded with ZnO semiconductor photocatalyst powder), CoO semiconductor photocatalyst powder material is used as cathode, ZnO semiconductor photocatalyst powder material is used as anode, 1.0 M H 2 SO 4 The solution was used as the catholyte, and 1.0 M KOH solution was used as the anolyte; a xenon lamp was used as the simulated sunlight light source, and the photocatalytic water splitting hydrogen production was continuously carried out under the action of an applied voltage of 1.0 V.
[0041] The research results show that at the same current density, the hydrogen production efficiency of the catalyst-supported...
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