Photoelectrocatalytic generation of H2 and S from toxic H2S by using a novel BiOI/WO3 nanoflake array photoanode
Author:
Publisher
Springer Science and Business Media LLC
Subject
Energy Engineering and Power Technology
Link
https://link.springer.com/content/pdf/10.1007/s11708-021-0775-7.pdf
Reference30 articles.
1. Yoosuk B, Wongsanga T, Prasassarakich P. CO2 and H2S binary sorption on polyamine modified fumed silica. Fuel, 2016, 168: 47–53
2. Nunnally T, Gutsol K, Rabinovich A, et al. Dissociation of H2S in non-equilibrium gliding arc “tornado” discharge. International Journal of Hydrogen Energy, 2009, 34(18): 7618–7625
3. Rabbani K A, Charles W, Kayaalp A, et al. Pilot-scale biofilter for the simultaneous removal of hydrogen sulphide and ammonia at a wastewater treatment plant. Biochemical Engineering Journal, 2016, 107: 1–10
4. Piéplu A, Saur O, Lavalley J C, et al. Claus catalysis and H2S selective oxidation. Catalysis Reviews, 1998, 40(4): 409–450
5. Zong X, Chen H, Seger B, et al. Selective production of hydrogen peroxide and oxidation of hydrogen sulfide in an unbiased solar photoelectrochemical cell. Energy & Environmental Science, 2014, 7(10): 3347–3351
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