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Investigation of hydrogen production performance of a reactor assisted by a solar pond via photoelectrochemical process
Authors:Mehmet Karakilcik  Mustafa Erden  Müzeyyen Cilogulları  Ibrahim Dincer
Affiliation:1. Department of Physics, Faculty of Sciences and Letters, University of Cukurova, Adana 01330, Turkey;2. Faculty of Engineering and Applied Science, University of Ontario Institute of Technology (UOIT), 2000 Simcoe Street, North Oshawa, Ontario, L1H 7K4, Canada
Abstract:In this study, the hydrogen production performance of a reactor assisted by a solar pond by photoelectrochemical method is examined conceptually. The main components of the new integrated system are a solar pond, a photovoltaic panel (PV) and a hybrid chlor-alkali reactor which consists of a semiconductor anot, photocathode and cation exchange membrane. The proposed system produces hydrogen via water splitting reaction and also yields the by products namely chlorine and sodium hydroxide while consumes saturated NaCl solution and pure water. In order to increase the efficiency of the reactor, the saturated hot NaCl solution at the heat storage zone (HSZ) of the solar pond is transferred to the anot section and the heated pure water by heat exchanger in the HSZ is transferred to cathode section. The photoelectrode releases electrons for hydrogen production with diminishing the power requirement from the PV panel that is used as a source of electrical energy for the electrolysis. The results confirm that the thermal performance of the solar pond plays a key role on the hydrogen production efficiency of the reactor.
Keywords:Solar energy  Solar pond  Energy and exergy efficiency  Photoelectrochemical process  Hydrogen production
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