Abstract

In this work, an experimental study was conducted to In this work, an experimental study was conducted to investigate the effect of PH on the hydrogen and oxygen production using photovoltaic power generation system. A testing rig was built, where the process of splitting water into hydrogen and oxygen occurs when a DC current generated by a photovoltaic system is passed between two electrodes, immersed in water and separated by a non-electrical conducting material which is resistive Teflon. The results of experimentation indicate that within the range of PH from 3 to 13, the further PH levels gets from PH=7 gives better hydrogen and oxygen production. Alkaline region gave better production. In this work, an experimental study was conducted to investigate the effect of PH on the hydrogen and oxygen production using photovoltaic power generation system. A testing rig was built, where the process of splitting water into hydrogen and oxygen occurs when a DC current generated by a photovoltaic system is passed between two electrodes, immersed in water and separated by a non-electrical conducting material which is resistive Teflon. The results of experimentation indicate that within the range of PH from 3 to 13, the further PH levels gets from PH=7 gives better hydrogen and oxygen production. Alkaline region gave better production. investigate the effect of PH on the hydrogen and oxygen production using photovoltaic powergeneration system. A testing rig was built, where the process of splitting water into hydrogen and oxygen occurs when a DC current generated by a photovoltaic system is passed between two electrodes, immersed in water and separated by a non-electrical conducting material which is resistive Teflon. The results of experimentation indicate that within the range of PH from 3 to 13, the further PH levels gets from PH=7 gives better hydrogen and oxygen production. Alkaline region gave better production. In this work, an experimental study was conducted to investigate the effect of PH on the hydrogen and oxygen production using photovoltaic power generation system. A testing rig was built, where the process of splitting water into hydrogen and oxygen occurs when aDC current generated by a photovoltaic system is passed between two electrodes, immersed in water and separated by a non-electrical conducting material which is resistiveTeflon. The results of experimentation indicate that within the range of PH from 3 to 13, the further PH levels gets from PH=7 gives better hydrogen and oxygen production. Alkaline region gave better production

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