Design of a Simple and Cheap Water Electrolyser for the Production of Solar Hydrogen

<p>Commercially available conventional alkaline electrolyser and advanced polymer membrane electrolysers for water electrolysis are quite expensive. Taking into account this aspect, a very simple and cheap water electrolyser has been designed and fabricated utilising easily available economica...

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Main Author: R. Prasad
Format: Article
Language:English
Published: Masyarakat Katalis Indonesia - Indonesian Catalyst Society (MKICS) 2009-06-01
Series:Bulletin of Chemical Reaction Engineering & Catalysis
Subjects:
Online Access:http://ejournal.undip.ac.id/index.php/bcrec/article/view/21
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author R. Prasad
author_facet R. Prasad
author_sort R. Prasad
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description <p>Commercially available conventional alkaline electrolyser and advanced polymer membrane electrolysers for water electrolysis are quite expensive. Taking into account this aspect, a very simple and cheap water electrolyser has been designed and fabricated utilising easily available economical materials for small scale production of hydrogen using renewable energy from photovoltaic panel. The construction details of the electrolyser with a schematic drawing of the experimental set-up for PV production of H2 are given. In order to fabricate the compact electrolyser, two coaxial tubular PVC pipes were used. The lower part of the inner pipe has fine perforations for the transport of ions through electrolyte between the electrodes. Two cylindrical electrodes, cathode and anode are kept in inner and outer pipes respectively. The performance of hydrogen production was measured using a photovoltaic panel directly connected to the electrolyser under atmospheric pressure and in 27wt% KOH solution. Flow rates of hydrogen and oxygen were measured using a digital flow meter. High purity fuel cell grade hydrogen (99.98%) and oxygen (99.85%) have been produced. The experimental results confirm that the present electrolyser has eligible properties for hydrogen production in remote areas. No such electrolyser has been reported prior to this work. Copyright (c) 2009 by BCREC. All rights reserved.</p><p><em>[Received: 20 May 2009, Revised: 14 August 2009, Accepted: 19 August 2009]</em></p><p><strong>[How to Cite</strong>: R. Prasad. (2009). Design of a Simple and Cheap Water Electrolyser for the Production of Solar Hydrogen. <em>Bulletin of Chemical Reaction Engineering and Catalysis</em>, 4(1): 10-15. <strong>doi:10.9767/bcrec.4.1.21.10-15</strong>]</p><p>[<strong>How to Link/ DOI</strong>: <a href="http://dx.doi.org/10.9767/bcrec.4.1.21.10-15" target="_self">http://dx.doi.org/10.9767/bcrec.4.1.21.10-15</a> ]</p><p> </p>
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spelling doaj.art-2033c216c3914a73a369bb82f1a98d7a2023-11-02T04:19:40ZengMasyarakat Katalis Indonesia - Indonesian Catalyst Society (MKICS)Bulletin of Chemical Reaction Engineering & Catalysis1978-29932009-06-0141101510.9767/bcrec.4.1.21.10-15Design of a Simple and Cheap Water Electrolyser for the Production of Solar HydrogenR. Prasad<p>Commercially available conventional alkaline electrolyser and advanced polymer membrane electrolysers for water electrolysis are quite expensive. Taking into account this aspect, a very simple and cheap water electrolyser has been designed and fabricated utilising easily available economical materials for small scale production of hydrogen using renewable energy from photovoltaic panel. The construction details of the electrolyser with a schematic drawing of the experimental set-up for PV production of H2 are given. In order to fabricate the compact electrolyser, two coaxial tubular PVC pipes were used. The lower part of the inner pipe has fine perforations for the transport of ions through electrolyte between the electrodes. Two cylindrical electrodes, cathode and anode are kept in inner and outer pipes respectively. The performance of hydrogen production was measured using a photovoltaic panel directly connected to the electrolyser under atmospheric pressure and in 27wt% KOH solution. Flow rates of hydrogen and oxygen were measured using a digital flow meter. High purity fuel cell grade hydrogen (99.98%) and oxygen (99.85%) have been produced. The experimental results confirm that the present electrolyser has eligible properties for hydrogen production in remote areas. No such electrolyser has been reported prior to this work. Copyright (c) 2009 by BCREC. All rights reserved.</p><p><em>[Received: 20 May 2009, Revised: 14 August 2009, Accepted: 19 August 2009]</em></p><p><strong>[How to Cite</strong>: R. Prasad. (2009). Design of a Simple and Cheap Water Electrolyser for the Production of Solar Hydrogen. <em>Bulletin of Chemical Reaction Engineering and Catalysis</em>, 4(1): 10-15. <strong>doi:10.9767/bcrec.4.1.21.10-15</strong>]</p><p>[<strong>How to Link/ DOI</strong>: <a href="http://dx.doi.org/10.9767/bcrec.4.1.21.10-15" target="_self">http://dx.doi.org/10.9767/bcrec.4.1.21.10-15</a> ]</p><p> </p>http://ejournal.undip.ac.id/index.php/bcrec/article/view/21Cheap electrolyserSimple electrolyserWater electrolysisSolar hydrogenHydrogen energy
spellingShingle R. Prasad
Design of a Simple and Cheap Water Electrolyser for the Production of Solar Hydrogen
Bulletin of Chemical Reaction Engineering & Catalysis
Cheap electrolyser
Simple electrolyser
Water electrolysis
Solar hydrogen
Hydrogen energy
title Design of a Simple and Cheap Water Electrolyser for the Production of Solar Hydrogen
title_full Design of a Simple and Cheap Water Electrolyser for the Production of Solar Hydrogen
title_fullStr Design of a Simple and Cheap Water Electrolyser for the Production of Solar Hydrogen
title_full_unstemmed Design of a Simple and Cheap Water Electrolyser for the Production of Solar Hydrogen
title_short Design of a Simple and Cheap Water Electrolyser for the Production of Solar Hydrogen
title_sort design of a simple and cheap water electrolyser for the production of solar hydrogen
topic Cheap electrolyser
Simple electrolyser
Water electrolysis
Solar hydrogen
Hydrogen energy
url http://ejournal.undip.ac.id/index.php/bcrec/article/view/21
work_keys_str_mv AT rprasad designofasimpleandcheapwaterelectrolyserfortheproductionofsolarhydrogen