Water electrolysis system Ozone Technology - Innovation seven membrane electrode assembly in the corrosion-resistant micro porous layer the research and development
碩士 === 元智大學 === 先進能源碩士學位學程 === 101 === Micro porous layer is common in the field of water electrolysis hydrogen, but in the field of water electrolysis ozone produced does not have the relevant studies. The reason is that water electrolysis production of ozone has a higher voltage and more stringent...
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ndltd-TW-101YZU053990032016-03-18T04:41:49Z http://ndltd.ncl.edu.tw/handle/93678324464616132661 Water electrolysis system Ozone Technology - Innovation seven membrane electrode assembly in the corrosion-resistant micro porous layer the research and development 水電解製超氧技術-創新七層膜電極組中抗蝕微孔層之研發 chih-yuan lin 林智遠 碩士 元智大學 先進能源碩士學位學程 101 Micro porous layer is common in the field of water electrolysis hydrogen, but in the field of water electrolysis ozone produced does not have the relevant studies. The reason is that water electrolysis production of ozone has a higher voltage and more stringent experimental environment. This experiment has been tested and selected by carbon paper as the substrate, the corrosion resistance micro porous layer is coated on a substrate coated . The corrosion-resistant micro porous layer is increased in water solutions of superoxide production anode electrode group mode. To power tests for anti-corrosion layer impedance analysis and performance analysis of electrical. Guo-bin Jung 鐘國濱 2013 學位論文 ; thesis 44 zh-TW |
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碩士 === 元智大學 === 先進能源碩士學位學程 === 101 === Micro porous layer is common in the field of water electrolysis hydrogen, but in the field of water electrolysis ozone produced does not have the relevant studies. The reason is that water electrolysis production of ozone has a higher voltage and more stringent experimental environment. This experiment has been tested and selected by carbon paper as the substrate, the corrosion resistance micro porous layer is coated on a substrate coated . The corrosion-resistant micro porous layer is increased in water solutions of superoxide production anode electrode group mode. To power tests for anti-corrosion layer impedance analysis and performance analysis of electrical.
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Guo-bin Jung |
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Guo-bin Jung chih-yuan lin 林智遠 |
author |
chih-yuan lin 林智遠 |
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chih-yuan lin 林智遠 Water electrolysis system Ozone Technology - Innovation seven membrane electrode assembly in the corrosion-resistant micro porous layer the research and development |
author_sort |
chih-yuan lin |
title |
Water electrolysis system Ozone Technology - Innovation seven membrane electrode assembly in the corrosion-resistant micro porous layer the research and development |
title_short |
Water electrolysis system Ozone Technology - Innovation seven membrane electrode assembly in the corrosion-resistant micro porous layer the research and development |
title_full |
Water electrolysis system Ozone Technology - Innovation seven membrane electrode assembly in the corrosion-resistant micro porous layer the research and development |
title_fullStr |
Water electrolysis system Ozone Technology - Innovation seven membrane electrode assembly in the corrosion-resistant micro porous layer the research and development |
title_full_unstemmed |
Water electrolysis system Ozone Technology - Innovation seven membrane electrode assembly in the corrosion-resistant micro porous layer the research and development |
title_sort |
water electrolysis system ozone technology - innovation seven membrane electrode assembly in the corrosion-resistant micro porous layer the research and development |
publishDate |
2013 |
url |
http://ndltd.ncl.edu.tw/handle/93678324464616132661 |
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