4.7 Article

Influences of a bipolar membrane and an ultrasonic field on alkaline water electrolysis

期刊

JOURNAL OF MEMBRANE SCIENCE
卷 389, 期 -, 页码 197-204

出版社

ELSEVIER
DOI: 10.1016/j.memsci.2011.10.050

关键词

Plasma treatment; Water splitting; Bipolar membrane; Chelating monomer; Water electrolysis

资金

  1. Ministry of Economic Affairs [TDPA: 96-EC-17-A-05-S1-0014]
  2. National Science Council of the Republic of China [NSC96-2221-E-006-100-MY3, NSC100-3113E-024-001-CC2, NSC100-2221-E-006-056-MY3]

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The energy efficiency of alkaline water electrolysis improved by using the polyvinylidene fluoride-grafted 2-methacrylic acid 3-(bis-carboxymethylamino)-2-hydroxyl-propyl ester bipolar membrane (PVDF-g-GI BM) as diaphragms with an ultrasonic field (USF) has been explored in this study. The PVDF-g-G-1 BM was prepared by the plasma-induced polymerization method. The method utilized the porous PVDF membrane as substrates, and G-I monomer was grafted onto both sides of the PVDF membrane after plasma treatment. The performance of the PVDF-g-G-1 BM was demonstrated by measuring the cell voltage for the cell operated with or without an USF. According to steady-state E-Icurves, the order of the cell voltage for alkaline water electrolysis was the DuPont commercial membrane >Water> PVDF-g-G-I BM under the same working condition. The PVDF-g-G-1 BM was found to function well as a diaphragm in alkaline water electrolysis. In comparison with Water without an USF, the H2 production efficiency by using the PVDF-g-G-1 BM was improved 5-16/4% and an energy saving of ca. 15-20% (13-18%)/8-12% (6-10%) can be reached in alkaline water electrolysis at 0.5 M (1.0 M) NaOH for the cell operated with/without an USF, respectively. (C) 2011 Elsevier B.V. All rights reserved.

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