Self-designed three-component electrolyzer electroconversion preparation process and its application prospect
In recent years, the process of anion/cation membrane electrodialysis to produce nanomaterials and bipolar membrane electrodialysis to produce acid has the advantages of greenness, energy saving, high efficiency, significant industrial application value, and environmental benefits. It has aroused th...
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Format: | Article |
Language: | English |
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Elsevier
2023-03-01
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Series: | Journal of Materials Research and Technology |
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Online Access: | http://www.sciencedirect.com/science/article/pii/S2238785423000236 |
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author | Shengnan Lin Tingan Zhang |
author_facet | Shengnan Lin Tingan Zhang |
author_sort | Shengnan Lin |
collection | DOAJ |
description | In recent years, the process of anion/cation membrane electrodialysis to produce nanomaterials and bipolar membrane electrodialysis to produce acid has the advantages of greenness, energy saving, high efficiency, significant industrial application value, and environmental benefits. It has aroused the extensive interest of many scholars and production enterprises and has become a hot spot of current research. In this paper, for the first time, we innovatively proposed the preparation of copper-ammonia complex ions and dilute hydrochloric acid by the three-component electroconversion method (TCM). With the help of bipolar membrane and anion/cation membrane, a new three-component electrolyzer was designed and a cycle experiment process was designed, which greatly improved environmental problems and reduced production costs. We achieve sustainable copper ammonia fibre (CAF) production through continuous power supply and feedstock addition. Further, we combine wastewater treatment with electroconversion to produce four value-added products H2, O2, dilute sulfuric acid, Cu(OH)2, and Cu2(OH)2SO4. Meanwhile, this paper points out the opportunities and challenges faced by the large-scale application of TCEM in the production of acid, nano-metal materials, and metal complexes, in order to promote the promotion and application of the technology and the improvement of related production processes. |
first_indexed | 2024-04-09T21:20:02Z |
format | Article |
id | doaj.art-f0db6d88af794cd09a30507940e92bd8 |
institution | Directory Open Access Journal |
issn | 2238-7854 |
language | English |
last_indexed | 2024-04-09T21:20:02Z |
publishDate | 2023-03-01 |
publisher | Elsevier |
record_format | Article |
series | Journal of Materials Research and Technology |
spelling | doaj.art-f0db6d88af794cd09a30507940e92bd82023-03-28T06:45:48ZengElsevierJournal of Materials Research and Technology2238-78542023-03-0123976984Self-designed three-component electrolyzer electroconversion preparation process and its application prospectShengnan Lin0Tingan Zhang1Northeastern University, School of Metallurgy, Key Laboratory of Ecological Metallurgy of Multi-metal Intergrown Ores of Ministry of Education, Liaoning Shenyang, 110819, ChinaCorresponding author.; Northeastern University, School of Metallurgy, Key Laboratory of Ecological Metallurgy of Multi-metal Intergrown Ores of Ministry of Education, Liaoning Shenyang, 110819, ChinaIn recent years, the process of anion/cation membrane electrodialysis to produce nanomaterials and bipolar membrane electrodialysis to produce acid has the advantages of greenness, energy saving, high efficiency, significant industrial application value, and environmental benefits. It has aroused the extensive interest of many scholars and production enterprises and has become a hot spot of current research. In this paper, for the first time, we innovatively proposed the preparation of copper-ammonia complex ions and dilute hydrochloric acid by the three-component electroconversion method (TCM). With the help of bipolar membrane and anion/cation membrane, a new three-component electrolyzer was designed and a cycle experiment process was designed, which greatly improved environmental problems and reduced production costs. We achieve sustainable copper ammonia fibre (CAF) production through continuous power supply and feedstock addition. Further, we combine wastewater treatment with electroconversion to produce four value-added products H2, O2, dilute sulfuric acid, Cu(OH)2, and Cu2(OH)2SO4. Meanwhile, this paper points out the opportunities and challenges faced by the large-scale application of TCEM in the production of acid, nano-metal materials, and metal complexes, in order to promote the promotion and application of the technology and the improvement of related production processes.http://www.sciencedirect.com/science/article/pii/S2238785423000236Three-component electrolytic cellElectroconversionCopper ammonia fibreValue-added products |
spellingShingle | Shengnan Lin Tingan Zhang Self-designed three-component electrolyzer electroconversion preparation process and its application prospect Journal of Materials Research and Technology Three-component electrolytic cell Electroconversion Copper ammonia fibre Value-added products |
title | Self-designed three-component electrolyzer electroconversion preparation process and its application prospect |
title_full | Self-designed three-component electrolyzer electroconversion preparation process and its application prospect |
title_fullStr | Self-designed three-component electrolyzer electroconversion preparation process and its application prospect |
title_full_unstemmed | Self-designed three-component electrolyzer electroconversion preparation process and its application prospect |
title_short | Self-designed three-component electrolyzer electroconversion preparation process and its application prospect |
title_sort | self designed three component electrolyzer electroconversion preparation process and its application prospect |
topic | Three-component electrolytic cell Electroconversion Copper ammonia fibre Value-added products |
url | http://www.sciencedirect.com/science/article/pii/S2238785423000236 |
work_keys_str_mv | AT shengnanlin selfdesignedthreecomponentelectrolyzerelectroconversionpreparationprocessanditsapplicationprospect AT tinganzhang selfdesignedthreecomponentelectrolyzerelectroconversionpreparationprocessanditsapplicationprospect |