Copper-based electro-catalytic nitrate reduction to ammonia from water: Mechanism, preparation, and research directions
Global water bodies are increasingly imperiled by nitrate pollution, primarily originating from industrial waste, agricultural runoffs, and urban sewage. This escalating environmental crisis challenges traditional water treatment paradigms and necessitates innovative solutions. Electro-catalysis, es...
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Veröffentlicht in: | Environmental science and ecotechnology 2024-07, Vol.20, p.100383, Article 100383 |
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Sprache: | eng |
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Zusammenfassung: | Global water bodies are increasingly imperiled by nitrate pollution, primarily originating from industrial waste, agricultural runoffs, and urban sewage. This escalating environmental crisis challenges traditional water treatment paradigms and necessitates innovative solutions. Electro-catalysis, especially utilizing copper-based catalysts, known for their efficiency, cost-effectiveness, and eco-friendliness, offer a promising avenue for the electro-catalytic reduction of nitrate to ammonia. In this review, we systematically consolidate current research on diverse copper-based catalysts, including pure Cu, Cu alloys, oxides, single-atom entities, and composites. Furthermore, we assess their catalytic performance, operational mechanisms, and future research directions to find effective, long-term solutions to water purification and ammonia synthesis. Electro-catalysis technology shows the potential in mitigating nitrate pollution and has strategic importance in sustainable environmental management. As to the application, challenges regarding complexity of the real water, the scale-up of the commerical catalysts, and the efficient collection of produced NH3 are still exist. Following reseraches of catalyst specially on long term stability and in situ mechanisms are proposed.
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•Cu-based catalysts for nitrate reduction are categorized into four groups.•We showcase the development and modification strategies of Cu-based catalysts.•We evaluate the performance and potential future applications of Cu catalysts. |
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ISSN: | 2666-4984 2096-9643 2666-4984 |
DOI: | 10.1016/j.ese.2023.100383 |