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长期连续氨电合成。

Long-term continuous ammonia electrosynthesis.

机构信息

Department of Physics, Technical University of Denmark, Kongens Lyngby, Denmark.

Department of Chemistry, Technical University of Denmark, Kongens Lyngby, Denmark.

出版信息

Nature. 2024 May;629(8010):92-97. doi: 10.1038/s41586-024-07276-5. Epub 2024 Mar 19.

Abstract

Ammonia is crucial as a fertilizer and in the chemical industry and is considered to be a carbon-free fuel. Ammonia electrosynthesis from nitrogen under ambient conditions offers an attractive alternative to the Haber-Bosch process, and lithium-mediated nitrogen reduction represents a promising approach to continuous-flow ammonia electrosynthesis, coupling nitrogen reduction with hydrogen oxidation. However, tetrahydrofuran, which is commonly used as a solvent, impedes long-term ammonia production owing to polymerization and volatility problems. Here we show that a chain-ether-based electrolyte enables long-term continuous ammonia synthesis. We find that a chain-ether-based solvent exhibits non-polymerization properties and a high boiling point (162 °C) and forms a compact solid-electrolyte interphase layer on the gas diffusion electrode, facilitating ammonia release in the gas phase and ensuring electrolyte stability. We demonstrate 300 h of continuous operation in a flow electrolyser with a 25 cm electrode at 1 bar pressure and room temperature, and achieve a current-to-ammonia efficiency of 64 ± 1% with a gas-phase ammonia content of approximately 98%. Our results highlight the crucial role of the solvent in long-term continuous ammonia synthesis.

摘要

氨作为肥料和化学工业中的重要物质,被认为是一种无碳燃料。在环境条件下通过氮气进行氨电合成提供了一种有吸引力的替代哈伯-博世工艺的方法,而锂介导的氮还原代表了一种很有前途的连续流氨电合成方法,它将氮还原与氢氧化耦合在一起。然而,由于聚合和挥发性问题,常用作溶剂的四氢呋喃会阻碍长期的氨生产。在这里,我们展示了一种基于链醚的电解质可以实现长期连续的氨合成。我们发现,基于链醚的溶剂具有不易聚合的特性,且沸点高(162°C),在气体扩散电极上形成致密的固体电解质中间相层,有利于气相中氨的释放,并确保电解质的稳定性。我们在 1 巴压力和室温下,在一个带有 25 厘米电极的流动电解槽中进行了 300 小时的连续操作,实现了 64±1%的电流到氨效率,气相中氨的含量约为 98%。我们的结果强调了溶剂在长期连续氨合成中的关键作用。

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