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首页> 外文期刊>The Korean journal of chemical engineering >Electrochemical synthesis of ammonia from water and nitrogen: A Fe-mediated approach
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Electrochemical synthesis of ammonia from water and nitrogen: A Fe-mediated approach

机译:水和氮气氨的电化学合成:Fe介导的方法

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摘要

Operation at mild conditions is essential for electrochemical processes enough to replace the Haber-Bosch process. Current electrochemical methods mainly rely on the synthesis of novel electro-catalysts before the operation of an electrochemical system, which burdens with extra cost, time, and the use of toxic non-green organic solvents. In this study, the zero-valent iron(Fe-0)-mediated synthesis of NH3 was achieved at room temperature, with the active iron prepared in an on-site and continuous way. This on-site approach enabled us to remove the step of cumbersome synthesis of nano-sized electrocatalysts, thereby providing the active surface Fe for nitrogen reduction in eco-friendlier way. When a cell voltage of 4.5 was applied in the two-electrode water-based system, NH3 was found to be synthesized, which was accompanied by the deposition of Fe on the cathode surface. Considering that iron is among the most abundant and cheapest metals, this room-temperature synthesis proof of the concept with solvent-free, in-situ deposition and its utilization as an electrochemical catalyst, once optimized, may offer an economically advantageous option.
机译:温和条件下的操作对于足够的电化学工艺至关重要以取代Haber-Bosch工艺。电流电化学方法主要依赖于电化学系统运行前新型电催化剂的合成,其额外成本,时间和毒性非绿色有机溶剂负担。在该研究中,在室温下实现零价铁(Fe-0)介导的NH 3合成,用现场和连续的方式制备活性铁。该现场方法使我们能够去除纳米尺寸电催化剂的繁琐合成的步骤,从而为生态友好方式提供了活性表面Fe以减少氮气。当在两个电极水基系统中施加4.5的电池电压时,发现NH 3被合成,其伴随着阴极表面上的Fe沉积。考虑到铁是最丰富和最便宜的金属,该室温合成证明溶剂的概念,原位沉积及其作为电化学催化剂的利用,可以提供经济上有利的选择。

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