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Solid-state electrochemical synthesis of ammonia: A review

机译:固态电化学合成氨的研究进展

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Ammonia is one of the most produced chemicals worldwide, and it is not only a major end product but also an important energy storage intermediate. The solid-state electrochemical synthesis of ammonia has the promise to overcome the limitations of the conventional catalytic reactors such as the limited conversion, severe environmental pollution and high energy consumption. Solid-state electrolytes either protonic or oxide ion conductors have been reviewed and particular emphasis is placed on their application to synthesise ammonia. The highest rate of ammonia formation according to the type of electrolyte utilised were in the following order; solid polymers > Ce _(0.8)Gd_(0.2)O_(2-δ-) (Ca_3(PO _4)_2-K_3PO_4) composites > fluorites > perovskites > pyrochlores although the catalysts in electrodes also play an important role. The highest rate reported so far is found to be 1.13×10~(-8) mol s~(-1) cm~(-2) at 80 °C with a potential of 2 V using Nafion membrane, SmFe_(0.7)Cu _(0.1)Ni_(0.2)O_3 (SFCN), and Ni-Ce _(0.8)Sm_(0.2)O_(2-δ) as solid electrolyte, cathode and anode, respectively. Synthesising ammonia from steam and N _2, bypassing H_2 stage offers many advantages such as reduction of device numbers and then the overall costs. The factors affecting the rate of ammonia formation have been discussed as well.
机译:氨气是世界上生产量最大的化学品之一,它不仅是主要的最终产品,还是重要的储能中间体。氨的固态电化学合成有望克服常规催化反应器的局限性,例如转化率有限,严重的环境污染和高能耗。已经审查了质子或氧化物离子导体的固态电解质,并特别强调了它们在合成氨中的应用。根据所用电解质的类型,氨形成的最高速率按以下顺序进行:固体聚合物> Ce _(0.8)Gd_(0.2)O_(2-δ-)(Ca_3(PO _4)_2-K_3PO_4)复合材料>萤石>钙钛矿>烧绿石,尽管电极中的催化剂也起着重要作用。使用Nafion膜SmFe_(0.7)Cu,在80°C和2 V的电势下,迄今为止报道的最高速率为1.13×10〜(-8)mol s〜(-1)cm〜(-2) _(0.1)Ni_(0.2)O_3(SFCN)和Ni-Ce _(0.8)Sm_(0.2)O_(2-δ)分别作为固体电解质,阴极和阳极。由蒸汽和N _2绕过H_2阶段合成氨具有许多优点,例如减少设备数量,然后降低总成本。还讨论了影响氨形成速率的因素。

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