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首页> 外文期刊>The Korean journal of chemical engineering >Anion-exchange-membrane-based electrochemical synthesis of ammonia as a carrier of hydrogen energy
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Anion-exchange-membrane-based electrochemical synthesis of ammonia as a carrier of hydrogen energy

机译:基于阴离子交换膜的电化学合成氨作为氢能的载体

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With a 17.6 wt% hydrogen content, ammonia is a non-carbon-emitting, easy to store and transport, carrier of hydrogen energy. In this study, an anion-exchange-membrane-based (AEM-based) electrochemical cell was used to electrochemically synthesize ammonia from water and nitrogen under ambient conditions. The electrochemical cell was fabricated by attaching Pt/C to both sides of the AEM, and ammonia was generated by supplying nitrogen gas to the cathodic chamber of the cell. AC impedance and current-voltage (I–V) properties were analyzed in relation to the externally applied voltage, and ammonia-formation rates and faradaic efficiencies were determined. The maximum ammonia-formation rate was 1.96×10_(−11)mol·s_(−1)·cm_(−2)at an applied voltage of 2V, with a faradaic efficiency of 0.18%.
机译:氨具有17.6 wt%的氢含量,是不排放碳的,易于存储和运输的氢能载体。在这项研究中,使用阴离子交换膜(AEM)电化学电池在环境条件下从水和氮中电化学合成氨。通过将Pt / C附着到AEM的两侧来制造电化学电池,并通过向电池的阴极腔室供应氮气来产生氨。分析了交流阻抗和电流电压(IV)与外部施加电压的关系,并确定了氨的形成速率和法拉第效率。在2V的施加电压下,最大氨形成速率为1.96×10 _(-11)mol·s _(-1)·cm _(-2),法拉第效率为0.18%。

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