Dielectric barrier discharge plasma-assisted catalytic ammonia synthesis: synergistic effect of Ni-MOF-74 catalyst and nanosecond pulsed plasma

Xiaofang Xu, Meng Sun, Qinlong Song, Xuan Wu, Chongchong Chen, Chen Qiang, Haibao Zhang
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Abstract

Ammonia is one of the most important chemical raw materials in both manufacture and life of human. Traditionally Haber-Bosch method for ammonia synthesis involves high temperature and high pressure conditions, leading to significant energy consumption and environmental pollution. Non-thermal plasma (NTP) is a promising alternative approach to ammonia synthesis at low temperature and atmospheric pressure. In this study, the synergistic effect of nanosecond pulsed dielectric barrier discharge (np-DBD) and Ni-MOF-74 catalyst was investigated in ammonia synthesis by utilizing nitrogen and hydrogen as feedstock. The results demonstrated that the plasma catalytic-synthesis process parameters play a crucial role in the synthesis process of ammonia. The highest ammonia synthesis rate of 5145.16 μmol·g−1·h−1 with an energy efficiency of 1.27 g·kWh−1 was observed in the presence of the Ni-MOF-74 catalyst, which was 3.7 times higher than that without Ni-MOF-74 catalyst. The synergistic effect of Ni-MOF-74 catalyst and nanosecond pulsed plasma was explored by in-situ plasma discharge diagnostics.
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介质阻挡放电等离子体辅助催化合成氨:Ni-MOF-74 催化剂和纳秒脉冲等离子体的协同效应
氨是人类生产和生活中最重要的化工原料之一。传统的 Haber-Bosch 合成氨法涉及高温高压条件,导致大量能源消耗和环境污染。非热等离子体(NTP)是在低温和常压条件下合成氨的一种很有前途的替代方法。本研究以氮气和氢气为原料,考察了纳秒脉冲介质阻挡放电(np-DBD)和 Ni-MOF-74 催化剂在氨合成中的协同效应。结果表明,等离子体催化合成工艺参数在氨合成过程中起着至关重要的作用。在有 Ni-MOF-74 催化剂存在的条件下,氨合成率最高,达到 5145.16 μmol-g-1-h-1,能效为 1.27 g-kWh-1,是无 Ni-MOF-74 催化剂条件下的 3.7 倍。通过原位等离子体放电诊断探讨了 Ni-MOF-74 催化剂和纳秒脉冲等离子体的协同效应。
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