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Ammonia Synthesis at Low Pressure
Published on: August 23, 2017
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级联N2 减少过程与DBD等离子氧化和电催化减少用于连续氨合成
Wen Peng Liang1, Xiao-Ming Zhang2, Pan-Wei Bai1
1Institute of Industrial Catalysis, School of Chemical Engineering and Technology, Xi'an Jiaotong University, Xi'an, Shaanxi 710049, P. R. China.
Environmental science & technology
|September 20, 2023
概括
使用介电屏障放电 (DBD) 等离子体和电催化物的新级联工艺为氨合成提供了一个可持续的替代方案. 这种方法有效地将转化为氨,与哈伯-博什工艺相比,减少能源强度和二氧化碳排放.
科学领域:
- 化学工程是化学工程的重要组成部分.
- 等离子体化学
- 电化学 电化学 电化学
背景情况:
- 合成氨的哈伯 - 博什工艺是能源密集的,也是二氧化碳排放的主要来源.
- 高的NN键能使传统氨生产需要恶劣的条件.
研究的目的:
- 提出和评估一种结合非热等离子体氧化和电催化还原的新级降低工艺.
- 为了证明氨合成的可持续和节能替代途径.
主要方法:
- 使用介电屏障放电 (DBD) 血将N2氧化成活性物种 (RNS).
- 在KOH溶液中吸收RNS并将其电降解为氨 (NH4+).
- 采用催化剂来加强氨的电催化降解.
主要成果:
- 基于排放参数 (长度,功率,流量) 的优化NO生产.
- 使用催化剂实现了高选择性 (法拉迪效率>90%) 和氨产量 (45.45毫克/小时).
- 证明了稳定的氨生产率为16.21毫克/小时,活性NO转化为NH4+的转化率为22.16%.
结论:
- 拟议的级联等离子氧化和电催化还原是氨合成的可行替代方案.
- 这种方法显示出工业应用的潜力,可减少能源消耗和二氧化碳足迹.
- 进一步的研究可以优化该系统,以提高效率和更广泛的工业采用.
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