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首页> 外文期刊>Journal of power sources >Improvement of activated carbons as oxygen reduction catalysts in neutral solutions by ammonia gas treatment and their performance in microbial fuel cells
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Improvement of activated carbons as oxygen reduction catalysts in neutral solutions by ammonia gas treatment and their performance in microbial fuel cells

机译:通过氨气处理改善中性溶液中作为氧气还原催化剂的活性炭及其在微生物燃料电池中的性能

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摘要

Commercially available activated carbon (AC) powders from different precursor materials (peat, coconut shell, coal, and hardwood) were treated with ammonia gas at 700 ℃ to improve their performance as oxygen reduction catalysts in neutral pH solutions used in microbial fuel cells (MFCs). The ammonia treated ACs exhibited better catalytic performance in rotating ring-disk electrode tests than their untreated precursors, with the bituminous based AC most improved, with an onset potential of E_(onset) = 0.12 V (untreated, H_(onset) = 0.08 V) and n = 3.9 electrons transferred in oxygen reduction (untreated, n = 3.6), and the hardwood based AC (treated, E_(Onset) = 0.03 V, n = 3.3; untreated, E_(onSet) = 0.04 V, n = 3.0). Ammonia treatment decreased oxygen content by 29-58%, increased nitrogen content to 1.8 atomic %, and increased the basicity of the bituminous, peat, and hardwood ACs. The treated coal based AC cathodes had higher maximum power densities in MFCs (2450 ± 40 mW m~(-2)) than the other AC cathodes or a Pt/C cathode (2100 ± 1 mW m~(-2)). These results show that reduced oxygen abundance and increased nitrogen functionalities on the AC surface can increase catalytic performance for oxygen reduction in neutral media.
机译:将来自不同前体材料(豌豆,椰子壳,煤炭和硬木)的市售活性炭(AC)粉末在700℃下用氨气处理,以改善其在微生物燃料电池(MFCs)中性pH溶液中作为氧还原催化剂的性能。 )。氨处理的AC在旋转环盘电极测试中比未处理的前体表现出更好的催化性能,其中沥青基AC的改善最大,起始电位为E_(起始)= 0.12 V(未处理,H_(起始)= 0.08 V )和n = 3.9在氧还原中转移的电子(未处理,n = 3.6),和基于硬木的AC(已处理,E_(起始)= 0.03 V,n = 3.3;未处理,E_(onSet)= 0.04 V,n = 3.0)。氨处理将氧气含量降低了29-58%,将氮气含量提高到1.8原子%,并增加了沥青,泥炭和硬木AC的碱性。经过处理的煤基交流阴极在MFC中的最大功率密度(2450±40 mW m〜(-2))比其他交流阴极或Pt / C阴极(2100±1 mW m〜(-2))高。这些结果表明,降低AC表面的氧丰度和提高氮官能度可以提高中性介质中氧还原的催化性能。

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