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一种具有双氧气供应的三维浮动空气阴极用于高效生产过氧化氢

A Three-dimensional Floating Air Cathode with Dual Oxygen Supplies for Energy-efficient Production of Hydrogen Peroxide.

作者信息

Zhang Haichuan, Li Yingjie, Zhang Hao, Li Guanghe, Zhang Fang

机构信息

School of Environment and State Key Joint Laboratory of Environment Simulation and Pollution Control, Tsinghua University, Beijing, 100084, China.

Key Laboratory for Solid Waste Management and Environment Safety (Tsinghua University), Ministry of Education of China, Tsinghua University, Beijing, 100084, China.

出版信息

Sci Rep. 2019 Feb 12;9(1):1817. doi: 10.1038/s41598-018-37919-3.

Abstract

The in situ and cleaner electrochemical production of hydrogen peroxide (HO) through two-electron oxygen reduction reaction has drawn increasing attentions in environmental applications as an alterantive to traditional anthraquinone process. Air cathodes avoid the need of aeration, but face the challenges of declined performance during scale-up due to non-uniform water infiltration or even water leakage, which is resulted from changing water pressures and immature cathode fabrication at a large scale. To address these challenges, a three-dimensional (3-D) floating air cathode (FAC) was built around the commercial sponge, by coating with carbon black/poly(tetrafluoroethylene) using a simple dipping-drying method. The FAC floated on the water-air interface without extensive water-proof measures, and could utilize oxygen both from passive diffusion and anodic oxygen evolution to produce HO. The FAC with six times of dipping treatment produced a maximum HO concentration of 177.9 ± 26.1 mg L at 90 min, with low energy consumption of 7.1 ± 0.003 Wh g and stable performance during 10 cycles of operation. Our results showed that this 3-D FAC is a promising approach for in situ HO production for both environmental remediation and industrial applications.

摘要

通过两电子氧还原反应原位且更清洁地电化学生产过氧化氢(HO),作为传统蒽醌法的替代方法,在环境应用中受到越来越多的关注。空气阴极避免了曝气的需要,但由于大规模生产时水压变化和阴极制造不成熟导致水渗透不均匀甚至漏水,在放大过程中面临性能下降的挑战。为应对这些挑战,通过使用简单的浸渍干燥方法涂覆炭黑/聚四氟乙烯,在商用海绵周围构建了三维(3-D)浮动空气阴极(FAC)。FAC漂浮在水-空气界面上,无需广泛的防水措施,并且可以利用来自被动扩散和阳极析氧的氧气来生产HO。经过六次浸渍处理的FAC在90分钟时产生的最大HO浓度为177.9±26.1mg L,能耗低至7.1±0.003Wh g,并且在10个循环的运行过程中性能稳定。我们的结果表明,这种3-D FAC是一种用于原位生产HO的有前途的方法,可用于环境修复和工业应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4cd/6372640/bbdcf2f68c59/41598_2018_37919_Fig1_HTML.jpg

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