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通过二维和三维电解去除安替比林:比较、修饰和改进。

Removal of antipyrine through two-dimensional and three-dimensional electrolysis: comparison, modification, and improvement.

机构信息

School of Environment and Safety Engineering, North University of China, Taiyuan, 030051, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2020 Nov;27(32):40837-40847. doi: 10.1007/s11356-020-09763-4. Epub 2020 Jul 16.

DOI:10.1007/s11356-020-09763-4
PMID:32677015
Abstract

In this work, removal of antipyrine was studied through two-dimensional (2D) and three-dimensional (3D) electrolysis. 2D electrolysis was firstly studied with the Ti/SnO-TaO-IrO anode as working electrode. Operating parameters affecting antipyrine removal, such as current density, electrode distance, and initial concentration of antipyrine, were investigated and optimized. As the limited antipyrine removal efficiency of 48.0% was not satisfying, 3D electrolysis with γ-AlO as particle electrodes was introduced in the purpose of improving the antipyrine removal. An obviously enhanced removal efficiency of 78.3% was obtained, which seemingly validated the effect of particle electrodes in improving antipyrine removal. Hence, an effort to further enhance the antipyrine removal efficiency was made through improving the electrochemical characteristics of γ-AlO as particle electrodes. Modified Sn-Sb-Bi/γ-AlO particles were thus prepared through impregnation method. And a desirable antipyrine removal efficiency of 94.4% and energy consumption of 0.18 kWh/g antipyrine were achieved in the 3D electrolysis with Sn-Sb-Bi/γ-AlO as particle electrodes. Furthermore, possible mechanism and pathway of antipyrine degradation in 3D electrolysis were explored through detection of ·OH using terephthalic acid fluorescent probe method and detection of antipyrine degradation intermediates using LC-MS.

摘要

在这项工作中,通过二维(2D)和三维(3D)电解研究了安替比林的去除。首先使用 Ti/SnO-TaO-IrO 作为工作电极研究了 2D 电解。研究并优化了影响安替比林去除的操作参数,如电流密度、电极距离和安替比林的初始浓度。由于有限的安替比林去除效率为 48.0%并不令人满意,因此引入了 3D 电解,使用γ-AlO 作为颗粒电极,目的是提高安替比林的去除效率。获得了明显提高的去除效率 78.3%,这似乎验证了颗粒电极在提高安替比林去除方面的效果。因此,通过改善γ-AlO 作为颗粒电极的电化学特性,努力进一步提高安替比林的去除效率。通过浸渍法制备了改性 Sn-Sb-Bi/γ-AlO 颗粒。在 3D 电解中,Sn-Sb-Bi/γ-AlO 作为颗粒电极,实现了 94.4%的理想安替比林去除效率和 0.18 kWh/g 安替比林的能耗。此外,通过使用对苯二甲酸荧光探针法检测·OH 和使用 LC-MS 检测安替比林降解中间体,探索了 3D 电解中安替比林降解的可能机制和途径。

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