负载型γ-Al2O3三维粒子电极的制备及其对氯霉素的降解
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TQ316.3

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国家自然科学基金(51508268);江苏省自然科学基金(BK20150951);中国博士后科学基金(2016M591835)


Degradation of chloramphenicol by supported γ-Al2O3 particle electrodes
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    摘要:

    γ-Al2O3为载体,将Ti和Sn两种元素进行负载制备负载型γ-Al2O3粒子电极,采用X射线衍射(XRD)、扫描电镜(SEM)、X射线荧光光谱(XRF)、红外光谱(IR)对γ-Al2O3和负载型γ-Al2O3粒子电极进行表征。研究了电解时间对三维粒子电极法电催化氧化氯霉素的影响。采用初始浓度100 mg/L的CAP模拟废水,持续电解3 h后,制备的粒子电极通过三维电解对CAP去除率为72.8%,对TOC去除率低于3.7%,说明负载型γ-Al2O3粒子电极对氯霉素矿化作用较小。三维粒子电极对氯霉素的降解过程近似符合一级动力学方程,CAP初始浓度对去除率影响较小。粒子电极电催化氧化CAP的关键因素之一为·OH,外加叔丁醇对·OH进行清洗,相同条件下,氯霉素去除率降低至30%左右,表明氯霉素的降解是由阳极氧化和·OH间接氧化两种途径协同作用的。

    Abstract:

    In this paper, γ-Al2O3 was used as the carrier to screen the active ingredients. As the result, Ti and Sn were used to prepared the supported γ-Al2O3 Particle. IR, XRD, SEM, and XRD were used to characterize the particle electrode. The effect of electrolysis time on the three-dimensional particle electrode electro-catalytic oxidation of chloramphenicol was studied The chloramphenicol removal rate and TOC removal rate were 72.8% and 4.2% obtained at 100 mg/L chloramphenicol and 180 min, respectively. The degradation process of chloramphenicol was approximate first-order kinetics equation, and the initial concentration had less effect on the removal. ·OH played a key role in particle electrodes electro-catalytic oxidation process of chloramphenicol. Adding t-butanol to clean ·OH, the removal of chloramphenicol was reduced to about 30% under the same conditions. This indicated that the degradation of the chloramphenicol was coordinated effect of directed oxidation of anode and indirected oxidation of ·OH.

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孙永军,沈浩,马骉,孙文全,朱宏博,肖雪峰,徐炎华,马江雅,张鹏,朱国成,马根朝.负载型γ-Al2O3三维粒子电极的制备及其对氯霉素的降解[J].土木与环境工程学报(中英文),2017,39(5):140-146. Sun Yongjun, Shen Hao, Ma Biao, Sun Wenquan, Zhu Hongbo, Xiao Xuefeng, Xu Yanhua, Ma Jiangya, Zhang Peng, Zhu Guocheng, Ma Genchao. Degradation of chloramphenicol by supported γ-Al2O3 particle electrodes[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2017,39(5):140-146.10.11835/j. issn.1674-4764.2017.05.020

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  • 收稿日期:2016-10-19
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  • 在线发布日期: 2017-10-11
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