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首页> 外文期刊>Environmental Progress & Sustainable Energy >Enhanced decolorization efficiency of acid orange 7 by electric field granular-activated carbon combined system and its statistical optimization by response surface methodology
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Enhanced decolorization efficiency of acid orange 7 by electric field granular-activated carbon combined system and its statistical optimization by response surface methodology

机译:增强的脱色效率的酸橙7通过电场granular-activated碳结合系统及其统计优化通过响应面方法

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摘要

In this study, the decolorization of Acid Orange 7 AO-7), a model pollutant, was experimentally investigated by combining granular-activated carbon GAC) in an electrochemical treatment system, which in this investigation is called an EF-GACC Electric Field and Granular Activated CarbonCombined) system. The results of preliminary testing showed that the EF-GACC system exhibited a greatly higher decolorization performance for AO-7 than did either the individual electric field or GAC adsorption system. This is mainly due to the dual action of GAC in the system as adsorbent and moving conductor. Subsequently, to statistically optimize the key parameters applied voltage, GAC concentration, initial pH, and reaction time) in the EF-GACC system and thereby maximize the decolorization efficiency, a response surface methodology with a Box-Behnken design was used. In terms of the results, the overall performance revealed that the decolorization was well fitted by a quadratic regression model developed in this study and that the selected independent variables had significant interactive effect on the decolorization efficiency. Through numerical optimization, the complete decolorization and destruction of the parent molecule were obtained under statistically optimized conditions: an applied voltage of 28 V, a GAC concentration of 30 g/ L, an initial pH of 5.0, and a reaction time of 40 min. The scaleup and semicontinuous sequencing batch reactor system was satisfactorily tested and found to have an average decolorization of 99.7% 60.3%. (c) 2015 American Institute of Chemical Engineers Environ Prog, 34: 1674-1682, 2015
机译:在这项研究中,酸性橙7的脱色污染物,AO-7)模型实验研究通过结合granular-activated碳GAC)在一个电化学治疗被称为一个系统,在这个调查EF-GACC电场和颗粒激活CarbonCombined)系统。初步测试表明,EF-GACC系统表现出极大地提高脱色性能AO-7比的单独的电场或活性炭吸附系统。广汽在系统中吸附剂和移动导体。优化关键参数应用电压、广汽初始浓度、pH值和反应时间)EF-GACC系统,从而最大化脱色效率、响应面方法用Box-Behnken设计使用。就结果而言,整体的性能表明,脱色很合身通过二次回归模型研究和选择的独立变量有显著的交互影响脱色效率。优化,完整的脱色和父分子的破坏在统计优化条件下:一个应用电压28 V,广汽的浓度30 g / L,初始pH值为5.0,反应时间40分钟。按比例增长,断断续续的序列间歇式反应器系统令人满意的测试,发现有一个99.7% - 60.3%的平均脱色。美国化学工程师学会环境34岁的食物:1674 - 1682,2015

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