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[通过热、零价铁以及热/零价铁活化过硫酸盐降解偶氮染料酸性橙7(AO7)]

[Degradation of azo dye acid orange 7(AO7) by heat, ZVI and heat/ZVI activated persulfate].

作者信息

Zhang Cheng, Wan Jin-Quan, Ma Yong-Wen, Wang Yan, Huang Ming-Zhi

机构信息

College of Environmental Science and Engineering, South China University of Technology, Guangzhou 510006, China.

出版信息

Huan Jing Ke Xue. 2011 Oct;32(10):2949-55.

Abstract

Effects of temperatures, PS concentrations and ZVI dosages on AO7 decomposition were investigated in sole heat and ZVI activating systems. The degradation results of two systems were compared for selecting a better activating way for AO7 degradation and finally the two activating ways were combined for getting the optimal AO7 degradation efficiency. The degradation of AO7 by Heat/PS systems followed pseudo first-order kinetics. The reaction rates increased with increasing reaction temperatures (elevated from room temperature to 90 degrees C) and also increased when initial PS concentrations varied from 1 to 12 mmol x L(-1). For ZVI activating systems (ZVI/PS systems), the degradation rate of AO7 was the highest when ZVI dose was 0.2 g, and it reached to 95.6% within 90 min. Comparing ZVI/PS systems with Heat/PS systems, the results showed that the ZVI activation was a more effective way to activate PS than the heat activation for AO7 degradation. AO7 degradation processes by ZVI/heat/PS systems were two-stage pseudo first-order kinetic processes, and the combining of two activating ways significantly increased the reaction rates. By the addition of ZVI to the Heat/PS system, the apparent activation energy E(a) of AO7 degradation reduced from the original 130.26 kJ x mol(-1) to 27.70 kJ x mol(-1).

摘要

在单纯热和零价铁(ZVI)活化体系中研究了温度、过硫酸盐(PS)浓度和ZVI用量对AO7分解的影响。比较了两种体系的降解结果,以选择更好的AO7降解活化方式,最后将两种活化方式结合以获得最佳的AO7降解效率。热/PS体系对AO7的降解遵循准一级动力学。反应速率随反应温度升高(从室温升高到90℃)而增加,当初始PS浓度从1 mmol·L⁻¹变化到12 mmol·L⁻¹时反应速率也增加。对于ZVI活化体系(ZVI/PS体系),当ZVI用量为0.2 g时AO7的降解速率最高,90分钟内降解率达到95.6%。将ZVI/PS体系与热/PS体系比较,结果表明对于AO7降解,ZVI活化是比热活化更有效的PS活化方式。ZVI/热/PS体系对AO7的降解过程为两阶段准一级动力学过程,两种活化方式的结合显著提高了反应速率。通过向热/PS体系中添加ZVI,AO7降解的表观活化能E(a)从原来的130.26 kJ·mol⁻¹降低到27.70 kJ·mol⁻¹。

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