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在环形浆态光反应器中进行氯氰菊酯和硫丹的降解研究。

Chlorpyrifos and Endosulfan degradation studies in an annular slurry photo reactor.

机构信息

Department of Chemical Engineering, Indian Institute of Technology Madras, Chennai 600036, India.

Department of Chemical Engineering, Sri Venkateswara College of Engineering,, Sriperumpudur Sriperumpudur, India.

出版信息

Ecotoxicol Environ Saf. 2016 Dec;134(Pt 2):327-331. doi: 10.1016/j.ecoenv.2015.08.015. Epub 2015 Nov 11.

Abstract

TiO is one of those compounds which are highly used in photocatalytic degradation of substrates using UV radiation. The substrates are degraded oxidatively and hence finds an important position in advanced oxidation for water/wastewater treatment processes. The thrust of this research was to evaluate the effectiveness of Heterogeneous Photocatalysis (HP) technique, for the removal of pesticides from water/wastewater. The photo-catalytic degradation of two pesticides, widely used in India, viz., Endosulfan (ES) and Chlorpyriphos (CPS) was studied in an annular slurry photo reactor under UVillumination at 254nm. Results revealed that the degradation rate is significantly affected by the initial pesticide concentration, pH of the solution and catalyst concentration. Batch degradation studies on Endosulphan and Chlorpyrifos were conducted in the concentration range from 5 to 25mg/L at a pH ranging from 3.5 to 10.5 and at a catalyst loading of 0.5-2g/L. Endosulphan removal efficiency was about 80-99% and chlorpyrifos removal efficiency was about 84-94%. L-H rate constants were determined using L-H kinetics. High removal efficiencies obtained (80-99%) indicate the effectiveness of this process and its potential for practical application.

摘要

TiO 是一种在使用紫外辐射的光催化降解底物中被广泛应用的化合物。底物被氧化降解,因此在水/废水处理过程中的高级氧化中占有重要地位。本研究的重点是评估多相光催化 (HP) 技术在去除水中/废水中农药的有效性。在 254nm 的 UV 照射下,在环形浆态光反应器中研究了两种在印度广泛使用的农药(硫丹和毒死蜱)的光催化降解情况。结果表明,初始农药浓度、溶液 pH 值和催化剂浓度对降解速率有显著影响。在 pH 值为 3.5 至 10.5 之间、催化剂负载量为 0.5 至 2g/L 的范围内,进行了浓度范围为 5 至 25mg/L 的恩索尔和毒死蜱的批处理降解研究。恩索尔的去除效率约为 80-99%,而毒死蜱的去除效率约为 84-94%。使用 L-H 动力学确定了 L-H 速率常数。高去除效率(80-99%)表明了该过程的有效性及其在实际应用中的潜力。

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