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Distribution Characteristics of Volatile Organic Compounds and Contribution to Ozone Formation in a Coking Wastewater Treatment Plant

机译:焦化废水处理厂中挥发性有机化合物的分布特征及对臭氧形成的贡献

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摘要

Ozone pollution, which can be caused by photochemical reactions, has become a serious problem. The ozone formation potential (OFP) is used to describe the photochemical reactivity. Volatile organic compounds (VOCs) are main precursors of ozone formation, and wastewater treatment plants (WWTPs) are important sources of VOCs. Therefore, it is necessary to study the concentration level and OFP of VOCs from WWTPs. In this work, a coking WWTP with anaerobic-oxic-oxic (A/O/O) processes in Shaoguan city, Guangdong province, China, was selected to investigate the characteristics of VOCs at wastewater treatment areas and office areas. The OFP of VOCs was estimated by the maximum incremental reactivity (MIR) coefficient method. Results showed that 17 VOCs were detected, and the total concentration of VOCs was the highest at the raw water tank (857.86 μg m ). The benzene series accounted for 69.0%–86.9% and was the main component of VOCs in the WWTP. Based on OFP data, the top six VOCs contributing most to the OFP were m-xylene, toluene, p-xylene, o-xylene, styrene, and benzene. This study provides field data and information on the environmental risk of VOCs for coking companies and environmental departments. We found that the priority control sources of VOCs were wastewater treatment units because of their larger OFP contributions.
机译:光化学反应可能引起的臭氧污染已成为一个严重的问题。臭氧形成潜能(OFP)用于描述光化学反应性。挥发性有机化合物(VOC)是臭氧形成的主要前体,废水处理厂(WWTP)是挥发性有机化合物的重要来源。因此,有必要研究污水处理厂中VOC的浓度水平和OFP。在这项工作中,我们选择了位于中国广东省韶关市的具有厌氧-有氧-有氧(A / O / O)工艺的焦化污水处理厂来研究废水处理区和办公室区的VOC特性。通过最大增量反应性(MIR)系数法估算VOC的OFP。结果表明,在原水箱中检测到17种VOC,其总浓度最高(857.86μgm)。苯系列占69.0%–86.9%,是污水处理厂中VOC的主要成分。根据OFP数据,对OFP贡献最大的前六种VOC是间二甲苯,甲苯,对二甲苯,邻二甲苯,苯乙烯和苯。这项研究为炼焦公司和环境部门提供了有关挥发性有机化合物环境风险的现场数据和信息。我们发现,挥发性有机化合物的优先控制源是废水处理单元,因为它们对OFP的贡献更大。

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