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[厦门工业挥发性有机物排放清单分析及对策]

[Analysis of Industrial VOCs Emission Inventory and Countermeasures in Xiamen].

作者信息

Wu Dong-Yang, Zhuang Ma-Zhan, Wu Yan-Cong, Jin Lei, Wu Yi-Cheng, Gao Pan-Feng, Liu Jian-Fu, Jin Yue-Zheng, Pan Ya-Lei, Fu Hai-Yan

机构信息

Key Laboratory of Environmental Biotechnology of Fujian University, Xiamen University of Technology, Xiamen 361024, China.

Xiamen Academy of Environmental Sciences, Xiamen 361021, China.

出版信息

Huan Jing Ke Xue. 2020 Dec 8;41(12):5336-5344. doi: 10.13227/j.hjkx.202003245.

Abstract

Based on data from industrial activities and environmental surveys in the six districts of Xiamen, the emission inventory of industrially sourced volatile organic compounds (VOCs) from eight industries in the six districts of Xiamen was calculated for 2019 by applying the emission factor analysis method. The spatial distribution pattern of VOC emission intensity in the six districts of Xiamen was analyzed. VOCs treatment technologies applied in the industries in the VOCs emission inventory were analyzed and countermeasures for improving VOC control were proposed based on the survey of the industries. The results showed that the total VOCs production and VOCs emission from industrial sources in Xiamen was 16027.88 t and 5514.58 t in 2019, respectively. Among them, the VOCs emission from Haicang, Tong'an, Xiang'an, and Jimei districts outside Xiamen Island were 1648.35, 2111.13, 667.52, and 750.48 t, respectively. Fewer VOC emissions from Xiamen Island were observed, which included 292.42 and 44.68 t from Huli and Siming districts, respectively. Except for the Huli District, the spatial distribution of emissions showed a spatial characteristic that the VOCs emission intensities outside Xiamen Island are higher than that of Xiamen Island. Among the eight industries in Xiamen, VOCs emissions were mainly from coating, printing, chemical, and rubber industries, which accounted for 51.21%, 20.18%, 13.63%, and 10.67%, respectively, of the total emissions. The analytic results of the VOCs waste gas disposal technique in Xiamen indicate that, from the perspective of source control, enterprises can effectively control the generation and emission of the VOCs at the source by using low (zero) raw materials. For the terminal disposal procedure, the actual disposal efficiency of UV photolysis/photocatalysis, low-temperature plasma, and biological methods are all lower than 80%, and that of the combined technique of adsorption and catalytic combustion, and the combustion method are both higher than 90%.

摘要

基于厦门六个区的工业活动数据和环境调查,采用排放因子分析法计算了2019年厦门六个区八个行业工业源挥发性有机化合物(VOCs)的排放清单。分析了厦门六个区VOC排放强度的空间分布格局。对VOCs排放清单中各行业应用的VOCs治理技术进行了分析,并基于行业调研提出了改进VOC控制的对策。结果表明,2019年厦门工业源VOCs产生总量和排放量分别为16027.88吨和5514.58吨。其中,厦门岛外海沧、同安、翔安和集美区的VOCs排放量分别为1648.35吨、2111.13吨、667.52吨和750.48吨。厦门岛内的VOC排放量较少,其中湖里区和思明区分别为292.42吨和44.68吨。除湖里区外,排放的空间分布呈现出厦门岛外VOCs排放强度高于厦门岛内的空间特征。在厦门的八个行业中,VOCs排放主要来自涂料、印刷、化工和橡胶行业,分别占总排放量的51.21%、20.18%、13.63%和10.67%。厦门VOCs废气处置技术的分析结果表明,从源头控制角度来看,企业可以通过使用低(零)VOCs原料有效控制源头VOCs的产生和排放。对于末端处置过程,UV光解/光催化、低温等离子体和生物法的实际处置效率均低于80%,而吸附催化燃烧联合技术和燃烧法的处置效率均高于90%。

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