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成都市人为源挥发性有机物排放清单及特征

2017-11-07周子航陆成伟宋丹林黄凤霞

中国环境监测 2017年3期

周子航,邓 也,陆成伟,田 红,宋丹林,冯 淼,黄凤霞

成都市环境保护科学研究院,四川 成都 610072

成都市人为源挥发性有机物排放清单及特征

周子航,邓 也,陆成伟,田 红,宋丹林,冯 淼,黄凤霞

成都市环境保护科学研究院,四川 成都 610072

基于成都市实地调查和环境统计等活动水平数据,采用排放因子法和计算模型等,编制了2014年成都市人为源VOCs排放清单,并完成了空间分配和不确定性分析。成都市人为源VOCs排放量为15.8×104t,其中化石燃料固定燃烧源、工艺过程源、溶剂使用源、移动源、储存运输源、其他源排放量分别为0.5×104、3.8×104、6.0×104、4.9×104、0.4×104、2.2×104t,溶剂使用源为最大人为排放源,其次是移动源和工艺过程源。木材加工业为最大工业贡献源,然后依次是医药制造业、非金属矿物制品业、化学原料、化学制品制造业、汽车制造业等。成都市人为源82%的VOCs排放量分布于二、三圈层的工业园区,而中心城区主要为移动源和建筑施工所贡献,其排放分布已随建成区联片发展而形成整体。排放清单活动水平数据可靠性较高,而排放因子存在一定不确定性。

成都市;挥发性有机物;排放清单;空间分配

Abstract:Based on survey data, environmental statistics and other relevant activity data, VOCs anthropogenic sources emission inventory of Chengdu in 2014 was compiled by adopting the emission factor method and computing model. Besides, spatial distribution and uncertainties of the anthropogenic sources emission inventory were discussed. The total VOCs emission from these sources in Chengdu was 15.8×104tons, in which the stationary combustion source of fossil fuels, industrial processes, solvent utilization, mobile source, storage and distribution of fuel and other sources contributed 0.5×104tons, 3.8×104tons, 6.0×104tons, 4.9×104tons, 0.4×104tons, 2.2×104tons, respectively. Solvent utilization was the largest contributor compared to the other sources in Chengdu, followed by mobile source and industrial processes. Meanwhile, wood processing, pharmaceutical manufacturing industry, nonmetal mineral products, chemical industry and automobile industry were the major emission sectors of the industrial source. Industrial park in the suburbs contributed 82% of the total VOCs. The spatial distribution of VOCs emission in central city was integrated due to the urban development, and it was mainly contributed by the mobile source and architecture wall painting. The activity data tended to be reliable, whereas emission factors had some uncertainties.

Keywords:Chengdu;volatile organic compounds(VOCs);emission inventory;spatial distribution

挥发性有机物(VOCs)是影响大气区域性复合型污染的重要前体物和参与物,在对流层大气物理化学过程中体现出重要的作用[1]。VOCs和氮氧化物在光照条件下发生光化学反应,生成臭氧及其他光化学污染物[2]。同时,大气中的二次有机气溶胶(SOA)是人为源或天然源排放的VOCs在大气中氧化而生成[3]。随着成都市经济高速发展,近年成都市臭氧浓度呈上升趋势[4],且明显受人为活动等因素影响[5]。……

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