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我国日化用品使用挥发性有机物(VOCs)排放及臭氧生成潜势研究
引用本文:崔茹,莫梓伟,袁斌,邵敏. 我国日化用品使用挥发性有机物(VOCs)排放及臭氧生成潜势研究[J]. 环境科学学报, 2021, 41(6): 2272-2281
作者姓名:崔茹  莫梓伟  袁斌  邵敏
作者单位:暨南大学环境与气候研究院,广州 511443;粤港澳环境质量协同创新联合实验室,广州 511443
基金项目:国家重点研发计划(No.2019YFE0106300,2018YFC0213904);广东省自然科学杰出青年基金项目(No.2018B030306037)
摘    要:溶剂使用源是挥发性有机物(VOCs)的重要排放源之一.近年来,VOCs排放清单中对工业生产类溶剂的VOCs排放估算较多,但对于生活类溶剂使用的研究有所欠缺.本研究以日化用品为研究对象,基于产品消费量、产品中的溶剂含量及其挥发特性,建立了我国2000-2017年日化用品使用的VOCs排放清单,并基于最大增量反应活性值(M...

关 键 词:挥发性有机物  日化用品  排放清单  臭氧生成潜势
收稿时间:2020-09-14
修稿时间:2020-10-19

Emissions and ozone formation potential of volatile organic compounds(VOCs) from daily chemical products in China
CUI Ru,MO Ziwei,YUAN Bin,SHAO Min. Emissions and ozone formation potential of volatile organic compounds(VOCs) from daily chemical products in China[J]. Acta Scientiae Circumstantiae, 2021, 41(6): 2272-2281
Authors:CUI Ru  MO Ziwei  YUAN Bin  SHAO Min
Affiliation:1. Institute for Environmental and Climate Research, Jinan University, Guangzhou 511443;2. Guangdong-Hongkong-Macau Joint Laboratory of Collaborative Innovation for Environmental Quality, Guangzhou 511443
Abstract:Solvent use is an important emission source of volatile organic compounds(VOCs). Recent studies focus on estimating VOCs emissions from industrial solvent use, but there is a lack of research on solvent use by consumers. Based on consumption of products, solvent content and volatilization characteristics, this study compile an emission inventory of VOCs for daily chemical products in China from 2000 to 2017. Ozone formation potential(OFP) is evaluated by maximum incremental reactivity(MIR) method. The results show that VOCs emissions from daily chemical products were 36.1×104 t in 2000, increasing to 218.5×104 t in 2017 with an average annual growth rate of 11%. Skin care products, perfumes, and hair and body care products were the major VOCs emission categories in daily chemicals, accounting for 40%, 30% and 21% of the total emissions in 2017, respectively. Shanghai(8.0×104 t), Beijing(7.0×104 t), Guangzhou(4.5×104 t), Chongqing(4.5×104 t) and Shenzhen(3.7×104 t) were the top five cities of VOC emissions. Oxygenated VOCs were the main VOCs component, contributing 64% to the total emissions. The OFPs from daily chemical products were 306.4×104 t in 2017, with oxygenated VOCs, alkenes and alkanes accounting for 67%, 18% and 14% of the total OFPs, respectively. The top 8 species with OFP contribution were ethanol, limonene, isobutane, propylene glycol, dipropylene glycol, isopentane, dimethyl ether and isopropyl alcohol, accounting for 77% of total VOCs emissions while contributing 93% to total OFPs. In terms of ozone pollution control, emission abatement of VOCs should be prioritized on skin care products, perfumes, and hair and body care products.
Keywords:volatile organic compounds(VOCs)  daily chemical products  emission inventory  ozone formation potential(OFP)
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