三氯杀螨醇
环境科学
采样(信号处理)
环境化学
杀虫剂
农业
化学
环境工程
地理
农学
工程类
生物
考古
滤波器(信号处理)
电气工程
作者
Anita Eng,Ky Su,Tom Harner,Karla Pozo,Ravindra Kumar Sinha,B. Sengupta,Mark Loewen
标识
DOI:10.1021/acs.estlett.6b00041
摘要
Risk assessment of the pesticide dicofol is hampered by the lack of information about its levels, which is largely attributed to its instability during instrumental analysis. In this study, dicofol was assessed in air through a novel approach by tracking the ratio of the two isomers (p,p′ and o,p′) of its stable degradation product dichlorobenzophenone (DCBP), while considering other potential precursors. Twenty-three samples were collected using polyurethane foam (PUF) disk passive air samplers deployed across agricultural, urban, and rural sites throughout India in 2006 under the Global Atmospheric Passive Sampling Network. The retrospective analysis focused on agricultural sites in the Indo-Gangentic Plain region where dicofol is used. Yearly mean concentrations for p,p′- and o,p′-DCBP (breakdown products of p,p′- and o,p′-dicofol, respectively) were 1.1 and 0.29 ng/m3, respectively, for agricultural sites, 1.6 and 0.31 ng/m3, respectively, at an urban site, and 0.36 and 0.039 ng/m3, respectively, at a background site.
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