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大型垃圾填埋场设施周边环境空气中还原态硫化合物的短期分布情况。

Short-term distributions of reduced sulfur compounds in the ambient air surrounding a large landfill facility.

作者信息

Kim K-H, Choi Y-J, Oh S-I, Sa J H, Jeon E-C, Koo Y S

机构信息

Department of Earth & Environmental Sciences, Atmospheric Environment Laboratory, Sejong University, Seoul, Korea.

出版信息

Environ Monit Assess. 2006 Oct;121(1-3):343-54. doi: 10.1007/s10661-005-9128-y. Epub 2006 Jun 1.

Abstract

In order to explore the environmental behavior of reduced sulfur compounds (RSC) as malodorous components emitted from diverse source processes, the distribution characteristics of four sulfur (S) compounds - hydrogen sulfide (H2S), methyl mercaptan (CH3SH), dimethyl sulfide (DMS: (CH3)2S), and dimethyl disulfide (DMDS: (CH3)2S2) - were investigated in a municipal landfill area. In the course of this study, their ambient concentration levels were measured during two time periods from 13 individual spots selected as a function of distance from the center of the landfill site. The results generally indicated the absolute dominance of H2S over the other S compounds investigated (up to 5 km radius) such that their mean values were found as 1415 (H2S), 148 (DMS), 20.6 (CH3SH), and 14.4 ppt (DMDS). When our data were compared in terms of either varying distance from the source or relationship with meteorological conditions, the H2S data sets were most evident to reflect the potential effects of strong source processes in the landfill environment, relative to other S gases (or to volatile organic compounds measured concurrently). The results of this study further indicated the relatively good correspondence between the measured H2S concentration level and humans' intuitive sensory of odor and nuisance.

摘要

为了探究作为不同源过程排放的恶臭成分的还原硫化合物(RSC)的环境行为,在一个城市垃圾填埋场区域研究了四种硫(S)化合物——硫化氢(H₂S)、甲硫醇(CH₃SH)、二甲基硫醚(DMS:(CH₃)₂S)和二甲基二硫醚(DMDS:(CH₃)₂S₂)的分布特征。在本研究过程中,在距垃圾填埋场中心不同距离处选择的13个单独地点的两个时间段内测量了它们的环境浓度水平。结果总体表明,在所研究的其他含硫化合物中(半径达5公里范围内),H₂S占绝对主导地位,其平均值分别为1415(H₂S)、148(DMS)、20.6(CH₃SH)和每万亿份中14.4份(DMDS)。当我们的数据根据距源的不同距离或与气象条件的关系进行比较时,相对于其他含硫气体(或同时测量的挥发性有机化合物),H₂S数据集最能明显反映垃圾填埋场环境中强烈源过程的潜在影响。本研究结果还表明,测得的H₂S浓度水平与人类对气味和滋扰的直观感官之间具有较好的对应关系。

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