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六溴环十二烷在不同用途土壤中的污染特征 被引量:5
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作者 张艳伟 阮悦斐 +2 位作者 赵立杰 干志伟 孙红文 《农业环境科学学报》 CAS CSCD 北大核心 2013年第1期63-68,共6页
六溴环十二烷(HBCDs)是一种被广泛用于建筑业、纺织业和电子产业的溴代阻燃剂。为了比较六溴环十二烷在土壤中的污染特征,采用高效液相色谱-电喷雾串联质谱联用技术同时测定天津污灌区农田土壤与电子产品拆解区土壤HBCDs的异构体和对映... 六溴环十二烷(HBCDs)是一种被广泛用于建筑业、纺织业和电子产业的溴代阻燃剂。为了比较六溴环十二烷在土壤中的污染特征,采用高效液相色谱-电喷雾串联质谱联用技术同时测定天津污灌区农田土壤与电子产品拆解区土壤HBCDs的异构体和对映体,对其总浓度、异构体组成和对映体选择性进行了分析。电子产品拆解区土壤中HBCDs的浓度范围为1.57~3.76ng·g-1干重,污灌区农田土壤中的浓度范围是9.33~44.6ng·g-1干重,大沽排污河污灌导致农田土壤中HBCDs的浓度明显高于电子产品拆解区土壤。电子产品拆解区土壤中HBCDs异构体组成与工业品中的HBCDs呈现出明显的差异,α-HBCD的比例明显升高,发生了异构体转化;而污灌区农田土壤中HBCDs与工业品中异构体组成类似。HBCDs各异构体的对映体选择性没有明显的规律,而对于β-HBCD,污灌区农田土壤对(+)-HBCD具有选择性,电子产品拆解区则呈现出相反的现象。 展开更多
关键词 六溴环十二烷 异构体 对映体 农田土壤 电子废物土壤
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Soil Contamination due to Activities: A Review with E-Waste Disposal and Recycling Special Focus on China 被引量:3
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作者 ZHANG Wei-Hua WU Ying-Xini M. O. SIMONNOT 《Pedosphere》 SCIE CAS CSCD 2012年第4期434-455,共22页
This paper presents a review of soil contamination resulting from e-waste recycling activities, with a special focus on China, where many data have been collected for a decade. Soils in the e-waste areas are often con... This paper presents a review of soil contamination resulting from e-waste recycling activities, with a special focus on China, where many data have been collected for a decade. Soils in the e-waste areas are often contaminated by heavy metals and organic compounds, mainly polycyclic aromatic hydrocarbons (PAHs), polybrominated diphenyl ethers (PBDEs), polychlorinated and polybrominated biphenyls (PCBs and PBBs), dechlorane plus (DP), hexabromocyclododecanes (HBCDs), polychlorinated and polybrominated dibenzo- p-dioxins (PCDDs and PBDDs), and polychlorinated and polybrominated dibenzofurans (PCDFs and PBDFs), while other compounds, not systematically monitored, can be found as well. Pollutants are generally present in mixtures, so pollution situations are complex and diversified with a gradient of contamination from agricultural soils to hot spots at e-waste sites and mainly in open burning areas. It has been proved that pollutants were transferred to the food chain via rice in China, and that the population was threatened since high levels of various pollutants were detected in blood, placentas, hair, etc., of residents of e-waste sites. Eventually, soil remediation techniques are reviewed. Although there are many available techniques devoted to heavy metals and persistent organic pollutants, the current techniques for the e-waste sites, where these contaminants coexist, are very sparse. Phytoremediation has been investigated and co-cropping appears as a promising approach for the slightly contaminated agricultural soils. In some cases, different remediation techniques should be combined or trained, while the influence of coexisting contaminants and the removal sequence of contaminants should be considered. In hot spots, physical and chemical techniques should be used to reduce high pollution levels to prevent further pollutant dissemination. This review highlights the urgent needs for 1) characterization of pollution status in all the countries where e-wastes are recycled, 2) research on fate and toxicity of pollutant mixtures, and 3) development of combined techniques and strategies to remediate agricultural fields and hot spots of pollution. 展开更多
关键词 co-cropping heavy metals organic compounds pollution REMEDIATION
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