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室内灰尘沉降物中的痕量金属、阴离子和多溴二苯醚及其相关性。

Trace metals, anions and polybromodiphenyl ethers in settled indoor dust and their association.

机构信息

Environmental Chemistry Research Group, Department of Environmental, Water & Earth Sciences, Faculty of Science, Tshwane University of Technology, Private Bag X680, Pretoria, South Africa.

出版信息

Environ Sci Pollut Res Int. 2013 Jul;20(7):4895-905. doi: 10.1007/s11356-013-1469-4. Epub 2013 Jan 15.

Abstract

Contaminants in settled indoor dust are potentially health hazardous to human. Thus, identification and quantification of toxic chemicals in settled indoor dust is of great concern. In this study, the levels of major anions ([Formula: see text]), trace metals (Cr, Mn, Fe, Co, Ni, Cu, Zn, Cd, As and Pb) and polybromodiphenyl ethers (PBDEs) in settled office and home dust were determined and correlations between the contaminants investigated. Depending on the available materials in both microenvironments, the most possible sources were identified. The results showed that the settled office dusts (n = 6 pooled samples from 85 offices) were more contaminated than home dusts (n = 8 homes). For anions, [Formula: see text] and Cl(-) accounted for 87 and 97% of the total office and home dust contaminants, respectively. For trace metals, Fe, Cu, Zn and Mn, accounted for 98% of the contaminants in both office and home dust samples. Fe exhibited the highest percentage of 76.7 and 87.3% in office and home dust samples, respectively. For PBDEs, the mean concentrations detected in office and home dust ranged between 5.8-86.3 and 1.5-20.6 ng g(-1), respectively. The log-transformed correlation between the total concentrations of trace metals and major anions detected in offices and homes was positive for offices and negative for homes with a statistically significant values (r = 0.73, p < 0.01; r = -0.22, p < 0.01, respectively). The daily exposure rates determined for the most hazardous such as As, Cd, Pb and PBDEs congeners, relative to the individual concentrations reported in the literature in settled indoor dust, were found very lower. Therefore, maybe it is possible to expect less potential health risk. Investigation of formation of coordination compounds between trace metals and PBDEs congeners is possible; however, this requires further study.

摘要

室内灰尘中的污染物对人类健康具有潜在危害。因此,识别和量化室内灰尘中的有毒化学物质是非常重要的。在这项研究中,测定了办公室和家庭灰尘中主要阴离子([Formula: see text])、痕量金属(Cr、Mn、Fe、Co、Ni、Cu、Zn、Cd、As 和 Pb)和多溴二苯醚(PBDEs)的水平,并研究了污染物之间的相关性。根据这两种微环境中可用的材料,确定了最有可能的来源。结果表明,办公室灰尘(n=85 个办公室中 6 个混合样本)比家庭灰尘(n=8 个家庭)污染更严重。对于阴离子,[Formula: see text]和 Cl(-)分别占办公室和家庭灰尘污染物的 87%和 97%。对于痕量金属,Fe、Cu、Zn 和 Mn 占办公室和家庭灰尘样品中污染物的 98%。Fe 在办公室和家庭灰尘样品中的比例分别高达 76.7%和 87.3%。对于 PBDEs,在办公室和家庭灰尘中检测到的平均浓度范围分别为 5.8-86.3 和 1.5-20.6ng/g。办公室和家庭中痕量金属和主要阴离子总浓度的对数相关性在办公室中为正,在家中为负,且具有统计学意义(r=0.73,p<0.01;r=-0.22,p<0.01)。与室内灰尘中已报道的个体浓度相比,确定了最危险的如 As、Cd、Pb 和 PBDEs 同系物的每日暴露率,发现非常低。因此,可能预期的健康风险较小。然而,需要进一步研究痕量金属和 PBDEs 同系物之间形成配位化合物的可能性。

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