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利用植物和地点特异性数据对萝卜吸收氯化有机化合物进行植物吸收模型的校准。

Calibration of a plant uptake model with plant- and site-specific data for uptake of chlorinated organic compounds into radish.

机构信息

Technical University of Denmark , DK-2800 Kongens Lyngby, Miljøvej bd 113, Denmark.

出版信息

Environ Sci Technol. 2015 Jan 6;49(1):395-402. doi: 10.1021/es503437p. Epub 2014 Dec 10.

Abstract

The uptake of organic pollutants by plants is an important process for the exposure of humans to toxic chemicals. The objective of this study was to calibrate the parameters of a common plant uptake model by comparison to experimental results from literature. Radish was grown in contaminated soil (maximum concentration 2.9 mg/kg dw) and control plot. Uptake of HCHs, HCB, PCBs, and DDT plus metabolites was studied (log K(ow) 3.66 to 7.18). Measured BCF roots-to-soil were near 1 g/g dw on the control plot and about factor 10 lower for the contaminated soil. With default data set, uptake into roots of most substances was under predicted up to factor 100. The use of site-specific data improved the predictions. Consideration of uptake from air into radish bulbs was relevant for PCBs. Measured BCF shoots ranged from <0.1 to >10 g/g dw and were much better predicted by the standard model. The results with default data and site-specific data were similar. Deposition from air was the major uptake mechanism into shoots. Transport from soil with resuspended particles was only relevant for the contaminated plot. The calculation results (in dry weight) were most sensitive to changes of the water content of plant tissue.

摘要

植物对有机污染物的吸收是人类接触有毒化学物质的一个重要过程。本研究的目的是通过与文献中的实验结果进行比较,来校准常用植物吸收模型的参数。萝卜种植在污染土壤(最大浓度 2.9 毫克/千克干重)和对照小区。研究了 HCHs、HCB、PCBs 和滴滴涕及其代谢物的吸收(log K(ow) 3.66 至 7.18)。在对照小区,实测根际土壤 BCF 接近 1 g/g dw,而在污染土壤中约低 10 倍。使用默认数据集,大多数物质的根部吸收预测值低了 10 倍。使用特定地点的数据可以提高预测精度。考虑到 PCBs 从空气中进入萝卜鳞茎的吸收是相关的。实测茎部 BCF 范围为<0.1 至>10 g/g dw,标准模型预测得更好。默认数据和特定地点数据的结果相似。从空气中沉积是进入茎部的主要吸收机制。受悬浮颗粒影响从土壤中迁移仅与污染小区相关。(以干重计)的计算结果对植物组织含水量的变化最为敏感。

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