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DECA:一种评估植被叶面吸收大气铅的新模型,以生菜为例。

DECA: a new model for assessing the foliar uptake of atmospheric lead by vegetation, using Lactuca sativa as an example.

机构信息

Université de Toulouse, INP, UPS, EcoLab (Laboratoire Ecologie Fonctionnelle et Environnement), ENSAT, Avenue de l'Agrobiopole, 31326 Castanet Tolosan, France.

出版信息

J Environ Manage. 2012 Dec 15;112:233-9. doi: 10.1016/j.jenvman.2012.07.006. Epub 2012 Aug 30.

Abstract

In the context of peri-urban atmospheric pollution by industrial lead recycling emissions, metal can transfer to plant shoots. Home gardeners consuming their produce can therefore be exposed to metal pollution. The Human Health Risk Assessment Protocol (HHRAP) model from the United States Environmental Protection Agency (US EPA) classically used in risk assessment provides foliar metal uptake predictions for large farms but is not adapted to cultures in kitchen gardens. Thus, this study developed a new model, entitled "DECA", which includes individually measured parameters and the washing of vegetables before human consumption. Results given by DECA and HHRAP models were compared with experimental measurements of lettuce. The data calculated by the DECA model were highly correlated with the measured values; the HHRAP model overestimates foliar lead uptake. Moreover, strong influences of factor of washing and time-dependent variations of loss coefficient were highlighted. Finally, the DECA model provided important risk assessment data regarding consumption of vegetables from kitchen gardens.

摘要

在城市周边地区工业铅回收排放造成的大气污染背景下,金属会转移到植物的茎叶中。因此,食用自家花园种植的蔬菜的家庭园丁可能会接触到金属污染。美国环境保护署(US EPA)经典使用的人类健康风险评估协议(HHRAP)模型用于风险评估,可以预测大农场的叶片金属吸收情况,但不适用于家庭菜园的作物。因此,本研究开发了一种新模型,称为“DECA”,该模型包括单独测量的参数和在人类食用前对蔬菜进行清洗。DECA 模型和 HHRAP 模型的结果与生菜的实验测量值进行了比较。DECA 模型计算的数据与实测值高度相关;而 HHRAP 模型高估了叶片的铅吸收量。此外,还强调了清洗因子和损耗系数随时间变化的强烈影响。最后,DECA 模型为评估食用家庭菜园蔬菜的风险提供了重要的数据。

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