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铅同位素比率分析技术在食品污染源解析中的应用
引用本文:赵多勇,魏益民,郭波莉,魏帅. 铅同位素比率分析技术在食品污染源解析中的应用[J]. 核农学报, 2011, 25(3): 534-539
作者姓名:赵多勇  魏益民  郭波莉  魏帅
作者单位:中国农业科学院农产品加工研究所/农业部农产品加工与质量控制重点开放实验室,北京,100193
基金项目:农业部948项目,农业部农业行业标准制定和修订项目
摘    要:铅是一种有毒有害重金属,可通过膳食、呼吸等途径进入人体,并蓄积达到有害水平.由于食用农产品产地环境不断受到铅的污染,使得"从农田到餐桌"食品供应链在最初环节存在较大的风险,因此土壤、大气等环境介质成为食品铅污染的可能来源.为准确找到污染源并及时切断污染途径,降低危害发生的概率,追溯食品中铅污染物的来源显得尤为重要.铅同...

关 键 词:  食品  污染源  同位素比率  解析
收稿时间:2010-03-31
修稿时间:2010-06-01

APPLICATIONS OF LEAD ISOTOPE RATIOS FOR IDENTIFICATION AND APPORTIONMENT ON POLLUTION SOURCES IN FOOD
ZHAO Duo-yong,WEI Yi-min,GUO Bo-li,WEI Shuai. APPLICATIONS OF LEAD ISOTOPE RATIOS FOR IDENTIFICATION AND APPORTIONMENT ON POLLUTION SOURCES IN FOOD[J]. Acta Agriculturae Nucleatae Sinica, 2011, 25(3): 534-539
Authors:ZHAO Duo-yong  WEI Yi-min  GUO Bo-li  WEI Shuai
Affiliation:Key Laboratory of Agriculture Product Processing and Quality Control, Ministry of Agriculture/Institute of Agro-Food Science and Technology, Chinese Academy of Agricultural Sciences, Beijing 100193
Abstract:Lead is one of the toxic heavy metals which can accumulate to an adverse effect level in human bodies through ingestion, inhalation or other pathways. Because of the persistent lead contamination in farmland environment, large risk exists in the primary stage of "from farm to table" chain. Environmental media such as soils, atmospheric aerosols were the possible lead sources of agro-food. To prinpoint the pollution sources exactly, cut off the contamination pathways in time, and reduce the risk of hazard, pollution sources tracing was very important. Lead isotope ratio combined with certain models is an effective method to discriminate correctly the pollution sources and calculate the individual source contributions. In this review, to provide theoretical and technical reference for controlling lead pollution in environment and food, lead pollution sources in food, tracing principle and methods of lead isotope ratios, and its applications on vegetable, tea, wine, cereal and other food products were concerned.
Keywords:Lead  food  pollution source  isotope ratios  identification and apportionment
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