准确而灵敏地分析食品中的砷和硒
Concern about the impact on public health from potentially toxic elements and compounds present in everyday foodstuff has led to new legislative guidance. The inorganic forms of arsenic (As) are known to be toxic and carcinogenic to humans, and food and drink are a potential source of exposure [1]. To reduce the intake of inorganic arsenic from the diet, the U.S. Food and Drug Administration (FDA) proposed a new action level for inorganic arsenic in apple juice of 10 g/L in 2013 [2,3]. Also, following the eighth meeting of the CODEX Committee on Contaminants in Food, the World Health Organization (WHO) proposed a guideline for inorganic As in polished rice of 0.2 mg/kg [4]. There is a clear need for reliable screening methods to accurately determine the levels of such contaminants in food and drink products. The detection limits required are low, as a 0.2 mg/kg limit equates to a digestate concentration of 2 g/L (assuming a 100x digestion dilution). Even small errors in the precision and accuracy of the analytical method could result in a food product being wrongly classified as safe. Selenium (Se) is an essential micronutrient that can be deficient in the diet as Se-poor soils yield Se-poor food crops. Accurate quantification of Se in food is necessary to assess nutrient status. Agilent 8800 串联四极杆 ICP-MS
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