首页> 外文期刊>Journal of the Korean Society for Applied Biological Chemistry >Influence of Soil Characteristics and Arsenic, Cadmium, and Lead Contamination on Their Accumulation Levels in Rice and Human Health Risk through Intake of Rice Grown nearby Abandoned Mines
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Influence of Soil Characteristics and Arsenic, Cadmium, and Lead Contamination on Their Accumulation Levels in Rice and Human Health Risk through Intake of Rice Grown nearby Abandoned Mines

机译:土壤特性和砷,镉和铅污染对其在稻田中的积累水平的影响以及通过摄入附近废弃矿场种植的稻米对人类健康的危害

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摘要

Transfer ability of arsenic (As), cadmium (Cd), and lead (Pb) from soil to polished rice, the influence of soil characteristics, and contamination on As, Cd, and Pb contents in rice and potential health risk were investigated through intake of polished rice grown in nearby abandoned mines. Transfer factors (TFs) of As, Cd, and Pb from soil to polished rice were evaluated based on the total and HCl-extractable concentration of As, Cd, and Pb in soil. Regression analysis was used to predict the relationship of soil properties, and total and HCl-extractable As, Cd, and Pb concentrations in rice and human health risk through the rice consumption. The results showed that As, Cd, and Pb contents in polished rice and human health risk through rice intake were more influenced by HCl-extractable concentrations of As, Cd, and Pb in soil than by total concentration. The contents of As, Cd, and Pb in polished rice showed the negative relationship with soil pH and positive relationship with soil organic matterand cation exchangeable capacity (CEC). As content in polished rice was significantly and positively correlated with total and HCl-extractable As concentration in soil. Same results were observed for the relationship between total and HCl-extractable Asconcentration in soil and cancer risk probability (R) as well as hazard quotient (HQ) from As exposure. This demonstrates that human health risk from As exposure could be well predicted by both of total and HCl-extractable As concentrations in soil.
机译:通过摄入量研究了砷,镉和铅从土壤向精米的转移能力,土壤特性和污染对水稻中砷,镉和铅含量的影响以及潜在的健康风险附近废弃矿山中种植的米粉根据土壤中As,Cd和Pb的总含量和HCl提取浓度,评估了从土壤到精米的As,Cd和Pb的转移因子(TFs)。回归分析用于预测土壤特性与水稻中总和HCl提取的As,Cd和Pb浓度以及通过食用水稻对人类健康的风险之间的关系。结果表明,精制稻米中的As,Cd和Pb含量以及通过稻米摄入对人体健康的危害受HCl提取的土壤中As,Cd和Pb浓度的影响远大于总浓度的影响。精米中As,Cd和Pb的含量与土壤pH呈负相关,与土壤有机质和阳离子交换能力(CEC)呈正相关。精米中的As含量与土壤中总的和HCl可提取的As浓度呈显着正相关。对于土壤中总和可萃取的HCl浓度与砷暴露的癌症风险概率(R)以及危险商(HQ)之间的关系,观察到相同的结果。这表明,土壤中砷的总含量和可提取的砷含量均可很好地预测砷暴露对人体健康的危害。

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