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Accumulation, translocation, and assessment of heavy metals in the soil-rice systems near a mine-impacted region

机译:土壤水稻系统附近的土壤水稻系统中重金属的积累,易位和评估

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摘要

Paddy rice is considered as a main source for human exposure to heavy metal contamination due to its efficient accumulation of heavy metals especially when cultivated in contaminated fields. In the current study, rice grains, straws, roots, and rhizosphere paddy soils were collected from Changsha, a non-ferrous mine-impacted area in China. Heavy metals including Cr, Mn, Fe, Co, Ni, Cu, Zn, As, Cd, Ba, and Pb in the samples were determined using ICP-MS. The heavy metal concentrations were found in the ascending order of grain straw root paddy soil except As and Cd. Rice root is a main organ to retain As and Cd through chelation and adsorption. The translocation behaviors of the heavy metals in the soil-rice system were investigated through bioaccumulation factor (BF) and translocation factor (TF). Similar variation tendencies to decrease BFp-r (translocation from paddy soil to root) and TFs-g (translocation from straw to grain) associated with TFr-s (translocation from root to straw) increasing were observed for most of the heavy metals due to heavy metal detoxification and stress tolerance in rice. The potential adverse effects caused by long-term exposure to heavy metals from rice consumption were evaluated via the target hazard quotient. The results indicated potential health risk to human from exposure to Mn, As, and Cd.
机译:由于其在污染领域培养时,稻米被认为是人类暴露于重金属污染的主要来源。在目前的研究中,从Changsha收集了米粒,吸管,根和根际水稻土壤,该地区是中国有色金属煤炭冲击地区。使用ICP-MS测定样品中Cr,Mn,Fe,Co,Ni,Cu,Zn,As,Cd,Ba和Pb的重金属。以粒径的升序发现重金属浓度。稻草&根&除了和CD外的水稻土。米根是通过螯合和吸附保留AS和CD的主器官。通过生物累积因子(BF)和易位因子(TF)研究了土壤水稻体系中重金属的转移行为。对于减少与TFR-S(从根到秸秆中易刻的水稻土)和TFS-g(从秸秆转移到谷物的易位)和TFS-g(蒸煮到谷物的易位)的类似变异趋势被观察到由于大​​多数重金属而增加,增加了大多数重金属的增加。大米重金属排毒与胁迫耐受性。通过目标危险商评估由稻米消费中长期暴露于重金属的潜在不利影响。结果表明人类暴露于Mn,AS和CD的潜在健康风险。

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