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首页> 外文期刊>Journal of Geochemical Exploration: Journal of the Association of Exploration Geochemists >Cadmium contamination in soils and crops in four mining areas, China
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Cadmium contamination in soils and crops in four mining areas, China

机译:中国四个采矿区土壤和作物中的镉污染

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The Dexing Cu, Yangjiazhangzhi Mo-Cu, Hongqiling Ni and Baiyin polymetallic ore deposits have been mined for several decades. Samples of paddy rice (Oryza sativa L.) and maize (Zea mays L.) as well as plough layer soils were collected from the four areas that are substantially or potentially affected by mining and smelting activities. Cadmium, Zn, pH and organic carbon in soils as well as Cd in crops were determined. The concentrations of Cd in soils vary between 0.139-2.59, 0.182-22.8, 0.157-0.812, 0.180-94.0 mg/kg in Dexing, Yangjiazhangzhi, Hongqiling and Baiyin mining areas, respectively. The median values of Cd in soils are higher than their respective regional geochemical background. According to Chinese environmental quality standard for soil (GB15618-1995), 64.4%, 78.9%, 67.5% and 94.1% of soil samples in Dexing, Yangjiazhangzhi, Hongqiling and Baiyin exceed the Maximum Allowable Concentration (MAC) of Cd for farmlands, respectively. Compared with the Chinese foodstuff safety criteria (GB2762-2012), 27.8% brown rice samples in Dexing and 14.4% maize samples in Baiyin exceed the Chinese Maximum Permit Levels (MPL) 0.2 mg Cd/kg for cereals. The spatial distribution patterns of Cd in crops are similar to that in soils, indicating the substantial influence from soil Cd contamination. The Transfer Factors (TFs) of Cd in soil-rice system are much higher than those in soil-maize system due to high uptake ability of paddy rice. Statistics demonstrates organic carbon and Zn in soils have potential effect on the Cd uptake by maize.
机译:德兴铜,杨家贞芝Mo-Cu,红雀Ni和白霉多金属矿床几十年来。从基本上或可能受采的熔融活性影响的四个区域收集稻米(Oryza Sativa L.)和玉米(Zea mays L.)以及犁层土壤的样品。测定了土壤中的镉,Zn,pH和有机碳以及作物中的CD。土壤中的Cd浓度在0.139-2.59,0.182-22.8,0.157-0.812,0.180-94.0mg / kg中,分别分别为0.180-94.0 mg / kg,分别在德兴,杨家宗芝,红津和白银矿区。土壤中的CD中位数高于各自的区域地球化学背景。根据中国的环境质量标准(GB15618-1995),德兴,杨家贞中,红票和白素的土壤样品64.4%,78.9%,67.5%和94.1%分别超过了农田的CD最大允许浓度(Mac) 。与中国食品安全标准相比(GB2762-2012),德兴的27.8%棕色水稻样品和14.4%的白霉玉米样品超过中国最高允许水平(MPL)0.2mg cd / kg用于谷物。作物中Cd的空间分布模式与土壤中的镉相似,表明土壤CD污染的显着影响。由于水稻高吸收能力,土壤水稻系统中CD的转移因子(TFS)远高于土壤 - 玉米系统中的玉米系统。统计证明了土壤中的有机碳和Zn对玉米的CD吸收具有潜在影响。

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