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首页> 外文期刊>Water Quality, Exposure and Health >Variations in Concentrations of Arsenic and Other Potentially Toxic Elements in Mine and Paddy Soils and Irrigation Waters from Southern Ghana
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Variations in Concentrations of Arsenic and Other Potentially Toxic Elements in Mine and Paddy Soils and Irrigation Waters from Southern Ghana

机译:加纳南部矿山,水稻土和灌溉水中砷和其他潜在的有毒元素的浓度变化

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摘要

This study was undertaken to ascertain the impact of gold mining on soil and water chemistry as well as on rice grain quality. Samples collected from both gold mining and non-gold mining regions of southern Ghana were analysed by inductively coupled plasma mass spectrometry (ICP-MS) to determine the concentrations of arsenic and other potentially toxic elements (PTEs). Significant differences were observed between sites with respect to soil As, Co, Cu, Pb and Zn concentrations. Paddy soils from the Anum Valley Irrigation Project site, located close to the old Konongo Gold Mine in the Ashanti region, contained up to 103 mg arsenic/kg. Although higher arsenic concentrations were recorded in mine soils from Bogosu in the western region, paddy soil samples from this region contained relatively low concentrations of arsenic, suggesting that the contribution of gold mining to soil contamination is a function of distance from the point source of contaminants. Transfer of soil arsenic to rice grain was significantly higher in gold mining regions compared to non-goldmining regions. At the Anum Valley Irrigation Project site, where surface waters containing 144 μg arsenic/l were used for paddy irrigation, rice grain arsenic concentration reached 0.59 mg/kg, indicating a potential risk of arsenic transfer to the food chain.
机译:进行这项研究以确定金矿开采对土壤和水化学以及对稻米品质的影响。通过电感耦合等离子体质谱法(ICP-MS)分析了从加纳南部金矿和非金矿地区收集的样品,以确定砷和其他潜在有毒元素(PTE)的浓度。在土壤,砷,钴,铜,铅和锌的浓度方面,观察到地点之间存在显着差异。位于阿散蒂地区老科农戈金矿附近的阿努姆河谷灌溉项目基地的稻田土壤中砷含量高达103毫克/千克。尽管西部地区Bogosu的矿井土壤中砷含量较高,但该地区的水稻土样品中砷含量相对较低,这表明金矿对土壤污染的贡献是距污染物源点距离的函数。 。与非金矿地区相比,金矿地区土壤中砷向水稻籽粒的转移显着更高。在阿努姆河谷灌溉项目所在地,使用含144μg砷/升的地表水进行稻田灌溉,稻米中的砷浓度达到0.59 mg / kg,这表明砷可能转移到食物链中。

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