Hualin Chen, Joselito M Arocena, Jianbing Li, Ronald W Thring, Jiangmin Zhou
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Simulated leaching studies (i.e., Synthetic Precipitation Leaching Procedure) indicated that these soils could release Cr and other metals in concentrations above the environmental quality guidelines and standards for water in China and Canada. As a result, the mobility of metals from these soils can potentially contaminate both groundwater and surface water. We also found differential leachability of metals with soil properties such as total metal and total carbon contents. Principal component analysis of the total contents of 32 elements showed that the possible major sinks for Cr are organic matter and oxides of Fe/Mn/Al, while sulfates and phosphates are potential storage of Cd, Zn, Cu and Pb. 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引用次数: 14
摘要
包括中国在内的世界各地的皮革制革厂向环境中排放铬和其他金属。在中国,人口压力迫使人们把每一块可用的土地都用于粮食生产。在本研究中,我们研究了中国南方皮革工业设施周围土壤中Cr和其他金属的含量、淋溶性和可能的存储汇。研究发现,受制革影响的土壤中铬含量可高达2484 mg Cr kg⁻¹土壤,其他金属如锌(214 mg Zn kg⁻¹土壤)、镉(5.4 mg Cd kg⁻¹土壤)、砷(17 mg as kg⁻¹土壤)的平均含量超过了中国和加拿大的土壤质量标准和指导方针。模拟浸出研究(即合成降水浸出程序)表明,这些土壤释放的铬和其他金属的浓度可能高于中国和加拿大的环境质量准则和水标准。因此,这些土壤中金属的流动性可能会污染地下水和地表水。我们还发现,金属的浸出能力与土壤性质不同,如总金属和总碳含量。32种元素总含量的主成分分析表明,有机质和Fe/Mn/Al的氧化物可能是Cr的主要储存库,而硫酸盐和磷酸盐可能是Cd、Zn、Cu和Pb的潜在储存库。本研究获得的信息对研究区生态系统功能(即粮食生产)的恢复具有重要价值。
Mobility and storage sinks for chromium and other metals in soils impacted by leather tannery wastes.
Leather tanneries around the world, including China, introduce chromium (Cr) and other metals into the environment. In China, the population pressure compels the utilization of every piece of available land for food production. In this study, we investigated the content, leachability and possible storage sinks for Cr and other metals in soils around facilities of leather industry in southern China. It was found that Cr in soils impacted by tannery can be as high as 2484 mg Cr kg⁻¹ soil, and the mean contents of other metals such as Zn (214 mg Zn kg⁻¹ soil), Cd (5.4 mg Cd kg⁻¹ soil), As (17 mg As kg⁻¹ soil) exceeded the soil quality standards and guidelines in China and Canada. Simulated leaching studies (i.e., Synthetic Precipitation Leaching Procedure) indicated that these soils could release Cr and other metals in concentrations above the environmental quality guidelines and standards for water in China and Canada. As a result, the mobility of metals from these soils can potentially contaminate both groundwater and surface water. We also found differential leachability of metals with soil properties such as total metal and total carbon contents. Principal component analysis of the total contents of 32 elements showed that the possible major sinks for Cr are organic matter and oxides of Fe/Mn/Al, while sulfates and phosphates are potential storage of Cd, Zn, Cu and Pb. The information obtained from this study can be valuable for the restoration of ecosystem functions (i.e., food production) in the study area.