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恩施典型富硒区硒、镉的地球化学关系及形态分布

Geochemical relationship and profile distribution of Selenium and Cadmium in typical Selenium-enriched areas in Enshi.

机构信息

Hubei Provincial Center for Soil Pollution Remediation Engineering, Huazhong Agricultural University, Wuhan, 430070, PR China.

Hubei Institute of Geosciences (Hubei Selenium-rich Industry Research Institute), Wuhan, 430070, PR China.

出版信息

Chemosphere. 2023 Oct;338:139423. doi: 10.1016/j.chemosphere.2023.139423. Epub 2023 Jul 5.

Abstract

Selenium (Se) is an essential nutrient element for humans, and Se-enriched products are gaining popularity due to their health benefits. However, Enshi, a region in China naturally rich in Se, a high background value of cadmium (Cd) is discovered, which severely impacts local Se-enriched agriculture. Therefore, it is crucial to explore the geochemical relationship between Se and Cd. In this study, we analyzed soil profiles and parent rocks of different geological ages from Enshi to investigate the accumulation and distribution of Se and Cd. The ratio of redox sensitive elements and the multivariate statistical analysis, along with XRD and XPS analysis, were utilized to investigate the correlated relationship between Se and Cd and the underlying geochemical mechanisms. The results showed that average Se and Cd contents in rocks were 1.67 and 0.32 mg/kg. Se and Cd levels reached highest at Permian in rocks of different geological ages, which may be related to the Permian Dongwu movement near the study area. The highest migration rate of Cd and Se from rock to soil was 12 and 1.5 times. The soil Se and Cd fractions were mostly in bound states, with the largest fraction of Se being organic-bound at an average of 45.9%. The reducible and the residue state accounted for the largest proportion in the Cd fractions, with an average of 40.6% and 25.6%. Redox-sensitive element ratios indicate a reducing forming environment of deep sediments in the Permian strata. Furthermore, the correlation and PCA analysis revealed highly significant positive correlations between Se, Cd, V and Cr, suggesting that the sources of Se and Cd were closely related to volcanic and biological activities. In conclusion, a strong geochemical relationship was observed between Se and Cd. And as a result, metal pollution must be closely monitored during the production of Se-enriched agriculture in Se-enriched regions.

摘要

硒(Se)是人体必需的营养元素,富硒产品因其对健康的益处而越来越受欢迎。然而,中国恩施地区天然富含硒,但却发现了高背景值的镉(Cd),这严重影响了当地的富硒农业。因此,探索硒与镉之间的地球化学关系至关重要。在本研究中,我们分析了来自恩施的不同地质时代的土壤剖面和母岩,以研究硒和镉的积累和分布。利用氧化还原敏感元素比值和多元统计分析,以及 XRD 和 XPS 分析,研究了硒和镉之间的相关关系及其潜在的地球化学机制。结果表明,岩石中的平均硒和镉含量分别为 1.67 和 0.32mg/kg。不同地质时代岩石中的硒和镉含量在二叠纪达到最高,这可能与研究区附近的二叠纪东吴运动有关。镉和硒从岩石向土壤迁移的最高迁移率分别为 12 倍和 1.5 倍。土壤中硒和镉的形态以结合态为主,其中有机结合态硒的比例最大,平均为 45.9%。可还原态和残渣态占镉形态的比例最大,平均分别为 40.6%和 25.6%。氧化还原敏感元素比值表明,二叠纪地层中深沉积物处于还原形成环境。此外,相关性和 PCA 分析表明,硒、镉、钒和铬之间存在高度显著的正相关关系,表明硒和镉的来源与火山和生物活动密切相关。总之,硒与镉之间存在很强的地球化学关系。因此,在富硒地区生产富硒农业时,必须密切监测金属污染。

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