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Selenium Speciation in Waste Materials From an Exhausted Iberian Pyrite Belt Mine

机译:伊比利亚硫铁矿用尽的矿山废料中的硒形态

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摘要

Selenium is an essential nutrient for humans, animals and microorganisms, but it becomes toxic at concentrations slightly above the nutritional levels. This naturally occurring trace element can be released to the environment from various anthropogenic sources such as mining, agricultural, petrochemical and industrial processes and its toxicity is developed along a complex cycle involving adsorption by soil components and subsequent accumulation by plants. In the environment, selenium can occur in several oxidation states ranging from selenide (Se~=) to elemental selenium (Se~0), selenite (Se~(4+)) and selenate (Se~(6+)). Selenium contents above 900 ppm were recently assigned in mine wastes from the sulphur factory at the Sao Domingos exhausted pyrite mine exploited in the Iberian Pyrite Belt (south Portugal) since Roman times until 1966. Aiming at a sustainable remediation of this mining site, an X-ray absorption spectroscopy study using synchrotron radiation, combined with X-ray diffraction, was undertaken to clarify the speciation state of selenium and the nature of Se-carrier phase(s). The results show that selenium does not significantly replace sulphur under the form of selenate in the dominant sulphate phases and occasionally remains as a substituting selenide anion in debris of the original sulphides present in the mine waste materials.
机译:硒是人类,动物和微生物必不可少的营养素,但在略高于营养水平的浓度下会变得有毒。这种天然存在的微量元素可以从各种人为来源释放到环境中,例如采矿,农业,石化和工业过程,其毒性是沿着复杂的循环发展的,该循环涉及土壤成分的吸附以及植物的后续积累。在环境中,硒可能以多种氧化态存在,从硒化物(Se〜=)到元素硒(Se〜0),亚硒酸盐(Se〜(4+))和硒酸盐(Se〜(6+))。从罗马时代到1966年,最近在圣多明各斯硫磺矿(位于葡萄牙南部)开采的硫铁矿硫磺工厂的矿山废物中分配了超过900 ppm的硒。针对此矿山的可持续修复,X同步辐射与X射线衍射相结合的X射线吸收光谱研究旨在阐明硒的形态和Se载流子相的性质。结果表明,硒在主要的硫酸盐相中不能以硒酸盐的形式显着替代硫,偶尔会以硒化物阴离子的形式代替硒残留在矿山废料中的原始硫化物中。

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  • 来源
    《Journal of materials science research》 |2014年第4期|22-30|共9页
  • 作者单位

    CENIMAT/I3N, Faculty of Sciences and Technology, New University of Lisbon, Caparica, Portugal,Unity of Mineral Resources & Geophysics, Nat. Lab. Energy & Geology (LNEG), Amadora, Portugal,Unity of Mineral Resources and Geophysics, National Laboratory of Energy and Geology (LNEG), Apartado 7586, 2610-999 Amadora, Portugal;

    Unity of Mineral Resources & Geophysics, Nat. Lab. Energy & Geology (LNEG), Amadora, Portugal;

    CENIMAT/I3N, Faculty of Sciences and Technology, New University of Lisbon, Caparica, Portugal;

    Unity of Mineral Resources & Geophysics, Nat. Lab. Energy & Geology (LNEG), Amadora, Portugal;

    SpLine, Spanish CRG Beamline, European Synchrotron Radiation Facility (ESRF), Grenoble, France,Institute de Ciencia de Materiales, Consejo Sup. Investigaciones Cientificas, (ICMM/CSIC), Madrid, Spain;

    Unity of Mineral Resources & Geophysics, Nat. Lab. Energy & Geology (LNEG), Amadora, Portugal;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Selenium; mining wastes; Iberian Pyrite Belt; X-ray absorption spectroscopy; XANES;

    机译:硒;采矿废料;伊比利亚黄铁矿带;X射线吸收光谱法;XANES;

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