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Selenium and Arsenic Speciation in Fly Ash from Full-Scale Coal-Burning Utility Plants

机译:大规模燃煤公用设施粉煤灰中的硒和砷形态

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X-ray absorption fine structure spectroscopy has been used to determine directly the oxidation states and speciation of selenium and arsenic in 10 fly ash samples collected from full-scale utility plants. Such information is needed to assess the health risk posed by these elements in fly ash and to understand their behavior during combustion and in fly ash disposal options, such as sequestration in tailings ponds. Selenium is found predominantly as Se(Ⅳ) in selenite (SeO_3~(2-)) species, whereas arsenic is found predominantly as As(Ⅴ) in arsenate (AsO_4~(3-)) species. Two distinct types of selenite and arsenate spectra were observed depending upon whether the fly ash was derived from eastern U.S. bituminous (Fe-rich) coals or from western subbituminous or lignite (Ca-rich) coals. Similar spectral details were observed for both arsenic and selenium in the two different types of fly ash, suggesting that the post-combustion behavior and capture of both of these elements are likely controlled by the same dominant element or phase in each type of fly ash.
机译:X射线吸收精细结构光谱法已被用于直接测定从大规模公用事业工厂收集的10个粉煤灰样品中硒和砷的氧化态和形态。需要这些信息来评估这些元素在粉煤灰中构成的健康风险,并了解它们在燃烧过程中以及在粉煤灰处置方案中的行为,例如尾矿库中的固存。在亚硒酸盐(SeO_3〜(2-))物种中,硒主要以Se(Ⅳ)的形式存在,而在砷酸盐(AsO_4〜(3-))物种中,砷的主要成分为As(Ⅴ)。观察到两种不同类型的亚硒酸盐和砷酸盐光谱,具体取决于飞灰是来自美国东部烟煤(富铁)煤还是来自西方亚烟煤或褐煤(富钙煤)。在两种不同类型的粉煤灰中,砷和硒的光谱细节均相似,这表明在每种类型的粉煤灰中,燃烧后的行为和这两种元素的捕获都可能由相同的主要元素或相控制。

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