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Trace and Minor Element Distribution in a Forced-Oxidation, Limestone- Slurry Flue-Gas-Desulfurization Unit

机译:强制氧化,石灰石浆料烟道 - 气体脱硫单元的痕量细胞元件分布

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Trace elements such as selenium and mercury volatilized during coal combustion may accumulate in the solids and liquids in flue-gas-desulfurization (FGD) units along with sulfur and nitrogen oxides. The abundance and distribution of trace elements among the solid and aqueous phases in a wet-limestone FGD unit are likely to depend on the operating efficiency of the unit, redox conditions, and precipitation and dissolution reactions. The abundance of trace elements in the FGD unit relative to the other combustion wastes and the feed coal has implications for the use of gypsum produced in the FGD unit and for atmospheric emissions from the power plant. Changes in the chemical environment of the FGD gypsum during storage, processing, and disposal may release the trace elements. This paper describes preliminary results of chemical and mineralogical analyses of materials used and produced in a forced-oxidation, limestone-slurry FGD unit.
机译:在煤燃烧期间挥发溶于硒和汞的微量元素可以在烟道 - 气 - 脱硫(FGD)单元中的固体和液体中累积,以及硫和氮氧化物。湿石灰石FGD单元中固体和水相之间的微量元素的丰度和分布可能取决于单位,氧化还原条件和沉淀和溶解反应的操作效率。 FGD单元中的微量元素相对于其他燃烧废物和饲料煤具有丰富,对FGD单元中产生的石膏和来自发电厂的大气排放的影响有影响。在储存,处理和处置期间FGD石膏的化学环境的变化可以释放微量元素。本文介绍了在强制氧化,石灰石浆料FGD单元中使用和生产的材料的化学和矿物学分析的初步结果。

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