首页> 外文期刊>Journal of environmental sciences >Mercury transportation in soil via using gypsum from flue gas desulfurization unit in coal-fired power plant
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Mercury transportation in soil via using gypsum from flue gas desulfurization unit in coal-fired power plant

机译:燃煤电厂烟气脱硫装置中的石膏中汞在土壤中的运输

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The mercury flux in soils was investigated, which were amended by gypsums from flue gas desulphurization (FGD) units of coal-fired power plants. Studies have been carried out in confined greenhouses using FGD gypsum treated soils. Major research focus is uptakes of mercury by plants, and emission of mercury into the atmosphere under varying application rates of FGD gypsum, simulating rainfall irrigations, soils, and plants types. Higher FGD gypsum application rates generally led to higher mercury concentrations in the soils, the increased mercury emissions into the atmosphere, and the increased mercury contents in plants (especially in roots and leaves). Soil properties and plant species can play important roles in mercury transports. Some plants, such as tall fescue, were able to prevent mercury from atmospheric emission and infiltration in the soil. Mercury concentration in the stem of plants was found to be increased and then leveled off upon increasing FGD gypsum application. However, mercury in roots and leaves was generally increased upon increasing FGD gypsum application rates. Some mercury was likely absorbed by leaves of plants from emitted mercury in the atmosphere.
机译:研究了土壤中的汞通量,并用燃煤电厂烟气脱硫(FGD)装置中的石膏进行了修正。已经使用FGD石膏处理过的土壤在密闭温室中进行了研究。主要研究重点是植物对汞的吸收以及在烟气脱硫石膏的不同施用量下向大气中的汞排放,模拟降雨灌溉,土壤和植物类型。 FGD石膏施用量增加通常会导致土壤中的汞浓度更高,向大气中排放的汞增加以及植物(尤其是根和叶)中的汞含量增加。土壤特性和植物种类在汞运输中可以发挥重要作用。一些植物,例如高羊茅,能够防止汞从大气中排放和渗透到土壤中。发现植物茎中的汞浓度会增加,然后在增加FGD石膏施用量时趋于稳定。但是,随着烟气脱硫石膏施用量的增加,根和叶中的汞通常会增加。植物的叶子很可能从大气中的汞中吸收了一些汞。

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