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Environmental Assessment of Bottom Ash from Canadian Coal-Fired Power Plants

机译:加拿大燃煤电厂底灰的环境评估

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Bottom ashes collected from ESP and baghouse of seven pulverized coal-fired power plants using subbituminous and bituminous coal and a fluidized bed combustor using crushed bituminous coal were examined for their mineralogy and elemental composition. The results presented in this paper are based on the average of three samples collected from each power plant. The mineralogy of each sample was determined using XRD and SEM/EDX; Elemental content was determined using INAA, ICPMS, and CVAAS; and the speciation of As, Cr, and Ni was determined by XANES. Bottom ash from the pulverized power plants consists of granular particles with a minor input of melted glassy fragments, while the bottom ash from the fluidized bed combustor consists entirely of granular particles. The sulphur and carbon contents of pulverized bottom ashes range from 0.03 to 2.32 wt % and 0.19 to 6.62 wt %, respectively. For the fluidized bed combustor, the sulphur and carbon contents were 5.27 wt % and 10.72 wt %. The concentrations of As, Cr, Hg, Ni, and Pb in bottom ash are related to sulphur content of coal and are higher for bottom ashes from high sulphur feed coals. Most of the elements associated with S (As, Hg, and Pb) are captured from fluidized bottom ash, more so than by the corresponding ESP fly ash. Most of the elements in bottom ash have enrichment (RE) factors of less than 0.7 indicating that they are not enriched in the bottom ashes as compared to the feed coals. Arsenic, Cd, Cr, Ni, and Pb have higher concentrations ingranular bottom ash as compared to glassy bottom ash of the same power plant. The feldspars and quartz of feed coal are health hazards and are captured mostly by bottom ash and therefore prevent their emission from stack. The As, Cr, and Ni in form of: non-toxic As3+, mostly beneficial Cr3+, and non-carcinogenic Ni2+ are in coordination predominantly with oxygen. Mercury and Pb are low and have very little environmental impact.The hazardous elements (As, Cr, Ni, and Pb) are only leached by HCl, indicating that under normal condition they remain immobile and their impact on environment can be considered low
机译:检查了从ESP和7个使用次烟煤和烟煤的粉煤火力发电厂的集尘室以及使用碎烟煤的流化床燃烧器收集的底灰的矿物学和元素组成。本文介绍的结果基于从每个电厂收集的三个样本的平均值。使用XRD和SEM / EDX确定每个样品的矿物学;使用INAA,ICPMS和CVAAS测定元素含量; XANES测定了As,Cr和Ni的形态。来自粉煤发电厂的底灰由颗粒状颗粒组成,少量熔融​​玻璃状碎屑输入,而来自流化床燃烧器的底灰则完全由颗粒状颗粒组成。粉碎的底灰的硫和碳含量分别为0.03至2.32重量%和0.19至6.62重量%。对于流化床燃烧器,硫和碳含量为5.27重量%和10.72重量%。底灰中As,Cr,Hg,Ni和Pb的浓度与煤的硫含量有关,对于高硫进料煤的底灰,其浓度更高。与S有关的大多数元素(As,Hg和Pb)是从流化底灰中捕集的,比相应的ESP粉煤灰要多。底灰中的大多数元素的富集(RE)因子小于0.7,这表明与进料煤相比,它们在底灰中并未富集。与同一发电厂的玻璃状底灰相比,砷,镉,铬,镍和铅具有更高的粒状底灰浓度。原料煤的长石和石英对健康有害,大部分被底灰捕获,因此可以防止烟囱排放。 As,Cr和Ni的形式为:无毒的As3 +(主要是有益的Cr3 +)和无致癌的Ni2 +,主要与氧配位。汞和铅含量低,对环境的影响很小,有害元素(As,Cr,Ni和Pb)仅通过HCl浸出,这表明在正常情况下它们保持不动并且对环境的影响可以认为是低的

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