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Ranking Coal Ash Materials for Their Potential to Leach Arsenic and Selenium: Relative Importance of Ash Chemistry and Site Biogeochemistry

机译:对粉煤灰材料浸出砷和硒的潜力进行排名:粉煤灰化学和现场生物地球化学的相对重要性

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摘要

The chemical composition of coal ash is highly heterogeneous and dependent on the origin of the source coal, combustion parameters, and type and configuration of air pollution control devices. This heterogeneity results in uncertainty in the evaluation of leaching potential of contaminants from coal ash. The goal of this work was to identify whether a single leaching protocol could roughly group high-leaching potential coal ash from low-leaching potential coal ash, with respect to arsenic (As) and selenium (Se). We used four different leaching tests, including the Toxicity Characteristic Leaching Protocol (TCLP), natural pH, aerobic sediment microcosms, and anaerobic sediment microcosms on 10 different coal ash materials, including fly ash, lime-treated ash, and flue gas desulfurization materials. Leaching tests showed promise in categorizing high and low-leaching potential ash materials, indicating that a single point test could act as a first screening measure to identify high-risk ash materials. However, the amount of contaminant leached varied widely across tests, reflecting the importance of ambient conditions (pH, redox state) on leaching. These results demonstrate that on-site geochemical conditions play a critical role in As and Se mobilization from coal ash, underscoring the need to develop a situation-based risk assessment framework for contamination by coal ash pollutants.
机译:煤灰的化学成分是高度异质的,并且取决于源煤的来源,燃烧参数以及空气污染控制装置的类型和配置。这种异质性导致了煤灰中污染物浸出潜力评估的不确定性。这项工作的目的是确定一种浸出方案是否可以就砷(As)和硒(Se)将高浸出潜力煤灰与低浸出潜在煤灰进行大致分组。我们使用了四种不同的浸出测试,包括对10种不同粉煤灰材料(包括粉煤灰,石灰处理的粉煤灰和烟道气脱硫材料)的毒性特征浸出协议(TCLP),自然pH,好氧沉积物微观和厌氧沉积物微观世界。浸出测试显示出对高浸出和低浸出的灰烬材料进行分类的希望,表明单点测试可以作为识别高风险灰烬材料的第一种筛选措施。但是,在各个测试中,浸出的污染物量差异很大,反映出环境条件(pH,氧化还原状态)对浸出的重要性。这些结果表明,现场地球化学条件在粉煤灰中砷和硒的迁移中起着关键作用,强调了需要针对粉煤灰污染物的污染建立基于情况的风险评估框架的需求。

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