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Characterization studies on coal gangue for sustainable geotechnics

机译:可持续土工学煤矸石煤矸石特征研究

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摘要

Global rise in greenhouse gas emissions (GHG) is triggered mainly due to the consumption of fossil fuels for power generation and domestic usage. Among the fossil fuels, coal is a primary contributor to global GHG with substantial emissions generated during its mining and combustion process. Coal gangue, a residue produced during the coal mining process, has found sparse utilization in civil engineering applications. To gauge the feasibility of using coal gangue for geotechnical and geoenvironmental applications, comprehensive characterization study was performed which include understanding the geotechnical, mineralogical, chemical and leaching behavior. Further, to evaluate the environmental impacts associated with coal gangue utilization, carbon footprint assessment (CFA) was performed. The geotechnical properties of coal gangue revealed its potential as fill material in the construction of embankments and retaining walls. Mineralogical and chemical characteristics of coal gangue are comparable to coal combustion residues like coal ash and fly ash which are widely used in bulk civil engineering applications. The leaching studies revealed the presence of trace elements in coal gangue; however, their concentration levels were found to be well below permissible limits. The CFA has shown that utilization of coal gangue in mechanically stabilized earth wall construction resulted in a net savings of 1709 CO2 (kg) emissions. Based on the characterization studies, it can be inferred that coal gangue is a potential alternative to the existing conventional geomaterials like soils and other recycled materials.
机译:温室气体排放(GHG)的全球崛起主要是由于化石燃料的消耗,用于发电和国内使用量。在化石燃料中,煤炭是全球GHG的主要贡献者,在其采矿过程中产生了大量排放。煤矸石是煤矿过程中产生的残留物,发现土木工程应用中的利用稀疏。为了衡量使用煤矸石进行岩土工程和地理环境应用的可行性,进行了全面的表征研究,包括了解岩土工业,矿物学,化学和浸出行为。此外,为了评估与煤矸石利用相关的环境影响,进行碳足迹评估(CFA)。煤矸石的岩土性质揭示了堤防堤防和挡土墙填充材料的潜力。煤矸石的矿物学和化学特性与煤灰和粉煤灰等煤燃烧残留物相当,这些粉煤灰在散装土木工程应用中广泛应用。浸出研究揭示了煤矸石中微量元素的存在;然而,发现它们的浓度水平远远低于允许的限制。 CFA表明,在机械稳定地球墙施工中利用煤矸石导致1709二氧化碳排放量的净储蓄。基于表征研究,可以推断出煤矸石是对土壤和其他再循环材料等现有常规地质材料的潜在替代品。

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