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首页> 外文期刊>Journal of hazardous, toxic and radioactive waste >Experimental Studies on Bottom Ash and Expanded Polystyrene Beads-Based Geomaterial
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Experimental Studies on Bottom Ash and Expanded Polystyrene Beads-Based Geomaterial

机译:底灰和膨胀聚苯乙烯珠基土工材料的试验研究

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Bottom ash is a by-product produced from burning of pulverized coal in thermal power plants. The increasing production of bottom ash and its disposal in an eco-friendly manner is a matter of concern. This paper concisely describes the suitability of bottom ash to be used in civil engineering applications as a way to minimize the amount of its disposal in the environment and in the direction of sustainable development. The proposed geomaterial was prepared by blending bottom ash with expanded polystyrene (EPS) beads and a binder such as cement. The experiments were conducted by adding EPS beads with different mix proportions. The mix ratio percentages 0.3, 0.6, 0.9, 1.2, and 1.5 were used in the study. The cement to bottom ash (C/BA) ratios of 10 and 20% were used in the study. All the ratios used in the study are with respect to weight of bottom ash. The compressive strength of geomaterial was evaluated for curing periods of 7, 14, and 28 days. The effects of various mix ratios, cement content, and curing periods on the density, compressive strength, and initial tangent modulus was studied and the results were incorporated. Test result indicated that the density of geomaterial reduced from 650 to 360 kg/m~3 with addition of EPS beads from 0.3 to 1.5%. For a particular curing period, compressive strength reduced marginally following the inclusion of EPS beads in geomaterial. For each mix ratio, compressive strength increased with increasing curing periods. The initial tangent modulus of the geomaterial decreased with increasing mix ratio values. The prepared geomaterial was light in weight comparitively and it can be used as a substitute to conventional fill materials.
机译:底灰是在火力发电厂燃烧煤粉产生的副产品。底灰的增加产量及其以生态友好的方式进行处置是一个令人关注的问题。本文简明地描述了底灰在土木工程应用中的适用性,以此作为一种减少底灰在环境中的数量以及向可持续发展方向发展的方式。通过将底灰与膨胀聚苯乙烯(EPS)珠粒和粘合剂(例如水泥)混合,可以制备建议的土工材料。通过添加具有不同混合比例的EPS珠进行实验。在研究中使用混合比率百分比0.3、0.6、0.9、1.2和1.5。在研究中,水泥与底灰(C / BA)的比率分别为10%和20%。研究中使用的所有比率都是相对于底灰的重量。评估了7天,14天和28天的固化时间对土工材料的抗压强度。研究了各种混合比,水泥含量和固化时间对密度,抗压强度和初始切线模量的影响,并结合了结果。测试结果表明,土工材料的密度从650降低到360 kg / m〜3,而EPS颗粒的添加从0.3%降低到1.5%。在特定的固化期间,土工材料中包含EPS珠粒后,抗压强度略有下降。对于每个混合比,抗压强度随固化时间的增加而增加。随着混合比值的增加,土工材料的初始切线模量减小。所制备的土工材料重量较轻,可以用作常规填充材料的替代物。

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