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Performance of ternary binder blend containing cement, waste gypsum wall boards and blast furnace slag in CLSM

机译:CLSM中含有水泥,废石膏板和高炉炉渣的三元粘合剂混合物的性能

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摘要

Controlled low strength materials (CLSM), is a self-flowing cementitious backfill material, most suitable for sustainability objectives since it makes use of wastes in large quantities. Wasted gypsum wall boards (drywalls), a construction & demolition waste, are known to pollute atmosphere by releasing harmful H2S gas when dumped at landfills. Use of waste drywalls with flyash, as cement replacement in concrete and CLSM, have resulted in low strength mixes at initial & later ages, respectively. In this paper powdered drywalls with ground granulated blast furnace slag (GGBS), was used as secondary cementitious material along with stone dust as fine aggregates, to produce sustainable CLSM mixtures with varying binder ratios and water contents. Reduction in compressive strength at later ages was not observed for mixes with low water contents, hence use of GGBS instead of flyash with lesser water contents, is effective in resisting detrimental effects of sulfates present in drywalls.
机译:受控低强度材料(CLSM),是一种自流式的水泥回填材料,最适合可持续性目标,因为它是大量的废物。通过在垃圾填埋场倾倒时释放有害H2S气体,通过释放有害的H2S气体,浪费石膏壁板(干墙),建筑和拆除废物。用废物干墙与混凝土和CLSM中的水泥替代品的使用,导致初始和后期的低强度混合。在本文的粉末状干壁中,用地造粒高炉炉渣(GGB)用作二级水泥材料,以及石粉料作为细骨料,以产生具有不同粘合剂比和水含量的可持续CLSM混合物。未观察到随后代的抗压强度的降低,对于低含水含量的混合物,因此使用GGB而不是具有较小的水含量的粉煤,可有效地抵抗干燥中存在的硫酸盐存在的不利影响。

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