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Ground waste glass-carbide lime as a sustainable binder stabilising three different silica sands

机译:将废物玻璃 - 硬质合金为可持续粘合剂,稳定三种不同的硅砂

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摘要

Waste glass is a solid residue usually available near urban centres, where it is discarded after being used as a container for one of several products. Carbide lime (CL) is a by-product of the manufacture of acetylene gas. The present research evaluates the potential of combining these two wastes as a possible hydraulic cement to enhance the behaviour of sands. Pozzolanic reactions occur between silica in its amorphous phases (found in GG) and Ca++ (present in CL) in an alkaline environment. The effect of the amount of GG, the CL content and the porosity of the blend on the strength, stiffness and durability of compacted sand-GG-CL mixes is quantified for three distinct sands. An original parameter, termed the porosity/binder index (eta/B-iv), can be used to normalise the behaviour of the unconfined compressive strength (q(u)), the shear modulus at small strains (G(0)) and the accumulated loss of mass (ALM) of the compacted mixes, considering GG + CL as the binder. Results have shown unique normalised tendencies for q(u), G(0) and ALM with eta/B-iv for the three studied compacted sand-GG-CL blends, even though each sand has a distinct grain size distribution.
机译:废玻璃是一个稳定的残留物,通常在城市中心附近提供,在用作几种产品之一的容器之后,它被丢弃。硬质合金石灰(CL)是乙炔气制备的副产物。本研究评估了将这两种废物组合为可能的液压水泥,以提高砂的行为。在碱性环境中在其无定形阶段(在GG)中的二氧化硅(在GG中发现)和Ca ++(在Cl)中发生火山灰反应。对于三个不同的砂,量化了Gg,Cl含量和混合物的孔隙率对压实砂-GG-CL混合的强度,刚度和耐久性的影响。称为孔隙率/粘合剂指数(ETA / B-IV)的原始参数可用于归一化非束缚的压缩强度(Q(U))的行为,小菌株(G(0))和考虑到GG + Cl作为粘合剂的压实混合物的质量(ALM)的累积损失。结果表明,对于Q(U),G(0)和ALM,对于具有ETA / B-IV的Q(U),G(0)和ALM,即使每个砂具有不同的晶粒尺寸分布,也表明了具有ETA / B-IV的ALM。

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