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首页> 外文期刊>Construction and Building Materials >Effect of sodium-silicate activated slag at different silicate modulus on the strength and microstructural properties of full and coarse sulphidic tailings paste backfill
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Effect of sodium-silicate activated slag at different silicate modulus on the strength and microstructural properties of full and coarse sulphidic tailings paste backfill

机译:不同硅酸盐模量的硅酸钠活化矿渣对全硫和粗硫尾矿浆回填的强度和微观结构性能的影响

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In this study, strength and microstructural development of full (FT) and coarse sulphidic tailings (CT) cemented paste backfill (CPB) produced from sodium-silicate activated slag (SSAS) at different silicate modulus (Ms) were investigated in the short- and long-term. SSAS samples (SSASs) with varying Ms for both FT and CT produced 1.5-3.5 fold unconfined compressive strengths in the long-term compared to ordinary Portland cement samples (OPCs). Optimum Ms values were 1.0-1.25 for FT and 1.25-1.50 for CT considering the short- and long-term strength gain and microstructural properties of CPBs based on the polymerization degree and balance of C-S-H gel. Strength losses were observed in OPC-CT and in SSASs at Ms = 0.75 for FT and CT in the long-term. Formation of secondary expansive minerals such as ettringite, decalcification of C-S-H gel and the weakening of microstructure were found to be the main reasons for the strength losses due to the coupled effect of acid and sulphate attack. The use of CT and SSAS together significantly improved the microstructure of CPB. Increase in Ms decreased the porosity, refined the pore structure providing more compact microstructure and alleviated the decalcification of C-S-H gels in consequence of higher rate of polymerization. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在这项研究中,研究了在短时间和短时间内研究由硅酸钠活化矿渣(SSAS)生产的全(FT)和粗硫化尾矿(CT)水泥浆回填料(CPB)的强度和微结构发展。长期。与普通波特兰水泥样品(OPC)相比,长期而言,FT和CT均具有不同Ms的SSAS样品(SSAS)产生的无侧限抗压强度为1.5-3.5倍。考虑到基于C-S-H凝胶的聚合度和平衡的CPB的短期和长期强度增加和微观结构特性,FT的最佳Ms值为1.0-1.25,CT的最佳Ms值为1.25-1.50。从长期来看,在OPC-CT和SSAS中,FT和CT的Ms = 0.75时会出现强度损失。钙铝石等次生膨胀矿物的形成,C-S-H凝胶的脱钙以及微结构的弱化被发现是由于酸和硫酸盐侵蚀的耦合作用而导致强度损失的主要原因。 CT和SSAS的共同使用可显着改善CPB的微观结构。 Ms的增加降低了孔隙率,细化了孔结构,从而提供了更紧密的微观结构,并减轻了C-S-H凝胶因高聚合速率而引起的脱钙现象。 (C)2018 Elsevier Ltd.保留所有权利。

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