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Properties of Cement Mortar Produced from Mixed Waste Materials with Pozzolanic Characteristics

机译:具有火山灰特性的混合废料生产的水泥砂浆的性能

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摘要

Waste materials with pozzolanic characteristics, such as sewage sludge ash (SSA), coal combustion fly ash (FA), and granulated blast furnace slag (GBS), were reused as partial cement replacements for making cement mortar in this study. Experimental results revealed that with dual replacement of cement by SSA and GBS and triple replacement by SSA, FA, and GBS at 50% of total cement replacement, the compressive strength (Sc) of the blended cement mortars at 56 days was 93.7% and 92.9% of the control cement mortar, respectively. GBS had the highest strength activity index value and could produce large amounts of CaO to enhance the pozzolanic activity of SSA/FA and form calcium silicate hydrate gels to fill the capillary pores of the cement mortar. Consequently, the Sc development of cement mortar with GBS replacement was better than that without GBS, and the total pore volume of blended cement mortars with GBS/SSA replacement was less than that with FA/SSA replacement. In the cement mortar with modified SSA and GBS at 70% of total cement replacement, the Sc at 56 days was 92.4% of the control mortar. Modifying the content of calcium in SSA also increased its pozzolanic reaction. CaCl2 accelerated the pozzolanic activity of SSA better than lime did. Moreover, blending cement mortars with GBS/SSA replacement could generate more monosulfoaluminate to fill capillary pores.
机译:在这项研究中,具有火山灰特性的废料,例如污水污泥灰(SSA),燃煤粉煤灰(FA)和粒状高炉矿渣(GBS)被重新用作水泥的部分替代品。实验结果表明,在水泥总置换量的50%的情况下,用SSA和GBS双重置换水泥,并用SSA,FA和GBS三次置换水泥,混合后的水泥砂浆在第56天的抗压强度(Sc)为93.7%和92.9分别为对照水泥砂浆的%。 GBS具有最高的强度活性指标值,可产生大量的CaO来增强SSA / FA的火山灰活性,并形成硅酸钙水合物凝胶,填充水泥砂浆的毛细孔。因此,用GBS替代的水泥砂浆的Sc发育要好于不使用GBS的水泥砂浆,用GBS / SSA替代的水泥砂浆的总孔容要小于用FA / SSA替代的砂浆的总孔容。在使用占总水泥替代量70%的改性SSA和GBS的水泥砂浆中,第56天的Sc为对照砂浆的92.4%。改变SSA中钙的含量也增加了其火山灰反应。 CaCl2比石灰更好地促进了SSA的火山灰活性。此外,用GBS / SSA替代水泥砂浆可以生成更多的单硫铝酸盐来填充毛细孔。

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