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Chemical Mechanical and Durability Properties of Concrete with Local Mineral Admixtures under Sulfate Environment in Northwest China

机译:西北地区含硫酸盐环境下掺有矿物掺合料的混凝土的化学机械和耐久性能

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摘要

Over the vast Northwest China, arid desert contains high concentrations of sulfate, chloride, and other chemicals in the ground water, which poses serious challenges to infrastructure construction that routinely utilizes portland cement concrete. Rapid industrialization in the region has been generating huge amounts of mineral admixtures, such as fly ash and slags from energy and metallurgical industries. These industrial by-products would turn into waste materials if not utilized in time. The present study evaluated the suitability of utilizing local mineral admixtures in significant quantities for producing quality concrete mixtures that can withstand the harsh chemical environment without compromising the essential mechanical properties. Comprehensive chemical, mechanical, and durability tests were conducted in the laboratory to characterize the properties of the local cementitious mineral admixtures, cement mortar and portland cement concrete mixtures containing these admixtures. The results from this study indicated that the sulfate resistance of concrete was effectively improved by adding local class F fly ash and slag, or by applying sulfate resistance cement to the mixtures. It is noteworthy that concrete containing local mineral admixtures exhibited much lower permeability (in terms of chloride ion penetration) than ordinary portland cement concrete while retaining the same mechanical properties; whereas concrete mixtures made with sulfate resistance cement had significantly reduced strength and much increased chloride penetration comparing to the other mixtures. Hence, the use of local mineral admixtures in Northwest China in concrete mixtures would be beneficial to the performance of concrete, as well as to the protection of environment.
机译:在广阔的西北地区,干旱的沙漠中地下水中含有高浓度的硫酸盐,氯化物和其他化学物质,这对常规利用硅酸盐水泥混凝土的基础设施建设构成了严峻挑战。该地区的快速工业化已经产生了大量的矿物掺合料,例如来自能源和冶金工业的粉煤灰和矿渣。如果不及时利用,这些工​​业副产品将变成废料。本研究评估了使用大量本地矿物掺合料生产优质混凝土混合物的适宜性,这些混凝土混合物可以承受苛刻的化学环境而又不损害基本的机械性能。在实验室中进行了全面的化学,机械和耐久性测试,以表征当地水泥质矿物掺合料,水泥砂浆和含这些掺合料的硅酸盐水泥混凝土混合物的性能。这项研究的结果表明,通过添加局部F类粉煤灰和矿渣,或在混合物中添加抗硫酸盐水泥,可以有效地改善混凝土的抗硫酸盐性能。值得注意的是,与普通硅酸盐水泥混凝土相比,含有本地矿物掺合料的混凝土表现出的渗透性(氯离子渗透性低得多),同时保持了相同的机械性能。与其他混合物相比,用抗硫酸盐水泥制成的混凝土混合物的强度显着降低,氯离子渗透率大大提高。因此,在中国西北地区在混凝土混合物中使用本地矿物掺合料将有利于混凝土的性能以及环境保护。

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