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Sulfate attack resistance of sustainable concrete incorporating various industrial solid wastes

机译:包含各种工业固体废物的可持续混凝土的抗硫酸盐侵蚀性

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Industrial solid wastes are inducing severe environmental problems, but the problem can be overcame by reusing them as construction materials. The sulfate resistances of sustainable concrete incorporating various solid waste materials, including waste glass powder (WGP), coal gangue powder (CGP) and fly ash (FA) were investigated in this study. Concrete mixes with different water to binder (w/b) ratios and containing various solid waste materials as partial replacement of Portland cement by ratios of 10%, 20%, and 30% were prepared. These mixes were immersed in the 5% Na2SO4 solution for a total period of 22 months. The sulfate attack resistances were evaluated extensively based on visual appearance, mass change, compressive strength, splitting tensile strength, ultrasonic pulse velocity, mineralogy, and microstructure. The results indicate that regardless of the type and content of solid waste materials, the replacement of cement by solid waste materials exhibit a positive impact on the sulfate attack resistance. Under the same substitution level, WGP appear to be the most effective in offsetting the destructive effect of sulfate attack, followed by CGP and FA. Therefore, sustainable concrete incorporating solid waste materials can not only promote the recycling of solid waste, but also provide high sulfate attack resistance. (C) 2019 Elsevier Ltd. All rights reserved.
机译:工业固体废物引起了严重的环境问题,但是可以通过将其重新用作建筑材料来解决该问题。本研究研究了掺入各种固体废料(包括废玻璃粉(WGP),煤石粉(CGP)和粉煤灰(FA))的可持续混凝土的耐硫酸盐性。制备了具有不同水与粘合剂(w / b)比例并包含各种固体废物的混凝土混合物,以10%,20%和30%的比例部分替代了硅酸盐水泥。将这些混合物浸入5%Na2SO4溶液中,历时22个月。根据外观,质量变化,抗压强度,抗拉强度,超声脉冲速度,矿物学和微观结构对耐硫酸盐侵蚀性进行了广泛的评估。结果表明,无论固体废物的类型和含量如何,用固体废物替代水泥对耐硫酸盐侵蚀性都有积极影响。在相同的取代水平下,WGP似乎最能抵消硫酸盐侵蚀的破坏作用,其次是CGP和FA。因此,掺入固体废料的可持续混凝土不仅可以促进固体废料的回收利用,而且还具有很高的抗硫酸盐侵蚀性。 (C)2019 Elsevier Ltd.保留所有权利。

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