Reducing Environment Pollution by Reusing of Alum Sludge Waste in Stone Mastic Asphalt Mixtures

IF 1.2 Q3 MULTIDISCIPLINARY SCIENCES
O. Mahmood
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Abstract

Globally, a huge quantity of alum sludge waste is produced as a by-product material from drinking water treatment plants that utilize aluminum salts as an essential coagulate and is the most generally produced water treatment remaining sludge around the world, which causes a serious environmental problem. Direct discarding of this substance has ecological effects. Hence, it is important to reuse this alum sludge waste material in such a manner to diminish its detrimental impacts on the environment. This research investigates the possibility of reusing alum sludge waste as a partial replacement of cement filler in stone mastic asphalt (SMA) paving mixtures. For this investigation, the alum sludge was used as a filler material in SMA mixtures in two modes; dried alum sludge at 110°C and burned alum sludge at 700°C. Different percentages of alum sludge were used as a replacement by the total weight of mineral filler at 0, 20, 40, 60, 80, and 100%. The results showed that using alum sludge as a substitution of filler in SMA mixtures reduces the performance of the mixtures in terms of Marshall properties and tensile strength for both dried and burned alum sludge compared with a standard mix. However, the performance of the mixtures containing burned alum sludge gave a better performance than the mixtures containing dried alum sludge.
石胶沥青混合料中明矾污泥废弃物再利用减少环境污染
在全球范围内,使用铝盐作为必需混凝剂的饮用水处理厂产生了大量的明矾污泥废物,是世界上最普遍的产水处理剩余污泥,造成了严重的环境问题。直接丢弃这种物质具有生态效应。因此,以这种方式重新利用这些明矾污泥废物以减少其对环境的有害影响是很重要的。本研究探讨了再利用明矾污泥废物作为部分替代水泥填料在石胶泥沥青(SMA)铺装混合物的可能性。在两种模式下,明矾污泥作为SMA混合料的填料;干燥明矾污泥在110°C和燃烧明矾污泥在700°C。用不同比例的明矾污泥代替总重量为0、20、40、60、80和100%的矿物填料。结果表明,与标准混合物相比,在SMA混合物中使用明矾污泥替代填料会降低混合物的马歇尔性能和抗拉强度,无论是干燥的还是燃烧的明矾污泥。然而,含烧明矾污泥的混合物的性能优于含干明矾污泥的混合物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ARO-THE SCIENTIFIC JOURNAL OF KOYA UNIVERSITY
ARO-THE SCIENTIFIC JOURNAL OF KOYA UNIVERSITY MULTIDISCIPLINARY SCIENCES-
自引率
33.30%
发文量
33
审稿时长
16 weeks
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