Abstract Waste glass powder as partial replacement of cement for sustainable concrete practice
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Waste glass powder as partial replacement of cement for sustainable concrete practice

机译:废玻璃粉可部分替代水泥,以实现可持续的混凝土实践

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Abstract Million tons of waste glass is being generated annually all over the world. Once the glass becomes a waste it is disposed as landfills, which is unsustainable as this does not decompose in the environment. Glass is principally composed of silica. Use of milled (ground) waste glass in concrete as partial replacement of cement could be an important step toward development of sustainable (environmentally friendly, energy-efficient and economical) infrastructure systems. When waste glass is milled down to micro size particles, it is expected to undergo pozzolanic reactions with cement hydrates, forming secondary Calcium Silicate Hydrate (C–S–H). In this research chemical properties of both clear and colored glass were evaluated. Chemical analysis of glass and cement samples was determined using X-ray fluorescence (XRF) technique and found minor differences in composition between clear and colored glasses. Flow and compressive strength tests on mortar and concrete were carried out by adding 0–25% ground glass in which water to binder (cement+glass) ratio is kept the same for all replacement levels. With increase in glass addition mortar flow was slightly increased while a minor effect on concrete workability was noted. To evaluate the packing and pozzolanic effects, further tests were also conducted with same mix details and 1% super plasticizing admixture dose (by weight of cement) and generally found an increase in compressive strength of mortars with admixture. As with mortar, concrete cube samples were prepared and tested for strength (until 1year curing). The compressive strength test results indicated that recycled glass mortar and concrete gave better strength compared to control samples. A 20% replacement of cement with waste glass was found convincing considering cost and the environment.
机译: 摘要 全世界每年产生数百万吨的废玻璃。一旦玻璃变成废物,就将其作为垃圾填埋场处置,这是不可持续的,因为它不会在环境中分解。玻璃主要由二氧化硅组成。在混凝土中使用碾磨过的(磨碎)废玻璃作为水泥的部分替代品,可能是朝着可持续(环境友好,节能和经济)基础设施系统发展的重要一步。当将废玻璃磨成细小的颗粒时,预计它会与水泥水合物进行火山灰反应,形成二次硅酸钙水合物(C–S–H)。在这项研究中,评估了透明玻璃和有色玻璃的化学性质。使用X射线荧光(XRF)技术对玻璃和水泥样品进行化学分析,发现透明玻璃和有色玻璃之间的成分差异很小。通过在砂浆和混凝土中加入0–25%的毛玻璃进行水流和抗压强度测试,其中在粘合剂中加入水(水泥 + 玻璃)比率对于所有替换级别均保持相同。随着玻璃添加量的增加,砂浆流量略有增加,而对混凝土的可加工性影响较小。为了评估填料和火山灰的效果,还使用相同的混合物细节和1%的超塑化掺合剂剂量(以水泥重量计)进行了进一步测试,通常发现掺合砂浆的抗压强度有所提高。与砂浆一样,准备混凝土立方体样品并测试强度(直到1 年固化)。抗压强度测试结果表明,与对照样品相比,再生玻璃砂浆和混凝土具有更好的强度。考虑到成本和环境,发现用废玻璃代替20%的水泥令人信服。

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