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首页> 外文期刊>Journal of Cleaner Production >Use of lignin biopolymer from industrial waste as bitumen extender for asphalt mixtures
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Use of lignin biopolymer from industrial waste as bitumen extender for asphalt mixtures

机译:将工业废物中的木质素生物聚合物用作沥青混合料的沥青增量剂

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Liquid waste containing lignin, a biopolymer of vegetable origin, is generated from the production of wood hardboards. Because polymers improve the performance of asphalt mixtures, this work studies the possibility of using this industrial waste as a bitumen extender in the production of asphalt mixtures. Thus, asphalt mixtures with 0% (control), 5%, 10%, 20%, and 40% of industrial waste were produced. The bitumen aggregate adhesion, moisture damage resistance, resilient modulus, permanent deformation resistance, and thermal susceptibility of such mixtures were analysed. Asphalt mixtures with 20% of industrial waste showed the best moisture damage resistance. As the percentage of industrial waste increased, the thermal susceptibility of the mixture also increased. In this regard, at 5 degrees C, the resilient modulus of the mixture made with 20% of industrial waste was 19.08% lower than that of the control mixture. Moreover, at 30 degrees C, the resilient modulus of the mixture made with 20% of industrial waste was 10.48% higher than that of the control mixture. Therefore, it can be stated that it is appropriate to use this industrial waste containing lignin as a bitumen extender. It can be used in asphalt mixtures for road pavement, mainly by substituting 20% of the bitumen by this liquid waste. It reduces the consumption of bitumen and improves the performance of asphalt mixtures, contributing to the purpose of sustainable construction. The industrial waste was not subjected to any transformation process, thus facilitating its use. The reduction in the use of bitumen in asphalt mixtures by adding this industrial waste contributes to the goals of sustainable development and cleaner production of asphalt mixtures. (C) 2019 Elsevier Ltd. All rights reserved.
机译:木质硬质纤维板的生产会产生含有木质素(一种植物性生物聚合物)的废液。因为聚合物可以改善沥青混合物的性能,所以这项工作研究了在沥青混合物的生产中将这种工业废料用作沥青增量剂的可能性。因此,产生了具有0%(对照),5%,10%,20%和40%工业废物的沥青混合物。分析了此类混合物的沥青骨料粘附力,耐湿气破坏性,弹性模量,耐永久变形性和热敏感性。含20%工业废料的沥青混合料显示出最佳的耐湿气破坏性。随着工业废物百分比的增加,混合物的热敏感性也增加了。就这一点而言,在5℃下,由20%的工业废料制成的混合物的弹性模量比对照混合物的弹性模量低19.08%。而且,在30℃下,由20%的工业废料制成的混合物的弹性模量比对照混合物的弹性模量高10.48%。因此,可以说使用含有木质素的工业废料作为沥青增量剂是合适的。它可用于沥青混合料的路面,主要是用这种液体废料代替20%的沥青。它减少了沥青的消耗并提高了沥青混合料的性能,有助于实现可持续建筑的目的。工业废物没有经过任何转化过程,因此便于使用。通过添加这种工业废物减少沥青在沥青混合物中的使用,有助于实现可持续发展和清洁生产沥青混合物的目标。 (C)2019 Elsevier Ltd.保留所有权利。

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