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An exploration into the utilization of recycled waste glass as a surrogate powder to crushed stone dust in asphalt pavement construction

机译:再生废玻璃用作替代粉末粉碎石粉尘的替代粉末勘探

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Growing attempts aimed at decreasing the consumption of huge amounts of natural materials as means of saving global limited financial resources have led to investigations into the feasibility of utilizing sur-rogate and sustainable materials in asphalt pavements. Enormous amounts of discarded glass and its derivatives are ending up in global landfills. This massive increase in such stockpiles is now outpacing the world's ability to degrade such post-consumer glass. It is this issue that provoked this investigation into the potential incorporation of such abundant waste glass as an alternative powder in the production of asphaltic concrete, hoping that such utilizations will not only decrease global dependency on quarry-based scarce resources, but will also serve to facilitate effective solid waste management. As a means of validating this conjecture, we conducted laboratory tests on asphalt mortars that included recycled waste glass (RWG) and reference crushed stone dust (CSD) at three filler bitumen ratios (0.1, 0.2 and 0.4). We next carried out widespread performance tests on asphalt mixtures with RWG and control asphalt mix-tures with CSD. We used both conventional (penetration, softening point, penetration index, and ductil-ity) and rheological (rotational viscosity and dynamic shear rheometer) tests to evaluate the properties of the RWG and CSD mastics. The mechanical properties of asphalt RWG and CSD mixtures were examined by using the Marshall test, indirect tensile stiffness modulus, indirect tensile fatigue test, and dynamic creep test. We also inspected the morphological impact of RWG on the bitumen phase by analyzing the images captured with a Scanning Electron Microscope. Our findings indicate that green sustainable roads augmented by RWG comply with the relevant specifications, and that RWG utilizations provide significant improvements in the thermal susceptibility and fatigue performance of these roads, thus confirming the feasibility of RWG under certain practical applications. (c) 2021 Elsevier Ltd. All rights reserved.
机译:旨在减少巨额自然材料的消费作为节约全球有限的财政资源的手段的日益增长的尝试导致对利用沥青路面中的血管腐败和可持续材料的可行性进行调查。巨大的废弃玻璃及其衍生物在全球垃圾填埋场结束。这种储存的大规模增加现在超越了世界降解了这种消费玻璃的能力。这是这个问题,激发了这项调查,进入这种丰富的废物玻璃作为替代粉末作为倒数混凝土的替代粉末的潜在含量,希望这种利用率不仅会降低基于采石场的稀缺资源的全球依赖,而且还将用于促进有效的固体废物管理。作为验证这一猜测的手段,我们对沥青砂浆进行了实验室测试,其中包括再循环的废玻璃(RWG)和参考碎石粉尘(CSD),在三个填充物沥青比率(0.1,0.2和0.4)。我们接下来对沥青混合物进行了广泛的性能试验,用rwg和控制沥青混合物与CSD进行了混合物。我们使用常规(渗透,软化点,渗透指数和锯齿状)和流变学(旋转粘度和动态剪切流变仪)试验,以评估RWG和CSD胶芯的性质。通过使用马歇尔试验,间接拉伸刚度模量,间接拉伸疲劳试验和动态蠕变试验来检查沥青rwg和CSD混合物的机械性能。我们还通过分析用扫描电子显微镜捕获的图像检查RWG对沥青相的形态学影响。我们的研究结果表明,RWG增强的绿色可持续性道路符合相关规范,RWG利用率在这些道路的热敏敏感性和疲劳性能方面提供了显着的改进,从而在某些实际应用中确认RWG的可行性。 (c)2021 elestvier有限公司保留所有权利。

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