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Investigation of lignin as an alternative extender of bitumen for asphalt pavements

机译:木质素作为沥青路面沥青的替代扩销的研究

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摘要

Using alternative extender as a substitute for bitumen is one of the most effective approaches to construct asphalt pavements. In this study, the feasibility of using lignin as an extender for bitumen was investigated. According to the literature review and preliminary tests, the ratio of bitumen to lignin was fixed at 4:1 by mass. The viscosity measurement determined the workability of lignin modified bitumen (LMB). Rheological properties in a broader temperature range were investigated through the dynamic shear rheometer (DSR) and bending beam rheometer (BBR). The anti-aging performance of LMB was estimated by employing the thin-film oven test (TFOT) and Fourier Transform Infrared Spectroscopy (FTIR). Besides, the storage stability of LMB was discussed in terms of morphology, lignin concentration, and mechanical properties. Lastly, the thermal stability of LMB was examined to eliminate the safety concern in construction. The results indicated that lignin showed explicit chemical activities (associated hydroxyl -OH and carbonyl groups -C=O), which significantly affected the bitumen properties from varying perspectives. The stiffness of bitumen increased, and the temperature susceptibility of bitumen was reduced after the incorporation of lignin. Meanwhile, the mixing and paving temperatures for the pavement construction increased by over 10 degrees C. The presence of abundant associated hydroxyl in lignin was the primary factor that changes the anti-aging capacity of bitumen. The problem of lignin segregation was reasonably serious but was solved by adding additives. In general, the lignin could be a decent extender for bitumen with the appropriate procedure in practice. (C) 2020 Elsevier Ltd. All rights reserved.
机译:使用替代扩展器作为沥青的替代品是构建沥青路面最有效的方法之一。在这项研究中,研究了使用木质素作为沥青的增量剂的可行性。根据文献综述和初步试验,沥青对木质素的比例固定在4:1质量下。粘度测量确定了木质素改性沥青(LMB)的可加工性。通过动态剪切流变仪(DSR)和弯曲梁流变仪(BBR)研究更广泛温度范围内的流变性质。通过使用薄膜烘箱试验(TFOT)和傅里叶变换红外光谱(FTIR)估计LMB的抗衰老性能。此外,就形态,木质素浓度和机械性能而讨论了LMB的储存稳定性。最后,研究了LMB的热稳定性,以消除建筑的安全问题。结果表明,木质素显示出明确的化学活性(相关羟基-OH和羰基 - C = O),其显着影响了不同的观点的沥青特性。沥青的刚度增加,并且在木质素掺入后,沥青的温度敏感性降低。同时,路面结构的混合和铺路温度超过10℃。木质素中丰富相关羟基的存在是改变沥青的抗衰老能力的主要因素。木质素分离的问题相当严重,但通过添加添加剂来解决。通常,木质素可以是在实践中具有适当程序的沥青的体面的扩展剂。 (c)2020 elestvier有限公司保留所有权利。

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