首页> 外文期刊>Journal of thermal analysis and calorimetry >Thermal stability and evolved gas analysis of rejuvenated reclaimed asphalt pavement (RAP) bitumen using thermogravimetric analysis-Fourier transform infrared (TG-FTIR)
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Thermal stability and evolved gas analysis of rejuvenated reclaimed asphalt pavement (RAP) bitumen using thermogravimetric analysis-Fourier transform infrared (TG-FTIR)

机译:使用热重分析 - 傅里叶变换红外线(TG-FTIR)热稳定性和振兴沥青路面(RAP)沥青的热稳定性和进化气体分析

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摘要

Several reports exist on the use of natural-oil-based materials as rejuvenators to restore the properties of aged binders-more specifically, regarding their ability to enhance the binders' low-temperature properties and to reduce their stiffness. Rejuvenators are typically made of low molecular weight constituents which could easily volatilize and thus render the rejuvenated binder thermally unstable. Hence, the study of the thermal stability of rejuvenated binders is of paramount importance. In this research, a binder with a performance grade (PG) of PG58-28 modified with a soybean-derived rejuvenator at 12% by mass is added to an extracted reclaimed asphalt pavement (RAP) binder at a ratio of 1:5 resulting in a rejuvenator dosage rate of 2% by total mass of binder. The PG of the rejuvenated RAP binder is determined using both dynamic shear rheometer and bending beam rheometer. The thermal stability of the rejuvenator and the binders is verified using thermogravimetric analysis (TG). The rejuvenator shows good thermal stability up to a temperature of 302 degrees C. The RAP binder containing the rejuvenator shows similar thermal stability to the unrejuvenated RAP binder. The evolved gases from the TG analysis are analyzed using Fourier transform infrared (FTIR) to chemically characterize the rejuvenator and the binders. The FTIR spectrum of the rejuvenator reveals characteristic peaks. The intensity of these peaks serves as an indication of the rate of mass loss of the rejuvenator within the rejuvenated RAP binder.
机译:有几份报告存在于使用天然油基材料作为恢复剂,以恢复老化粘合剂的性质 - 更具体地,关于它们增强粘合剂的低温性能并降低它们的刚度。再涂料通常由低分子量成分制成,其易于挥发,从而使恢复活力的粘合剂不稳定。因此,对恢复活力粘合剂的热稳定性的研究是至关重要的。在该研究中,将具有在12质量%的大豆衍生的再生剂改性的PG58-28的PG58-28的性能等级(PG)的粘合剂加入到提取的再生沥青路面(RAP)粘合剂,其比例为1:5粘合剂总质量为2%的恢复剂剂量率。使用动态剪切流变仪和弯曲光束流变仪测定恢复活力的RAP粘合剂的pG。使用热重分析(TG)验证了再烧结器和粘合剂的热稳定性。再融化器呈现出良好的热稳定性,高达302℃的温度。含有再烧结器的RAP粘合剂对未增强的RAP粘合剂具有类似的热稳定性。使用傅里叶变换红外线(FTIR)分析来自TG分析的进化气体,以化学表征再融化器和粘合剂。 Rejuvenator的FTIR谱揭示了特征峰。这些峰的强度有用作为恢复的RAP粘合剂内的恢复剂的质量损失率的指示。

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