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Investigating the Aging Susceptibility of Bio-Modified Asphalts

机译:研究生物改性沥青的老化敏感性

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Asphalt binder supplies are shrinking, while the demand for it is increasing rapidly; this in turn has led to an increase in the price of asphalt. As the price of asphalt binder increases, the demand for alternative and renewable binder resources increases. Therefore, this paper investigates the effects of introduction of four different bio-binders (made from Corn Stover, Miscanthus Pellet, Swine Manure, and Wood Pellet) on the aging susceptibility of asphalt as measured by the change in rheological and chemical properties of a selected asphalt binder (PG64-22) as a result of oxidative aging. The results of Rotational Viscometer (RV) and Dynamic Shear Rheometer (DSR) were used to evaluate the rheological behavior of the various bio-modified asphalt binders. Overall, the rheological characterization showed that bio-binder from Wood Pellets had the most desirable properties in unaged status among all bio-modified specimens. However, this trend was reversed after aging, indicating Pellets bio-binder has thehighest susceptibility to oxidative aging. In order to quantitatively measure and compare the extent of aging, the chemical composition of each sample was obtained using the FTIR spectra. Oxidative aging was demonstrated through tracking the formation of carbonyl and sulfoxide groups due to aging. The results showed that aging susceptibilities varied significantly depending on the source of the biomass. The experimental results indicates that bio-binder from Swine Manure was least susceptible to aging, followed by bio-binder made from Corn Stover, Miscanthus Pellets, and Wood Pellets.
机译:沥青粘合剂的供应在减少,而需求却在迅速增加。这又导致沥青价格上涨。随着沥青粘合剂价格的上涨,对替代和可再生粘合剂资源的需求也在增加。因此,本文研究了四种不同的生物粘合剂(由玉米秸秆,芒草颗粒,猪粪肥和木材颗粒制成)对沥青老化敏感性的影响,通过选择的流变和化学性质的变化来衡量氧化老化导致的沥青粘合剂(PG64-22)。旋转粘度计(RV)和动态剪切流变仪(DSR)的结果用于评估各种生物改性沥青粘合剂的流变行为。总的来说,流变学特性表明,在所有生物改性的标本中,来自木丸的生物粘合剂在未老化状态下具有最理想的性能。然而,这种趋势在老化后被逆转,这表明药丸生物粘合剂对氧化老化的敏感性最高。为了定量测量和比较老化程度,使用FTIR光谱获得了每个样品的化学成分。通过跟踪老化引起的羰基和亚砜基的形成,证明了氧化老化。结果表明,老化敏感性根据生物质的来源而有很大差异。实验结果表明,猪粪中的生物粘合剂最不易老化,其次是玉米秸秆,芒草小丸和木屑制成的生物粘合剂。

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