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Asphalt modification by utilizing bio-oil ESP and tall oil additive

机译:利用生物油ESP和妥尔油添加剂改性沥青

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摘要

Bio-oil is a dark-brown, mobile liquid derived from the thermo-chemical processing of biomass. Bio-oils generally contain water and lignin. Lignin is a highly-available, well-studied carbohydrate derivative known for its antioxidant properties. For asphalt pavements, oxidation can cause deterioration via long-term aging and eventually result in cracking. Therefore, bio-oil could potentially serve as an antioxidant additive in asphalt mixtures. The main objective of this research is to evaluate the effects of lignin-containing bio-oil for utilization in asphalt binders, and attempt to optimize the bio-oil modification formula by adding other additives. Using bio-oil as an antioxidant in asphalt production could prove to be an economical alternative to conventional methods while being conscious of the environment and increasing the longevity and performance of asphalt pavements.Three bio-oils derived from corn stover, oak wood, and switch grass are tested and evaluated by blending with three conventional asphalt binders. The binders, in order of their susceptibility to oxidative aging, include two binders from the Federal Highway Administration\u27s Materials Reference Library, AAM-1 and AAD-1, as well as a locally produced polymer modified asphalt binder. Bio-oil was added to the asphalt binders in three different percentages by weight, 3%, 6%, and 9%. Moreover, tall oil fatty acids, which is a viscous yellow odorous liquid as a by-product obtained from the southern kraft pulping process, was introduced to optimize the bio-oil modified binders. The Superpave testing and binder performance grading procedure from AASHTO M 320 was used to examine the antioxidant effects and determine the optimum fraction of bio-oil added to the binders. In addition, simple performance tests for an asphalt mixture were conducted to rank the performance properties of the different binders and bio-oil combinations. The experimental asphalt samples for dynamic modulus testing were mixed by adding optimum percentages of bio-oil modified asphalt in the aggregate with a common gradation. Following by the dynamic modulus testing, the flow number tests were carried out with the same specimens as well. Besides ranking the performance, the statistical methods are applied and used to determine the statistically significant bio-oil treatment effects.In general, the corn stover, oak wood, and switch grass derived bio-oil indicate that there is potential to increase the high temperature performance of asphalt binders. However, the increase in high temperature performance adversely affects the low temperature binder properties. The overall performance grade ranges vary depending on the combinations of three different binders and bio-oils. Tall oil does provide significant rehabilitation effects to the bio-oil modified binders at low temperatures. According to the data, some binders show antioxidant effects. Interestingly, the dynamic modulus test results do not necessarily coincide with the asphalt binder test results and suggest greater mix performance improvement than identified by the binder test results.
机译:生物油是一种深棕色的流动性液体,它是通过对生物质进行热化学处理而得到的。生物油通常包含水和木质素。木质素是一种高度可用的,经过充分研究的碳水化合物衍生物,以其抗氧化性能而闻名。对于沥青路面,氧化会由于长期老化而导致劣化,并最终导致开裂。因此,生物油可能会在沥青混合物中用作抗氧化剂。这项研究的主要目的是评估含木质素的生物油在沥青结合料中的利用效果,并尝试通过添加其他添加剂来优化生物油改性配方。在认识到环境并提高沥青路面使用寿命和性能的同时,在沥青生产中使用生物油作为抗氧化剂可能被证明是传统方法的经济替代。通过与三种常规沥青粘合剂混合来测试和评估草。为了易于氧化老化,这些粘合剂包括来自美国联邦公路管理局材料参考库的两种粘合剂AAM-1和AAD-1,以及本地生产的聚合物改性沥青粘合剂。将生物油以三种不同的重量百分比(3%,6%和9%)添加到沥青粘合剂中。此外,引入妥尔油脂肪酸,它是从南部牛皮纸制浆过程中获得的一种粘稠的黄色臭味液体,是副产品,用于优化生物油改性的粘合剂。 AASHTO M 320的Superpave测试和粘合剂性能分级程序用于检查抗氧化效果并确定添加到粘合剂中的生物油的最佳比例。此外,对沥青混合物进行了简单的性能测试,以对不同粘合剂和生物油组合物的性能进行排名。通过以最佳等级添加最佳百分比的生物油改性沥青到骨料中,混合用于动态模量测试的实验沥青样品。在进行动态模量测试之后,也对相同的样品进行了流量测试。除了对性能进行排名外,还使用统计方法来确定具有统计学意义的生物油处理效果。一般而言,玉米秸秆,橡木和交换草衍生的生物油表明存在提高高温的潜力沥青粘合剂的性能。但是,高温性能的提高不利地影响了低温粘合剂的性能。整体性能等级范围根据三种不同的粘合剂和生物油的组合而有所不同。妥尔油确实在低温下为生物油改性的粘合剂提供了显着的修复作用。根据数据,一些粘合剂具有抗氧化作用。有趣的是,动态模量测试结果不一定与沥青粘合剂测试结果相符,并且建议比由粘合剂测试结果确定的更大的混合性能改善。

著录项

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    Tang, Sheng;

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  • 年度 2010
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