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Preliminary investigation of bioadvantaged polymers as sustainable alternatives to petroleum-derived polymers for asphalt modification

机译:初步研究了生物优势聚合物作为石油衍生聚合物进行沥青改性的可持续替代品

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Due to recent volatility in the petroleum market, the possibility of using sustainable alternative materials as substitutes has gained great interest and viability. The purpose of this research is fourfold: to demonstrate how bioadvantaged polymers are produced using non-food soybean oil and showcase their economic and environmental value; to evaluate how they perform rheologically in asphalt against commonly used petroleum-derived polymers; to optimize the formulation of the bioadvantaged polymer for warm climate regions pavement applications based on the grading results, and to verify the modification effects of optimized bioadvantaged polymer by running performance grade tests. The study on economic and environmental implications demonstrated that poly(styrene-acrylated epoxidized soybean oil) (PS-PAESO) is more cost-effective, environmentally friendly, and safer to produce than styrene-butadiene (SB) polymer. The commercially produced petroleum-derived SB diblock polymer was used for comparison, while the laboratory produced bioadvantaged polymers were targeted at 1.25 MDa molecular weight of PS-PAESO diblock copolymers that consist of PAESO with various polystyrene (PS) molecular weights and contents. The effectiveness and rheological performance of the polymer modified asphalt binders were evaluated through binder investigations. Rheology test results indicated that the bioadvantaged polymers improved the stiffness, elasticity, and rutting resistance of the neat asphalt binder. Best-fit prediction models were developed through response surface modeling to optimize the PS-PAESO formulation in terms of PS content and molecular weight and the models were verified to be highly accurate based on the grading results. It was found that lower polystyrene content in PS-PAESO polymer could be beneficial in the improvement of critical high temperatures.
机译:由于最近石油市场的动荡,使用可持续的替代材料作为替代品的可能性已经引起了极大的兴趣和可行性。这项研究的目的有四个方面:论证使用非食用大豆油如何生产生物优势聚合物,并展示其经济和环境价值;评估它们在沥青中对常用的石油衍生聚合物的流变性能;根据分级结果优化用于气候温暖地区路面应用的生物优势聚合物的配方,并通过运行性能等级测试验证优化的生物优势聚合物的改性效果。对经济和环境影响的研究表明,聚(苯乙烯-丙烯酸酯化的环氧化大豆油)(PS-PAESO)比苯乙烯-丁二烯(SB)聚合物更具成本效益,环境友好且生产更安全。使用商业生产的石油衍生的SB二嵌段聚合物进行比较,而实验室生产的生物优势聚合物的目标是分子量为1.25 MDa的PS-PAESO二嵌段共聚物,该共聚物由具有不同聚苯乙烯(PS)分子量和含量的PAESO组成。通过粘合剂研究评估了聚合物改性沥青粘合剂的有效性和流变性能。流变测试结果表明,生物优势聚合物改善了纯沥青粘合剂的刚度,弹性和抗车辙性。通过响应面建模开发了最佳拟合预测模型,以根据PS含量和分子量优化PS-PAESO配方,并根据分级结果验证了该模型的准确性。发现在PS-PAESO聚合物中较低的聚苯乙烯含量可能对改善临界高温是有益的。

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