Review on the properties and mechanisms of asphalt modified with bio-oil and biochar

IF 8.6 Journal of Road Engineering Pub Date : 2024-12-01 Epub Date: 2024-12-16 DOI:10.1016/j.jreng.2024.06.001
Xinxing Zhou , Ziyang Zhang , Haopeng Wang , Meizhu Chen , Shaopeng Wu , Song Xu , Xinglin Zhou , Maoping Ran , Linglin Li , Guangjun Lu , Zhibin Ma
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Abstract

Bio-asphalt has a great application prospect in the replacement of petroleum-based asphalt to pave and maintain asphalt pavement. However, the problems of flow-induced crystallization and phase separation caused by flow-induced crystallization had severely restricted its application. This paper describes the progress of research on preparation, property evaluation and phase separation mechanism of bio-asphalt. The advantages and disadvantages of preparation methods of bio-asphalt are states. The fundamental physical and rheological properties of bio-asphalt are investigated, especially for flow-induced crystallization. There exists obvious flow-induced crystallization because bio-asphalt is rich in waxes that crystallize easily. Owing to the existence of excess biochar, bio-asphalt appears phase separation. A brief review of the effect of bio-oil and biochar on asphalt volatile organic compounds (VOCs) is presented. Research find that bio-oil/biochar are not only replenish the light components of asphalt, but also improve the flow-induced crystallization and phase separation of bio-asphalt. There exists synergistic effect of biochar and bio-oil in asphalt modification. Moreover, biochar can improve the durability of bio-oil modified asphalt, but excessive addition of biochar to bio-oil modified asphalt can cause phase separation. Adding an appropriate amount of bio-oil and biochar to asphalt can improve its high-temperature resistance, low-temperature crack resistance, and system compatibility.

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生物油和生物炭改性沥青的性能及机理研究进展
生物沥青在替代石油基沥青铺装和养护沥青路面方面具有很大的应用前景。然而,流致结晶和流致结晶引起的相分离问题严重制约了其应用。介绍了生物沥青的制备、性能评价和相分离机理等方面的研究进展。生物沥青的制备方法有其优缺点。研究了生物沥青的基本物理和流变特性,特别是流动诱导结晶。由于生物沥青富含易结晶的蜡,因此存在明显的流致结晶现象。由于过量生物炭的存在,生物沥青出现相分离现象。综述了生物油和生物炭对沥青挥发性有机物(VOCs)的影响。研究发现,生物油/生物炭不仅补充了沥青的轻组分,而且改善了生物沥青的流动诱导结晶和相分离。生物炭与生物油在沥青改性中存在协同效应。此外,生物炭可以提高生物油改性沥青的耐久性,但生物油改性沥青中添加过多的生物炭会导致相分离。在沥青中加入适量的生物油和生物炭可以提高沥青的耐高温性、耐低温开裂性和体系相容性。
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