含木质素生物基沥青混合料性能分析

IF 0.7 Q4 TRANSPORTATION European Transport-Trasporti Europei Pub Date : 2023-02-01 DOI:10.48295/et.2023.91.1
E. Gaudenzi
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引用次数: 3

摘要

鉴于需要促进循环经济和可持续性,目前道路材料建设的主要趋势之一是使用来自可再生资源的工业残留物和副产品作为沥青的扩展剂、替代品或改性剂,获得所谓的“生物粘合剂”。在这方面,木质素可能是一种潜在的有吸引力的解决方案,因为它是最丰富的天然生物聚合物,可大量获得,并且具有与沥青具有某些化学相似性的特征。在此背景下,本研究侧重于评价两种高密度级沥青混合料的粘结层,由含有两种不同木质素的生物粘结剂制成,作为沥青的部分替代品。初步阶段允许根据经验测试(即动态粘度、渗透和软化点测试)优化木质素含量(按生物粘合剂重量计30%),目的是最大限度地替代沥青,同时获得两种具有与参考普通沥青相似稠度的生物粘合剂。在第二阶段,将优化后的生物粘合剂以不同的尝试含量制备了两种生物基混合物。混合后,试样由旋转压实机在设定的旋转产生。然后,将两种木质素基沥青混合料与参考混合料在和易性、间接抗拉强度(ITS)和水敏性方面进行了比较。尽管生物基混合物的可加工性略有下降,但总体结果表明,它们的性能与参考混合物完全相当,可以降低有效沥青含量。
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Performance Analysis of Bio-Based Asphalt Mixtures Containing Lignin
Given the need to promote the circular economy and sustainability, one of the main current trends in road materials construction is to employ industrial residues and by-products deriving from renewable sources as extender, replacement or modifier of bitumen, obtaining the so-called “bio-binders”. As regards, lignin can represent a potentially attractive solution, because it is the most abundant natural biopolymer, available in large quantity and characterized by certain chemical similarity with bitumen. In this context, this study focuses on the evaluation of two dense-grade asphalt mixtures for binder layer made with bio-binders containing two different lignins, as partial replacement of bitumen. A preliminary phase allowed to optimize lignin content (30% by bio-binder weight) based on empirical test (i.e. dynamic viscosity, penetration and softening point tests) with the aim of maximizing the bitumen replacement and at the same time obtaining two bio-binders having a consistency similar to a reference plain bitumen. In the second phase, two bio-based mixtures were produced by using the before-optimized bio-binders in different attempt contents. After mixing, specimens were produced by means of a gyratory compactor at set gyrations. Then, the two lignin-based asphalt mixtures were compared with the reference mixture in terms of workability, Indirect Tensile Strength (ITS) and water sensitivity. Despite the bio-based mixtures revealed a slightly penalized workability, overall results showed that they are characterized by fully comparable performances to the reference one, allowing a reduction of the effective bitumen content.
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CiteScore
2.30
自引率
0.00%
发文量
19
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