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辛辣沥青:姜黄素对沥青流变和粘附性能的影响

Spicy Bitumen: Curcumin Effects on the Rheological and Adhesion Properties of Asphalt.

作者信息

Abe Abraham A, Oliviero Rossi Cesare, Caputo Paolino, De Santo Maria Penelope, Godbert Nicolas, Aiello Iolinda

机构信息

Dipartimento di Chimica e Tecnologie Chimiche, Università della Calabria, 87036 Arcavacata di Rende, Italy.

Dipartimento di Fisica e CNR-Nanotec, Università della Calabria, via Bucci 31C, 87036 Rende, Italy.

出版信息

Materials (Basel). 2021 Mar 26;14(7):1622. doi: 10.3390/ma14071622.

Abstract

Over the years, the need for the synthesis of biodegradable materials has facilitated the drift of the asphalt industry towards eco-sustainable and cost-effective production of road pavements. The principal additives in the asphalt industry to improve the performance of road pavements and increase its lifespan are majorly rheological modifiers, adhesion promoters and anti-oxidant agents. Rheological modifiers increase physico-chemical properties such as transition temperature of asphalt binder (bitumen), adhesion promoters increase the affinity between binder and stone aggregates while anti-oxidant agents reduce the effects of oxidation caused by exposure to air, water and other natural elements during the production of asphalt pavements. In this study, we tested the effectiveness of a food grade bio-additive on these three aforementioned properties. We also sought to hypothesize the mechanisms by which the additive confers these desired features on bitumen. We present this study to evaluate the effects of turmeric, a food-based additive, on bitumen. The study was conducted through dynamic shear rheology (DSR), atomic force microscopy, scanning electron microscopy (SEM) and boiling test analysis.

摘要

多年来,对可生物降解材料合成的需求推动了沥青行业朝着生态可持续且具有成本效益的道路路面生产方向发展。沥青行业中用于改善道路路面性能并延长其使用寿命的主要添加剂主要是流变改性剂、粘结促进剂和抗氧化剂。流变改性剂可提高物理化学性能,如沥青结合料(沥青)的转变温度;粘结促进剂可增加结合料与石料集料之间的亲和力;而抗氧化剂可减少在沥青路面生产过程中因暴露于空气、水和其他自然元素而导致的氧化作用。在本研究中,我们测试了一种食品级生物添加剂对上述三种性能的有效性。我们还试图推测该添加剂赋予沥青这些所需特性的机制。我们开展本研究以评估姜黄(一种基于食品的添加剂)对沥青的影响。该研究通过动态剪切流变学(DSR)、原子力显微镜、扫描电子显微镜(SEM)和水煮试验分析进行。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d93/8036851/7e02d6124fca/materials-14-01622-g001.jpg

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