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使用硅烷进行轮胎橡胶脱硫的新途径。

New Route of Tire Rubber Devulcanization Using Silanes.

作者信息

Ghosh Rounak, Mani Christian, Krafczyk Roland, Schnell Rupert, Paasche Alexander, Talma Auke, Blume Anke, Dierkes Wilma K

机构信息

Department of Solids, Surfaces and Systems, Faculty of Engineering Technology, University of Twente, P.O. Box 217, 7500 AE Enschede, The Netherlands.

Evonik Industries, Paul-Baumann-Straße 1, 45772 Marl, Germany.

出版信息

Polymers (Basel). 2023 Jun 28;15(13):2848. doi: 10.3390/polym15132848.

Abstract

The disposal of tires at the end of their lifespan results in societal and environmental issues. To tackle this, recycling and reuse are effective solutions. Among various recycling methods, devulcanization is considered to be a very sustainable option, as it involves the controlled breakdown of crosslinks while maintaining the polymer backbones. The objective of this study is to develop a sustainable devulcanization process for passenger car tire rubber using silanes. In this study, a thermo-mechanical-chemical devulcanization process was conducted to screen six potential devulcanization aids (DAs). Silanes were chosen as they are widely used in tire rubber as coupling agents for silica. The efficiency of the devulcanization was studied by the degree of network breakdown, miscibility of the devulcanized material, and mechanical properties of the de- and revulcanized material. Compared to the parent compound, a 55-60% network breakdown was achieved for the devulcanizate along with 50-55% of tensile strength recovery. In addition to superior devulcanization efficiency, this DA offers a sustainable alternative to the conventional ones, such as di-phenyl-di-sulphide, due to its compliance with safety regulations. The devulcanizate can be utilized in high-performance applications, such as tires and seals, while 100% devulcanizate can be employed in low-strength technical rubber products.

摘要

轮胎在使用寿命结束时的处置会引发社会和环境问题。为解决这一问题,回收和再利用是有效的解决方案。在各种回收方法中,脱硫被认为是一种非常可持续的选择,因为它涉及在保持聚合物主链的同时对交联键进行可控分解。本研究的目的是开发一种使用硅烷对乘用车轮胎橡胶进行可持续脱硫的工艺。在本研究中,进行了热机械化学脱硫工艺以筛选六种潜在的脱硫助剂(DAs)。选择硅烷是因为它们在轮胎橡胶中广泛用作二氧化硅的偶联剂。通过网络分解程度、脱硫材料的混溶性以及脱硫和再硫化材料的机械性能来研究脱硫效率。与母体化合物相比,脱硫产物实现了55 - 60%的网络分解以及50 - 55%的拉伸强度恢复。除了卓越的脱硫效率外,由于该脱硫助剂符合安全法规,它为传统的脱硫助剂(如二苯基二硫化物)提供了一种可持续的替代方案。脱硫产物可用于高性能应用,如轮胎和密封件,而100%的脱硫产物可用于低强度工业橡胶产品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d375/10346682/1d2b65280616/polymers-15-02848-g001.jpg

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