Suppr超能文献

表面活化热解炭黑:天然橡胶复合材料的双功能可持续填料。

Surface Activated Pyrolytic Carbon Black: A Dual Functional Sustainable Filler for Natural Rubber Composites.

作者信息

Abdul Sattar Mohammad

机构信息

Colloid and Interface Chemistry Laboratory, Department of Chemistry, Indian Institute of Technology Madras, Chennai, 600036, India.

R&D Centre, MRF Limited, Chennai, 600019, India.

出版信息

ChemSusChem. 2024 Jan 22;17(2):e202301001. doi: 10.1002/cssc.202301001. Epub 2023 Nov 6.

Abstract

The significant rise in end-of-life tires (ELTs) globally poses immediate environmental and human health risks. Therefore, to promote ELTs recycling and to reduce tire industry carbon emissions, herein we present a facile approach for fine-tuning the interfacial interactions between pyrolytic carbon black (P-CB) obtained from ELTs and natural rubber (NR) matrix using phosphonium-based ionic liquid (PIL). The reinforcing effect of PIL-activated P-CB was studied by replacing the furnace-grade carbon black (N330-CB) with varying PIL and P-CB loadings. Adding PIL improved the filler dispersion and the cross-linking kinetics with a substantially reduced zinc oxide (ZnO) loading. Considering the cross-linking and viscoelastic properties, it was concluded that the composite, P-CB/N330-CB-PIL (1.5)+ZnO (1) with half substitution of N330-CB with P-CB synergistically works with 1.5 phr PIL and 1 phr of ZnO resulting in improved dynamic-mechanical properties with a minimal loss tangent value at 60 °C (tanδ=0.0689) and improved glass transition temperature (T =-38 °C) compared to control composite. The significant drop (~29 % lower) in tanδ could reduce fuel consumption and related CO emissions. We envisage that this strategy opens an essential avenue for "Green Tire Technology" towards the substantial pollution abatement from ELTs and reduces the toxic ZnO.

摘要

全球报废轮胎(ELTs)的显著增加带来了直接的环境和人类健康风险。因此,为了促进ELTs的回收利用并减少轮胎行业的碳排放,在此我们提出一种简便的方法,使用鏻基离子液体(PIL)来微调从ELTs获得的热解炭黑(P-CB)与天然橡胶(NR)基体之间的界面相互作用。通过用不同的PIL和P-CB负载量替代炉法炭黑(N330-CB),研究了PIL活化的P-CB的增强效果。添加PIL改善了填料分散和交联动力学,同时大幅降低了氧化锌(ZnO)的负载量。考虑到交联和粘弹性性能,得出结论:用P-CB半替代N330-CB的复合材料P-CB/N330-CB-PIL(1.5)+ZnO(1)与1.5 phr的PIL和1 phr的ZnO协同作用,与对照复合材料相比,动态力学性能得到改善,在60°C时损耗角正切值最小(tanδ = 0.0689),玻璃化转变温度提高(T = -38°C)。tanδ的显著下降(约低29%)可降低燃料消耗和相关的CO排放。我们设想,这一策略为“绿色轮胎技术”开辟了一条重要途径,可大幅减少ELTs造成的污染并减少有毒的ZnO。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验