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首页> 外文期刊>ACS Omega >Devulcanization of Waste Rubber and Generation of Active Sites for Silica Reinforcement
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Devulcanization of Waste Rubber and Generation of Active Sites for Silica Reinforcement

机译:废橡胶的脱硫和二氧化硅增强活性部位的产生

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摘要

Each year, hundreds of millions of tires are produced and ultimately disposed into nature. To address this serious environmental issue, devulcanization could be one of the sustainable solutions that still remains as one of the biggest challenges across the globe. In this work, sulfur-vulcanized natural rubber (NR) is mechanochemically devulcanized utilizing a silane-based tetrasulfide as a devulcanizing agent, and subsequently, silica (SiO2)-based rubber composites are prepared. This method not only breaks the sulfur–sulfur cross-links but also produces reactive poly(isoprene) chains to interact with silica. The silica natural rubber composites are prepared by replacing 30% fresh NR by devulcanized NR with varying contents of silica. The composites exhibit excellent mechanical properties, tear strength, abrasion resistance, and dynamic mechanical properties as compared with the fresh natural rubber silica composites. The tensile strength of devulcanized rubber-based silica composites is ~20 MPa, and the maximum elongation strain is ~921%. The devulcanized composites are studied in detail by chemical, mechanical, and morphological analyses. Thus, the value added by the devulcanized rubber could attract the attention of recycling community for its sustainable applications.
机译:每年都会生产数亿个轮胎,并最终将其丢弃到大自然中。为了解决这个严重的环境问题,脱硫可能是可持续的解决方案之一,仍然是全球最大的挑战之一。在这项工作中,使用硅烷类四硫化物作为脱硫剂对硫磺硫化天然橡胶(NR)进行机械化学脱硫,然后制备二氧化硅(SiO2)基橡胶复合材料。这种方法不仅破坏了硫与硫的交联,而且还产生了反应性聚异戊二烯链以与二氧化硅相互作用。二氧化硅天然橡胶复合材料是通过用不同含量的二氧化硅将脱硫NR替代30%的新鲜NR来制备的。与新鲜的天然橡胶二氧化硅复合材料相比,该复合材料具有优异的机械性能,撕裂强度,耐磨性和动态机械性能。脱硫橡胶基二氧化硅复合材料的抗张强度约为20 MPa,最大伸长应变约为921%。通过化学,机械和形态分析详细研究了脱硫的复合材料。因此,脱硫橡胶所带来的附加值可以吸引回收界对其可持续应用的关注。

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