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Zinc-Based Curing Activators: New Trends for Reducing Zinc Content in Rubber Vulcanization Process

机译:基于锌的固化活化剂:降低橡胶硫化过程中锌含量的新趋势

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摘要

The efficiency of sulfur vulcanization reaction in rubber industry is generally improved thanks to the combined use of accelerators (as sulphenamides), activators (inorganic oxides), and co-activators (fatty acids). The interaction among these species is responsible for the formation of intermediate metal complexes, which are able to increase the reactivity of sulfur towards the polymer and to promote the chemical cross-links between the rubber chains. The high number of species and reactions that are involved contemporarily in the process hinders the complete understanding of its mechanism despite the long history of vulcanization. In this process, ZnO is considered to be the most efficient and major employed activator and zinc-based complexes that formed during the first steps of the reaction are recognized to play a main role in determining both the kinetic and the nature of the cross-linked products. However, the low affinity of ZnO towards the rubber entails its high consumption (3−5 parts per hundred, phr) to achieve a good distribution in the matrix, leading to a possible zinc leaching in the environment during the life cycle of rubber products (i.e., tires). Thanks to the recent recognition of ZnO ecotoxicity, especially towards the aquatic environment, these aspects gain a critical importance in view of the urgent need to reduce or possibly substitute the ZnO employed in rubber vulcanization. In this review, the reactivity of ZnO as curing activator and its role in the vulcanization mechanism are highlighted and deeply discussed. A complete overview of the recent strategies that have been proposed in the literature to improve the vulcanization efficiency by reducing the amount of zinc that is used in the process is also reported.
机译:由于促进剂(作为磺胺酰胺),活化剂(无机氧化物)和共激活剂(脂肪酸)的组合使用,通常改善橡胶工业中硫化反应的硫化反应效率。这些物种之间的相互作用负责形成中间金属配合物,其能够将硫的反应性提高到聚合物中并促进橡胶链之间的化学交联。在该过程中涉及的大量物种和反应,尽管硫化历史历史悠久,但仍然在该过程中涉及的次数妨碍了对其机制的完全理解。在该过程中,ZnO被认为是在反应的第一步期间形成的最有效和主要的所用活化剂和锌基复合物,以在确定动力学和交联的性质方面发挥主要作用产品。然而,ZnO对橡胶的低亲和力需要其高消耗(每百份3-5份PHR),以实现良好的基质分布,导致在橡胶制品的生命周期期间在环境中浸出可能的锌浸出(即轮胎)。由于最近对ZnO生态毒性的认可,尤其是对水生环境,这些方面鉴于迫切需要减少或可能替代橡胶硫化的ZnO,获得了至关重要的重要性。在该评论中,ZnO作为固化活化剂的反应性及其在硫化机制中的作用被突出显示并深入讨论。还报道了通过减少在该过程中使用的锌量来改善硫化效率的文献中提出的最近策略的完整概述。

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