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A Green Approach for Preparing High-Loaded Sepiolite/Polymer Biocomposites

机译:一种制备高负载海泡石/聚合物生物复合材料的绿色方法

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摘要

Global industry is showing a great interest in the field of sustainability owing to the increased attention for ecological safety and utilization of renewable materials. For the scientific community, the challenge lies in the identification of greener synthetic approaches for reducing the environmental impact. In this context, we propose the preparation of novel biocomposites consisting of natural rubber latex (NRL) and sepiolite (Sep) fibers through the latex compounding technique (LCT), an ecofriendly approach where the filler is directly mixed with a stable elastomer colloid. This strategy favors a homogeneous dispersion of hydrophilic Sep fibers in the rubber matrix, allowing the production of high-loaded sepioliteatural rubber (Sep/NR) without the use of surfactants. The main physicochemical parameters which control Sep aggregation processes in the aqueous medium were comprehensively investigated and a flocculation mechanism was proposed. The uniform Sep distribution in the rubber matrix, characteristic of the proposed LCT, and the percolative filler network improved the mechanical performances of Sep/NR biocomposites in comparison to those of analogous materials prepared by conventional melt-mixing. These outcomes indicate the suitability of the adopted sustainable procedure for the production of high-loaded clay–rubber nanocomposites with remarkable mechanical features.
机译:由于对生态安全和可再生材料的利用日益受到关注,全球工业对可持续性领域表现出极大的兴趣。对于科学界来说,挑战在于确定更绿色的合成方法以减少对环境的影响。在这种情况下,我们建议通过胶乳复合技术(LCT)制备由天然橡胶胶乳(NRL)和海泡石(Sep)纤维组成的新型生物复合材料,这是一种将填料与稳定的弹性体胶体直接混合的环保方法。该策略有利于亲水性Sep纤维在橡胶基质中的均匀分散,从而无需使用表面活性剂即可生产高负荷的海泡石/天然橡胶(Sep / NR)。全面研究了控制Sep在水性介质中聚集过程的主要理化参数,并提出了絮凝机理。与通过常规熔融混合制得的类似材料相比,橡胶基质中Sep的均匀分布,所提出的LCT的特性以及渗透性填料网络改善了Sep / NR生物复合材料的机械性能。这些结果表明采用可持续的程序生产具有显着机械特性的高负荷粘土-橡胶纳米复合材料的适用性。

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