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Biobased epoxy film derived from UV-treated epoxidised natural rubber and tannic acid: Impact on film properties and biodegradability

机译:衍生自UV处理的环氧化天然橡胶和单宁酸的生物化环氧树脂膜:对膜性能的影响和生物降解性

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摘要

Deriving resins or prepolymers from natural resources is becoming more relevant in the current times due to depleting fossil resources. The manuscript describes preparation of epoxy resin from epoxidised natural rubber (ENR) via ultraviolet (UV) treatment, followed by investigation on the properties of the films produced by blending the natural rubber-based epoxy resin with another naturally resourced compound, tannic acid as the hardener. It is noteworthy that the purpose of the UV treatment is to produce shorter rubber chains by cleaving the C=C of the rubber, and this is important to improve its compatibility with common solvents. Such approach can break the rubber without significant change to the amount of epoxide group. Upon blending with tannic acid, the epoxide group in the rubber was found to react with phenolic -OH of the acid and formed crosslinked networks. Consequently, significant improvement in gel content, glass transition temperature as well as other physicochemical properties were observed. Biodegradability test was also conducted on the films by burying the samples in soil-compost mixture, and the high percentage of natural content in coatings allow most of them to exhibit significantly higher post-burial weight loss compared to petroleum-derived epoxy film that served as a control.
机译:由于耗尽化石资源,来自自然资源的树脂或预聚物在当前时代变得更加相关。原稿描述了通过紫外(UV)处理从环氧化天然橡胶(ENR)的环氧树脂的制备,然后研究通过将天然橡胶基环氧树脂与另一种天然排斥的化合物,单宁酸作为其制备的薄膜的性质研究硬化剂。值得注意的是,UV处理的目的是通过切割橡胶的C = C产生更短的橡胶链,这对于改善其与普通溶剂的相容性是重要的。这种方法可以破坏橡胶,而不会对环氧基组的量进行显着变化。在用鞣酸混合后,发现橡胶中的环氧基组与酸的酚-OH反应并形成交联网络。因此,观察到凝胶含量,玻璃化转变温度以及其他物理化学性质的显着改善。通过将样品埋入土 - 堆肥混合物中的样品在薄膜上进行了生物降解性试验,并且涂层中的大部分的高百分比允许其大多数与施用的石油衍生的环氧膜相比表现出显着更高的埋管减重损失控制。

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