深共晶溶剂预处理对废胶粉脱硫的影响

IF 1.2 4区 工程技术 Q4 POLYMER SCIENCE Rubber Chemistry and Technology Pub Date : 2024-06-06 DOI:10.5254/rct.23.00049
Lining Gao, Li Li, Rui He, Xinqiu Zheng, Ruihao Qin
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引用次数: 0

摘要

废橡胶的回收利用对环境保护非常重要,但相容性问题限制了废橡胶粉(WRP)的回收和应用。实践证明,废橡胶粉的脱硫化是提高增溶效果的有效方法。使用环保无毒溶剂不仅能提高脱硫效果,还能避免二次污染。因此,本文首先制备了一种环境友好型深共晶溶剂(DES),然后将其应用于水再生资源的脱硫化处理。结果表明,制备的 DES 具有积极的脱硫化效果,脱硫化率可达 50%。脱硫机理可分为两个方面:(1)吸附和去除含硫低分子化合物;(2)破坏交联结构和改善流动性。对微观结构的观察表明,脱硫胶粉表面越粗糙,越有利于与基体材料发生交联反应,形成一个均匀的整体。DES 的脱硫化机理分为破坏含硫交联结构和吸附含硫低分子化合物两种。经 DES 处理后的 WRP 表面更粗糙、更多孔,有利于与基体材料发生交联反应。最后,通过正交试验确定了去交联效果的最佳工艺条件:液固比 15∶1、温度 120°C、时间 0.5 小时。
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EFFECT OF DEEP EUTECTIC SOLVENT PRETREATMENT ON DEVULCANIZATION OF WASTE RUBBER POWDER

The recycling of waste rubber is very important for environmental protection, but the compatibility problem restricts the recycling and application of waste rubber powder (WRP). Devulcanization of WRP has been proven to be an effective method to improve the solubilization effect. The use of environmentally friendly nontoxic solvents can not only improve the devulcanization effect but also avoid secondary pollution. Thus, in this article, an environmentally friendly deep eutectic solvent (DES) is first prepared and then applied to the devulcanization treatment of WRP. The results show that the prepared DES has a positive devulcanization effect, and the devulcanization rate can reach 50%. The devulcanization mechanism can be divided into two aspects: (1) adsorption and removal of sulfur-containing low-molecular compounds and (2) destruction of the crosslinking structure and improvement of fluidity. Observation of the microstructure showed that the rougher the surface of the desulfurized rubber powder, the more conducive to the crosslinking reaction with the matrix material to form a uniform whole. The devulcanization mechanism of DES is divided into destroying the sulfur-containing cross-linked structure and adsorbing the sulfur-containing low-molecular compounds. The surface of WRP after DES treatment is rougher and more porous, which is beneficial to the crosslinking reaction with the matrix material. Finally, the optimum process conditions for the de-crosslinking effect are determined by orthogonal test as follows: liquid-solid ratio 15∶1, temperature 120°C, time 0.5 h.

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来源期刊
Rubber Chemistry and Technology
Rubber Chemistry and Technology 工程技术-高分子科学
CiteScore
3.50
自引率
20.00%
发文量
21
审稿时长
3.6 months
期刊介绍: The scope of RC&T covers: -Chemistry and Properties- Mechanics- Materials Science- Nanocomposites- Biotechnology- Rubber Recycling- Green Technology- Characterization and Simulation. Published continuously since 1928, the journal provides the deepest archive of published research in the field. Rubber Chemistry & Technology is read by scientists and engineers in academia, industry and government.
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