Guo Lei, Bai Lichen, Zhao Jinyang, Liu Kexin, Jian Xingao, Chai Hailin, Liu Fumin, Guo Shouyun, Liu Gongxu, Liu Haichao
College of Electromechanical Engineering, Qingdao University of Science & Technology, Qingdao 266061, China.
Sino-Thai International Rubber College, Qingdao University of Science & Technology, Qingdao 266061, China.
Polymers (Basel). 2024 Jan 31;16(3):395. doi: 10.3390/polym16030395.
Low-temperature mechanical chemical devulcanization is a process that can produce reclaimed rubber with exceptional mechanical properties. However, the inadequacy and low efficiency of the devulcanization have significantly restricted its application. To address the issues, alcoholic amines, including hydroxyethyl ethylenediamine (AEEA), ethanolamine (ETA), and diethanol amine (DEA), are utilized as devulcanizing agents to promote the devulcanization process. Careful characterizations are conducted to reveal the devulcanizing mechanism and to depict the performances of reclaimed rubbers. Results show that the amine groups in the devulcanizing agents can react with sulfur after the crosslink bonds are broken by mechanical shear force, thus blocking the activity of sulfur and introducing hydroxyl groups into the rubber chains. The incorporation of alcoholic amines can enhance the devulcanizing degree and devulcanizing efficiency, reduce the Mooney viscosity, and improve the mechanical and anti-aging performance. When using DEA as the devulcanizing agent, the sol content of reclaimed rubber increases from 13.1% to 22.4%, the devulcanization ratio increases from 82.1% to 89.0%, the Mooney viscosity decreases from 135.5 to 83.6, the tensile strength improves from 14.7 MPa to 16.3 MPa, the retention rate of tensile strength raises from 55.2% to 82.6% after aging for 72 h, while the devulcanization time is shortened from 21 min to 9.5 min, compared with that without using alcoholic amines. Therefore, alcoholic amines exhibit remarkable advantages in the devulcanization of waste rubber, thus indicating a promising direction for the advancement of research in the area of waste rubber reclamation.
低温机械化学脱硫是一种能够生产出具有优异机械性能再生橡胶的工艺。然而,脱硫过程的不足和低效率严重限制了其应用。为了解决这些问题,包括羟乙基乙二胺(AEEA)、乙醇胺(ETA)和二乙醇胺(DEA)在内的醇胺被用作脱硫剂以促进脱硫过程。进行了细致的表征以揭示脱硫机理并描述再生橡胶的性能。结果表明,在机械剪切力破坏交联键后,脱硫剂中的胺基可与硫反应,从而阻断硫的活性并将羟基引入橡胶链中。醇胺的加入可提高脱硫程度和脱硫效率,降低门尼粘度,并改善机械性能和抗老化性能。与不使用醇胺相比,当使用DEA作为脱硫剂时,再生橡胶的溶胶含量从13.1%增加到22.4%,脱硫率从82.1%增加到89.0%,门尼粘度从135.5降低到83.6,拉伸强度从14.7 MPa提高到16.3 MPa,老化72 h后拉伸强度保留率从55.2%提高到82.6%,而脱硫时间从21分钟缩短至9.5分钟。因此,醇胺在废橡胶脱硫方面表现出显著优势,从而为废橡胶回收领域的研究进展指明了一个有前景的方向。