Zhang Guoqing, Mao Qingguo, Yue Yiqun, Gao Ruitong, Duan Yajing, Du Hui
College of Chemistry and Chemical Engineering, Institute for Sustainable Energy and Resources, Qingdao University Qingdao 266071 Shandong P. R. China
Liaoning Bora Bioenergy Co. Ltd Panjin 124000 Liaoning P. R. China.
RSC Adv. 2024 May 16;14(23):15856-15861. doi: 10.1039/d4ra02809k. eCollection 2024 May 15.
Polyolefin plastics are the most popular polymer materials worldwide, and the catalytic degradation of post-consumer polyolefins has attracted increased attention as a viable process. In this study, two types of Ni-based catalysts supported on Hbeta zeolite, Ni-Hbeta and NiS-Hbeta, have been successfully synthesized for the hydrocracking of waste polyolefin. The experimental results indicated that the synergistic effect between Ni or NiS and the acidic sites of Hbeta zeolites can significantly enhance the tandem cracking and hydrogenation of polyolefin plastics, which suppresses the formation of gas products and coke. Ni-Hbeta employed as a catalyst can effectively degrade HDPE into high value liquid and gas products with high yield of 94% under 523 K and 3 MPa H, while also exhibiting excellent cycle stability. In particular, Ni-Hbeta shows better catalytic performance than NiS-Hbeta during the hydrocracking of HDPE at a relatively low temperature of 523 K. Furthermore, Ni-Hbeta catalyst also exhibits a remarkable capability for efficient depolymerization of unsorted post-consumer polyolefin plastics (HDPE, LDPE, PP) containing various additives and pollutants. These findings underscore the application potential of employing noble metal-free and recyclable catalysts for hydrocracking plastic waste, thereby facilitating the realization of a circular economy for plastics.
聚烯烃塑料是全球最受欢迎的聚合物材料,消费后聚烯烃的催化降解作为一种可行的工艺已引起越来越多的关注。在本研究中,成功合成了两种负载在Hbeta沸石上的镍基催化剂,即Ni-Hbeta和NiS-Hbeta,用于废聚烯烃的加氢裂化。实验结果表明,Ni或NiS与Hbeta沸石酸性位点之间的协同作用可显著增强聚烯烃塑料的串联裂化和氢化,从而抑制气体产物和焦炭的形成。以Ni-Hbeta为催化剂,在523 K和3 MPa氢气条件下,可有效将高密度聚乙烯(HDPE)降解为高价值的液体和气体产物,产率高达94%,同时还表现出优异的循环稳定性。特别是,在523 K的相对低温下,Ni-Hbeta在HDPE加氢裂化过程中表现出比NiS-Hbeta更好的催化性能。此外,Ni-Hbeta催化剂还对含有各种添加剂和污染物的未分类消费后聚烯烃塑料(HDPE、低密度聚乙烯(LDPE)、聚丙烯(PP))具有高效解聚的显著能力。这些发现强调了使用无贵金属且可回收的催化剂进行塑料废物加氢裂化的应用潜力,从而有助于实现塑料的循环经济。