Barzallo Diego, Lazo Rafael, Medina Carlos, Guashpa Carlos, Tacuri Carla, Palmay Paúl
Facultad Ciencias e Ingeniería, Universidad Estatal de Milagro, Milagro 091050, Ecuador.
Department of Chemistry, University of Balearic Islands, Cra. Valldemossa 7.5 km, 07122 Palma de Mallorca, Spain.
Polymers (Basel). 2023 Aug 8;15(16):3329. doi: 10.3390/polym15163329.
Currently, catalytic pyrolysis has become a versatile and highly useful technology in the treatment of different plastic wastes. Thus, the development of selective catalysts to carry out cracking reactions and obtain a greater fraction of the desired products is essential. This study focuses on the synthesis of monometallic (Ni) and bimetallic (Ni-Zn) catalysts supported on ZSM-5 zeolite using an impregnation and co-impregnation method, respectively. The obtained catalysts were characterized by FTIR spectroscopy, N adsorption/desorption measurements, scanning electron microscopy (SEM) and energy dispersive X-Ray spectroscopy (EDS), temperature programmed NH desorption (TPD-NH) and thermogravimetric analysis (TGA). In this way, a mixture of polystyrene and polypropylene recycled with a catalyst/plastic waste ratio of 1:500 was used for pyrolysis tests. The best results were obtained using the Ni-Zn/ZSM-5 catalyst, which included better impregnation, increased surface acidity, decreased dispersion and a shorter reaction time in the catalytic pyrolysis process. Under the optimized conditions, catalytic pyrolysis showed an excellent performance to generate hydrocarbons of greater industrial interest.
目前,催化热解已成为处理不同塑料废物的一种通用且非常有用的技术。因此,开发用于进行裂解反应并获得更大比例所需产物的选择性催化剂至关重要。本研究分别采用浸渍法和共浸渍法,重点研究了负载在ZSM-5沸石上的单金属(Ni)和双金属(Ni-Zn)催化剂的合成。通过傅里叶变换红外光谱(FTIR)、N吸附/脱附测量、扫描电子显微镜(SEM)和能量色散X射线光谱(EDS)、程序升温NH脱附(TPD-NH)和热重分析(TGA)对所得催化剂进行了表征。通过这种方式,使用催化剂/塑料废物比为1:500的聚苯乙烯和聚丙烯混合物进行热解试验。使用Ni-Zn/ZSM-5催化剂获得了最佳结果,该催化剂在催化热解过程中具有更好的浸渍效果、增加的表面酸度、降低的分散性和更短的反应时间。在优化条件下,催化热解在生成更具工业价值的烃类方面表现出优异的性能。