Zhao Baishun, Wang Chuansheng, Bian Huiguang
College of Electromechanical Engineering, Qingdao University of Science and Technology, Qingdao 266061, China.
State Key Laboratory of High Performance Complex Manufacturing and School of Mechanical and Electrical Engineering, Central South University, Changsha 410083, China.
Polymers (Basel). 2021 Aug 15;13(16):2732. doi: 10.3390/polym13162732.
Spent fluid catalytic cracking catalysts (FCC catalysts) produced by the petrochemical industry are considered to be environmentally hazardous waste, and precious metals and heavy metals deposited on the surface make them difficult to treat. Even so, these catalysts retain some of their activity. The pyrolysis of waste tires is considered to be one of the most effective ways to solve the fossil fuel resource crisis, and this study attempts to catalyze the pyrolysis of waste tires using spent catalysts to increase the value of both types of waste. FCC catalysts reduced the activation energy () of waste tire pyrolysis. When the catalyst dosage was 30 wt.%, the of tread rubber decreased from 238.87 kJ/mol to 181.24 kJ/mol, which was a 19.94% reduction. The of the inner liner decreased from 288.03 kJ/mol to 209.12 kJ/mol, a 27.4% reduction. The spent catalyst was more effective in reducing the and solid yield of the inner liner made of synthetic rubber. It should be emphasized that an appropriate increase in the heating rate can fully exert the selectivity of the catalyst. The catalyst could also be effectively used twice, and the optimum ratio of catalyst/waste tires was about 1/4.5. Compared with specially prepared catalysts, it is more cost-effective to use such wastes as a catalyst for waste tire pyrolysis.
石油化工行业产生的废流化催化裂化催化剂(FCC催化剂)被视为对环境有害的废物,沉积在其表面的贵金属和重金属使其难以处理。即便如此,这些催化剂仍保留了部分活性。废轮胎热解被认为是解决化石燃料资源危机的最有效方法之一,本研究尝试用废催化剂催化废轮胎热解,以提高这两种废物的价值。FCC催化剂降低了废轮胎热解的活化能()。当催化剂用量为30 wt.%时,胎面胶的活化能从238.87 kJ/mol降至181.24 kJ/mol,降低了19.94%。内衬层的活化能从288.03 kJ/mol降至209.12 kJ/mol,降低了27.4%。废催化剂在降低由合成橡胶制成的内衬层的活化能和固体产率方面更有效。应当强调的是,适当提高加热速率可以充分发挥催化剂的选择性。该催化剂还可以有效使用两次,催化剂与废轮胎的最佳比例约为1/4.5。与特制催化剂相比,使用此类废物作为废轮胎热解的催化剂更具成本效益。