Department of Production Engineering, Faculty of Mechanical Engineering and Design, Kaunas University of Technology, LT-51424 Kaunas, Lithuania.
Lithuanian Energy Institute, Laboratory of Combustion Processes, Breslaujos 3, LT-44403 Kaunas, Lithuania.
Sci Total Environ. 2022 Oct 20;844:157150. doi: 10.1016/j.scitotenv.2022.157150. Epub 2022 Jul 5.
This research aims to study the effect of aluminum (Al) leaching pre-treatment on the catalytic pyrolysis of metallised food packaging plastics waste (MFPW). The experiments started with removal of Al from MFPW using leaching process to prepare Al-free mixed plastic waste (MPW). The catalytic pyrolysis of MPW over ZSM-5 zeolite catalyst was carried out using thermogravimetric (TG) analysis coupled with FTIR, while GC-MS was used to observe the compounds of the volatile products. The catalytic pyrolysis kinetic behaviour of MPW was studied using the linear and nonlinear isoconversional approaches. The elemental and proximate results showed that MPW is very rich in carbon elements (79 %) and volatile content (99 %). The TG results showed that MPW and ZSM/MPW were fully decomposed in the range of 376-496 °C without any presence of char. Based on TG-FTIR analysis, methane and carboxylic acid residue were the main groups of the synthesized volatile products, whereas nitrous oxide, 1-Butanol, 1-Propene, acetic acid, and formic acid were the major GC compounds. In case of ZSM/MPW, carbon dioxide and acetic acid were the major GC compounds at 5-25 °C/min, triphenylphosphine oxide and Phosphine oxide at 30 °C/min. The kinetic analysis showed that when the activation energies are located in the range 287-297 kJ/mol (MPW) and 153-187 kJ/mol (ZSM/MPW) and KAS, Vyazovkin, and Cai methods are the most suitable models to study pyrolysis kinetic of MPW with R > 89. Based on that, leaching and catalytic pyrolysis processes are a highly suggested technology that can be used to convert MFPW into high-added energy and chemical products.
本研究旨在研究铝(Al)浸出预处理对金属化食品包装塑料废物(MFPW)催化热解的影响。实验首先采用浸出工艺从 MFPW 中去除 Al,制备不含 Al 的混合塑料废物(MPW)。使用热重(TG)分析与傅里叶变换红外光谱(FTIR)联用,对 MPW 在 ZSM-5 沸石催化剂上的催化热解进行了研究,而 GC-MS 则用于观察挥发性产物的化合物。使用线性和非线性等转化率方法研究了 MPW 的催化热解动力学行为。元素和近似结果表明,MPW 中富含碳元素(79%)和挥发性物质(99%)。TG 结果表明,MPW 和 ZSM/MPW 在 376-496°C 的范围内完全分解,没有任何炭残留。基于 TG-FTIR 分析,甲烷和羧酸残留物是合成挥发性产物的主要基团,而氧化亚氮、1-丁醇、1-丙烯、乙酸和甲酸是主要的 GC 化合物。对于 ZSM/MPW,在 5-25°C/min 时,二氧化碳和乙酸是主要的 GC 化合物,在 30°C/min 时,三苯基氧化膦和氧化膦是主要的 GC 化合物。动力学分析表明,当活化能位于 287-297 kJ/mol(MPW)和 153-187 kJ/mol(ZSM/MPW)范围内,以及 KAS、Vyazovkin 和 Cai 方法时,最适合用于研究 MPW 热解动力学,R>89。在此基础上,浸出和催化热解工艺是一种很有前途的技术,可以将 MFPW 转化为高附加值的能源和化工产品。