Terry Liza Melia, Wee Melvin Xin Jie, Chew Jiuan Jing, Khaerudini Deni Shidqi, Darsono Nono, Aqsha Aqsha, Saptoro Agus, Sunarso Jaka
Research Centre for Sustainable Technologies, Faculty of Engineering, Computing and Science, Swinburne University of Technology, Jalan Simpang Tiga, 93350, Kuching, Sarawak, Malaysia.
Department of Chemical and Energy Engineering, Curtin University Malaysia, CDT 250, Miri, Sarawak, 98009, Malaysia.
Environ Res. 2023 May 1;224:115550. doi: 10.1016/j.envres.2023.115550. Epub 2023 Feb 24.
Pyrolysis oil from oil palm biomass can be a sustainable alternative to fossil fuels and the precursor for synthesizing petrochemical products due to its carbon-neutral properties and low sulfur and nitrogen content. This work investigated the effect of applying mesoporous acidic catalysts, Ni-Mo/TiO and Ni/AlO in a catalytic co-pyrolysis of oil palm trunk (OPT) and polypropylene (PP) from 500 to 700 °C. The obtained oil yields varied between 12.67 and 19.50 wt.% and 12.33-17.17 wt.% for Ni-Mo/TiO and Ni/AlO, respectively. The hydrocarbon content in oil significantly increased up to 54.07-58.18% and 37.28-68.77% after adding Ni-Mo/TiO and Ni/AlO, respectively. The phenolic compounds content was substantially reduced to 8.46-20.16% for Ni-Mo/TiO and 2.93-14.56% for Ni/AlO. Minor reduction in oxygenated compounds was noticed from catalytic co-pyrolysis, though the parametric effects of temperature and catalyst type remain unclear. The enhanced deoxygenation and cracking of phenolic and oxygenated compounds and the PP decomposition resulted in increased hydrocarbon production in oil during catalytic co-pyrolysis. Catalyst addition also promoted the isomerization and oligomerization reactions, enhancing the formation of cyclic relative to aliphatic hydrocarbon.
由于具有碳中性特性以及低硫和低氮含量,油棕生物质热解油可以成为化石燃料的可持续替代品以及合成石化产品的前体。本研究考察了在500至700°C下,应用介孔酸性催化剂Ni-Mo/TiO₂和Ni/Al₂O₃对油棕树干(OPT)和聚丙烯(PP)进行催化共热解的效果。对于Ni-Mo/TiO₂和Ni/Al₂O₃,获得的油产率分别在12.67至19.50 wt.%和12.33 - 17.17 wt.%之间。添加Ni-Mo/TiO₂和Ni/Al₂O₃后,油中的烃含量分别显著增加至54.07 - 58.18%和37.28 - 68.77%。酚类化合物含量大幅降低,对于Ni-Mo/TiO₂为8.46 - 20.16%,对于Ni/Al₂O₃为2.93 - 14.56%。尽管温度和催化剂类型的参数效应仍不明确,但催化共热解使含氧化合物略有减少。酚类和含氧化合物的脱氧和裂解增强以及PP的分解导致催化共热解过程中油中烃产量增加。添加催化剂还促进了异构化和低聚反应,相对于脂肪烃增强了环状烃的形成。