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Evaluation of process parameters on high-density polyethylene hydro-liquefaction products

机译:高密度聚乙烯加氢液化产品工艺参数评估

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The hydro-liquefaction of high-density polyethylene (HDPE) was studied in the absence of a solvent. The influence of reaction temperature (400-440 degrees C), initial H-2 pressure (1-4 MPa), and reaction time (2-6 h) on the product was investigated using Ni/Al2O3 as a catalyst. Results showed that increased reaction temperature and time promoted hydrocarbon cracking, thereby favoring the enhancement of C7-C16 selectivity, whereas the high initial H-2 pressure (4 MPa) preferentially facilitated the production of C17-C27 hydrocarbons and improved alkene hydrogenation. The effect of catalyst support (Al2O3, SAPO-11, and HZSM-5) was also examined. Al2O3 presented the highest liquid yield because of its weak acidity, with the liquid product dominated by n-alkanes (78.88%), whereas the yield of the liquid obtained from HZSM-5 as a catalyst support was the lowest, and aromatics was the major component (56.75%). SAPO-11 exhibited excellent selectivity for iso-alkanes, which improved the quality of the liquid oil. Meanwhile, liquid oil obtained using SAPO-11 was compliant with commercial jet-fuel standards and can be directly used as a jet-fuel additive. From this perspective, the hydroliquefaction is a technology with potential for energy recovery from waste plastic.
机译:在没有溶剂的情况下研究了高密度聚乙烯(HDPE)的加氢液化。使用Ni / Al2O3作为催化剂,研究了反应温度(400-440摄氏度),初始H-2压力(1-4 MPa)和反应时间(2-6 h)对产物的影响。结果表明,增加反应温度和时间可促进烃裂解,从而有利于提高C7-C16选择性,而较高的初始H-2压力(4 MPa)则优先促进C17-C27烃的生产并改善烯烃的加氢反应。还检查了催化剂载体(Al2O3,SAPO-11和HZSM-5)的作用。 Al2O3由于其弱酸性而表现出最高的液体收率,其液体产物以正构烷烃为主(78.88%),而以HZSM-5为催化剂载体的液体的收率最低,而芳烃是主要的成分(56.75%)。 SAPO-11对异烷烃显示出极好的选择性,从而提高了液体油的质量。同时,使用SAPO-11获得的液态油符合商业喷气燃料标准,可以直接用作喷气燃料添加剂。从这个角度来看,加氢液化是一种有潜力从废塑料中回收能量的技术。

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