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调整 ZSM-5 添加剂的形态和结构性质,用于废塑料与减压瓦斯油共裂解制取轻烯烃。

Tuning the morphology and textural properties of ZSM-5 additive for co-cracking of waste plastics with vacuum gas oil to light olefins.

机构信息

Interdisciplinary Research Center for Refining and Advanced Chemicals, Research Institute, King Fahd University of Petroleum and Minerals, Dhahran 31261, Saudi Arabia.

Interdisciplinary Research Center for Refining and Advanced Chemicals, Research Institute, King Fahd University of Petroleum and Minerals, Dhahran 31261, Saudi Arabia.

出版信息

Waste Manag. 2024 Dec 1;189:254-264. doi: 10.1016/j.wasman.2024.08.028. Epub 2024 Aug 30.

Abstract

Typical cracking catalysts, called equilibrium catalyst (E-Cat) are ultra-stable Y (USY) zeolite often used with 15% commercial ZSM-5 zeolite additive (ZSM-5(COM)) to boost olefin yield. In this study, similar additive zeolites with different pore sizes and acidic character were synthesized by rapid ageing of precursor solution and used in the co-cracking of low-density polyethylene (LDPE) and heavy vacuum gas oil (HVGO). Three ZSM-5 zeolites additives with Si/Al ratio 25 (ZSM-5(25)), 50 (ZSM-5(50)) and 75 (ZSM-5(75)) were synthesized and combined with E-Cat to form E-Cat/ZSM-5(25), E-Cat/ZSM-5(50) and E-Cat/ZSM-5(75) respectively. The E-Cat/ZSM-5(50) has slightly better endothermic conversion (cracking) of a mixture of dissolved LDPE and HVGO into H, C to C gases and C-C light olefins (total conversion of E-Cat 80.0%, E-Cat/ZSM-5(COM) 75.0% and E-Cat/ZSM-5(50) 83.7% respectively), with different gas, liquid and coke distributions. The E-Cat/ZSM-5(75) has 81% conversion, and highest yield of light olefins (38.4%). Structural (surface area, pore size) and chemical (acid sites) characteristics of the synthetized ZSM-5(75) zeolite explain the observed higher light olefin selectivity by different and competing catalytic routes. The ZSM-5(75) has demonstrated to be a good zeolite additive for converting dissolved plastic in HVGO into light olefins.

摘要

典型的裂化催化剂,称为平衡催化剂(E-Cat),是一种超稳定的 Y(USY)沸石,通常与 15%的商业 ZSM-5 沸石添加剂(ZSM-5(COM))一起使用,以提高烯烃产率。在这项研究中,通过快速老化前体溶液合成了具有不同孔径和酸性特征的类似添加剂沸石,并将其用于低密度聚乙烯(LDPE)和重真空瓦斯油(HVGO)的共裂化。合成了三种 Si/Al 比为 25(ZSM-5(25))、50(ZSM-5(50))和 75(ZSM-5(75))的 ZSM-5 沸石添加剂,并分别与 E-Cat 结合形成 E-Cat/ZSM-5(25)、E-Cat/ZSM-5(50)和 E-Cat/ZSM-5(75)。E-Cat/ZSM-5(50) 对溶解的 LDPE 和 HVGO 混合物的吸热转化(裂化)略有更好,生成 H、C 至 C 气体和 C-C 轻烯烃(E-Cat 的总转化率为 80.0%,E-Cat/ZSM-5(COM)为 75.0%,E-Cat/ZSM-5(50)为 83.7%),具有不同的气体、液体和焦炭分布。E-Cat/ZSM-5(75) 的转化率为 81%,轻烯烃的产率最高(38.4%)。合成的 ZSM-5(75)沸石的结构(表面积、孔径)和化学(酸位)特性解释了通过不同的竞争催化途径观察到的更高的轻烯烃选择性。ZSM-5(75) 已被证明是一种将 HVGO 中溶解的塑料转化为轻烯烃的良好沸石添加剂。

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