Application of Zeolite in the Catalytic Cracking of Waste Vegetable Oil for the Production of highly Volatile Liquid Fuel

Princessruth Temidayo Temofeh, Temitayo Bukola Korode, Bamidele Honesty Akpeji
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Abstract

In this study, zeolite was used as a catalyst in a catalytic cracking reaction of waste cooking oil, which generates compositions similar to gasoline. This reaction was catalyzed by batch distillation of WCO in a hydrothermal reactor with zeolite catalyst synthesized using local clay sediment. The catalytic cracking was carried out under ambient conditions using 100-ml distillation apparatuses placed on a heating mantle and 50g of oil-added variable catalyst loading from 2 to 10 Wt% with zeolite as catalyst. The heating rate, residence time, and catalyst loading influenced the product yield. The physicochemical properties of the product, such as the density, the flash point, and the kinematic volumetric viscosity, were examined for fuel suitability. Chemical gas chromatography-mass spectrometry (GC-MS) determined the chemical composition of the compounds present in the cracked product. The overall study showed that the product's optimum zeolite loading, cracking temperature, and cracking rate were 8 wt%, 380 oC, and 0.0048 min-1, respectively. The study on zeolite catalytic cracking revealed that local clay synthesizes the zeolite catalyser, which is effective in WCO catalytic cracking for liquid fuel formation.
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沸石在废植物油催化裂化生产高挥发性液体燃料中的应用
在这项研究中,沸石被用作废食用油催化裂解反应的催化剂,该反应产生的成分类似于汽油。该反应是在一个水热反应器中用当地粘土沉积物合成的沸石催化剂对 WCO 进行批量蒸馏催化的。催化裂解是在环境条件下进行的,使用放置在加热钵上的 100 毫升蒸馏装置和 50 克油,催化剂负载量从 2 到 10 Wt%不等,以沸石为催化剂。加热速率、停留时间和催化剂装填量对产品产率有影响。研究了产品的物理化学特性,如密度、闪点和运动体积粘度,以确定其是否适用于燃料。化学气相色谱-质谱法(GC-MS)测定了裂解产物中存在的化合物的化学成分。总体研究表明,该产品的最佳沸石装载量、裂解温度和裂解率分别为 8 wt%、380 oC 和 0.0048 min-1。对沸石催化裂解的研究表明,当地粘土合成的沸石催化剂在 WCO 催化裂解形成液体燃料方面非常有效。
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