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Ce 负载 HZSM-5 复合催化剂用于藻类水解油的催化脱氧转化为烃类和含氧化合物。

Ce-Loaded HZSM-5 Composite for Catalytic Deoxygenation of Algal Hydrolyzed Oil into Hydrocarbons and Oxygenated Compounds.

机构信息

Department of Chemical Engineering, School of Chemical and Energy Engineering, Universiti Teknologi Malaysia, Johor Bahru 81310, Malaysia.

Chemical Engineering Department, College of Engineering, University of Al-Qadisiyah, Al-Diwaniyah City P.O. Box 88, Iraq.

出版信息

Molecules. 2022 Oct 25;27(21):7251. doi: 10.3390/molecules27217251.

Abstract

Despite the extensive research into the catalytic uses of zeolite-based catalysts, these catalysts have a limited useful lifetime because of the deactivating effect of coke production. This study looks at the use of Cerium (Ce) loaded HZSM-5 zeolite catalysts in the hydrocarbon and oxygenated chemical conversion from Chlorella Vulgaris microalgae crude oil. Characterization of structure, morphology, and crystallinity was performed after the catalysts were manufactured using the impregnation technique. Soxhlet extraction was carried out to extract the crude oil of microalgae. Transesterification reaction was used to produce algal hydrolyzed oil (HO), and the resulting HO was put to use in a batch reactor at 300 °C, 1000 rpm, 7 bars of nitrogen pressure, a catalyst to the algal HO ratio of 15% (wt. %), and a retention time of 6 h. To determine which Ce-loaded HZSM-5 catalysts would be most effective in converting algal HO into non-oxygenated molecules (hydrocarbons), we conducted a series of tests. Liquid product characteristics were analyzed for elemental composition, higher heating value (HHV), atomic ratios of O/C and H/C, and degree of deoxygenation (DOD%). Results were categorized into three groups: product yield, chemical composition, and carbon number distribution. When Cerium was added to HZSM-5 zeolite at varying loading percentages, the zeolite's acid sites became more effective in facilitating the algal HO conversion. The results showed that 10%Ce/HZSM-5 had the greatest conversion of the algal HO, the yield of hydrocarbons, HHV, and DOD% (98.2%, 30%, 34.05 MJ/Kg, and 51.44%, respectively) among all the synthesized catalysts in this research. In conclusion, the physical changes seen in the textural characteristics may be attributed to Cerium-loading on the parent HZSM-5; nevertheless, there is no direct association between the physical features and the hydrocarbons yield (%). The primary impact of Cerium alteration of the parent HZSM-5 zeolite was to change the acidic sites required to boost the conversion (%) of the algal HO in the catalytic deoxygenation process, which in turn increased the hydrocarbons yield (%), which in turn increased the HHV and DOD%.

摘要

尽管对沸石基催化剂的催化用途进行了广泛的研究,但由于焦炭生成的失活作用,这些催化剂的有用寿命有限。本研究探讨了负载铈(Ce)的 HZSM-5 沸石催化剂在微藻原油中烃类和含氧化学品转化中的应用。在使用浸渍技术制造催化剂后,对结构、形态和结晶度进行了表征。使用索氏提取法提取微藻原油。进行酯交换反应以生产藻水解油(HO),并将所得 HO 在 300°C、1000 rpm、7 巴氮气压力、催化剂与藻 HO 比例为 15%(wt.%)和保留时间为 6 h 的间歇式反应器中使用。为了确定负载铈的 HZSM-5 催化剂中哪一种最有效地将藻 HO 转化为非含氧分子(烃类),我们进行了一系列测试。分析了液体产物的元素组成、高位发热值(HHV)、O/C 和 H/C 原子比以及脱氧度(DOD%)。结果分为三组:产物收率、化学组成和碳数分布。当铈以不同的负载百分比添加到 HZSM-5 沸石中时,沸石的酸位变得更有效地促进藻 HO 的转化。结果表明,在所有合成催化剂中,10%Ce/HZSM-5 对藻 HO 的转化率最高,烃类的产率、HHV 和 DOD%(分别为 98.2%、30%、34.05 MJ/Kg 和 51.44%)。总之,在本研究中,在所研究的所有合成催化剂中,10%Ce/HZSM-5 对藻 HO 的转化率最高,烃类的产率、HHV 和 DOD%(分别为 98.2%、30%、34.05 MJ/Kg 和 51.44%)。总之,在本研究中,在所研究的所有合成催化剂中,10%Ce/HZSM-5 对藻 HO 的转化率最高,烃类的产率、HHV 和 DOD%(分别为 98.2%、30%、34.05 MJ/Kg 和 51.44%)。总之,在本研究中,在所研究的所有合成催化剂中,10%Ce/HZSM-5 对藻 HO 的转化率最高,烃类的产率、HHV 和 DOD%(分别为 98.2%、30%、34.05 MJ/Kg 和 51.44%)。

文本中的物理变化可能归因于 Ce 对母体 HZSM-5 的负载;然而,物理特征与烃类产率(%)之间没有直接关联。Ce 对母体 HZSM-5 沸石的改变主要影响了催化脱氧过程中所需的酸性位,从而提高了藻 HO 的转化率(%),进而提高了烃类产率(%),进而提高了 HHV 和 DOD%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ea6/9658450/f68f09ea0e1e/molecules-27-07251-g001.jpg

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