Direct catalytic cracking of crude oil-to-chemicals: Impact of steam catalytic cracking on petrochemicals yield

IF 5.5 Q1 ENGINEERING, CHEMICAL
Aaron C. Akah , Emad Al-Shafei , Qi Xu , Mansour AlHerz , Ziyauddin S. Qureshi , M.Abdul Bari Siddiqui , Abdullah Aitani
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引用次数: 0

Abstract

The direct catalytic cracking of crude oil to valuable petrochemicals has drawn significant attention due to its potential to streamline refinery processes as a way of reducing the carbon footprint of petrochemicals production. Petrochemicals like light olefins and BTX are essential feedstocks for the petrochemical industry. This study extends the scope of FCC technology by exploring the direct catalytic cracking of Arabian Extra Light (AXL) crude oil, using spray dried FCC-ZSM-5 modified with La and Ce oxides, in non-steam and steam conditions. The performance of the catalysts was evaluated based on the yield and selectivity of light olefins and BTX. The yield of light olefins for thermal cracking, catalytic cracking and steam catalytic cracking at 675 °C was 36.0 wt%, 43.3 wt% and 51.5 wt%, respectively. The study demonstrated that steam catalytic cracking using FCC-ZSM-5 (impregnated with 1 %La and 1 %Ce oxides) offered significant advantage over non-steam catalytic cracking. The presence of steam enhanced the conversion and shifts product distribution towards light olefins. Steam also modified the cracking mechanism by minimizing secondary reactions, reducing coke formation, and enhancing selectivity toward olefins. The findings in this study contribute to the development of efficient catalyst and process for the direct conversion of crude oil into high-value petrochemicals.
原油直接催化裂化制化学品:蒸汽催化裂化对石化产品收率的影响
原油直接催化裂化生产有价值的石化产品引起了人们的极大关注,因为它有可能简化炼油过程,减少石化产品生产的碳足迹。轻烯烃和BTX等石化产品是石化工业的重要原料。本研究通过探索在非蒸汽和蒸汽条件下,使用La和Ce氧化物改性的喷雾干燥FCC- zsm -5对阿拉伯特轻质(AXL)原油进行直接催化裂化,扩展了FCC技术的范围。以轻质烯烃和BTX的收率和选择性为指标,评价了催化剂的性能。在675℃下,热裂解、催化裂解和蒸汽催化裂解的轻烯烃收率分别为36.0%、43.3%和51.5 wt%。研究表明,使用FCC-ZSM-5(浸渍1% La和1% Ce氧化物)蒸汽催化裂化比非蒸汽催化裂化具有显著的优势。蒸汽的存在促进了转化,并使产品分布向轻烯烃转移。蒸汽还通过减少二次反应、减少焦炭形成和提高对烯烃的选择性来改变裂解机理。本研究结果为开发高效的原油直接转化为高价值石化产品的催化剂和工艺提供了依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Chemical Engineering Journal Advances
Chemical Engineering Journal Advances Engineering-Industrial and Manufacturing Engineering
CiteScore
8.30
自引率
0.00%
发文量
213
审稿时长
26 days
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