油页岩催化热解制备高价值单环芳烃

IF 5.6 2区 工程技术 Q2 ENERGY & FUELS
Zhaoyang Ren , Jian-Zheng Su , Junjie Wang , Xiang-Long Meng , Guangwei Geng , Guojing Xu , Zhenpeng Wang , Penglei Chen
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引用次数: 0

摘要

储量有限的传统化石资源的迅速枯竭,强烈要求为生产一芳烃(MAHs),特别是苯、甲苯、二甲苯(BTX)等甲基苯开辟新的路线。这类产品是前15大大宗石化产品之一,占石化产品的30%。本文以硫酸酸化γ-氧化铝催化剂为例,报道了油页岩(OS)这一储量巨大的战略性非常规化石资源的催化热解研究成果。研究发现,在OS热解过程中引入硫酸化γ-氧化铝后,生成的类石油燃料(PLFs)中MAHs的含量增加了275.0%,其中甲基苯、BTX和二甲苯的含量分别增加了232.1%、443.8%和1220.0%。催化剂对热解产物质量有明显改善作用,其中杂原子化合物和烃类的含量分别下降31.5%和51.2%,短链和长链烃类的含量分别上升82.4%和下降81.0%。此外,吡咯和噻吩的含量分别增加了253.8%和75.9%。吡咯和噻吩通常是plf不需要的物质,但它们是有价值的杂环芳烃,广泛用于许多重要的工业/科学领域的原料。结果表明,我们的硫酸化γ-氧化铝的Brønsted酸的浓度和强度分别大于其Lewis酸的浓度和强度,因此它们的协同竞争作用赋予了它迷人的催化属性。我们的工作可能为制造mah提供新的机会,并可能为设计性能更令人满意的复杂催化剂提供指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High-value monocyclic aromatic hydrocarbons produced by a catalytic pyrolysis of oil shale
The expeditious exhaustion of conventional fossil resources of limited reserves strongly calls for new routes for the manufacture of monoaromatic hydrocarbons (MAHs), especially methyl-benzenes such as benzene, toluene, xylene (BTX), which are amongst the top 15 commodity petrochemicals and account for 30% of petrochemical products. Taking sulfated γ-alumina catalyst as a proof-of-concept example, we herein report our efforts via a catalyst-assisted pyrolysis of oil shale (OS), which is strategic unconventional fossil resources of huge reserves. We find that upon introduction of sulfated γ-alumina into OS pyrolyses, the MAHs proportion in the as-produced petroleum-like fuels (PLFs) increases by 275.0%, where the content of methyl-benzenes, BTX and xylene increases by 232.1%, 443.8% and 1220.0%, respectively. Besides, the catalyst could promote evident improvements in pyrolyzates quality, where the respective content of heteroatomic compounds and hydrocarbons displays 31.5% decrease and 51.2% increase, and the respective proportion of short-chain and long-chain hydrocarbons exhibits 82.4% rise and 81.0% drop. Moreover, the content of pyrroles and thiophenes, which are usually undesired species for PLFs, but are valuable heterocyclic aromatics widely used as feedstocks in numerous important industrial/scientific fields, is enriched by 253.8% and 75.9%, respectively. It is unveiled that the concentration and strength of the Brønsted acids of our sulfated γ-alumina are respectively larger and stronger than those of its Lewis acids such that their collaborate-competition actions confer it with fascinating catalytic attributes. Our work likely launches new opportunities for manufacturing MAHs, and it might provide guidance for designing sophisticated catalyst of much more satisfactory performances.
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来源期刊
Journal of The Energy Institute
Journal of The Energy Institute 工程技术-能源与燃料
CiteScore
10.60
自引率
5.30%
发文量
166
审稿时长
16 days
期刊介绍: The Journal of the Energy Institute provides peer reviewed coverage of original high quality research on energy, engineering and technology.The coverage is broad and the main areas of interest include: Combustion engineering and associated technologies; process heating; power generation; engines and propulsion; emissions and environmental pollution control; clean coal technologies; carbon abatement technologies Emissions and environmental pollution control; safety and hazards; Clean coal technologies; carbon abatement technologies, including carbon capture and storage, CCS; Petroleum engineering and fuel quality, including storage and transport Alternative energy sources; biomass utilisation and biomass conversion technologies; energy from waste, incineration and recycling Energy conversion, energy recovery and energy efficiency; space heating, fuel cells, heat pumps and cooling systems Energy storage The journal''s coverage reflects changes in energy technology that result from the transition to more efficient energy production and end use together with reduced carbon emission.
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