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作为生物喷气燃料生产有前景的替代原料的油类的溶剂萃取与表征。

Solvent extraction and characterization of oils as promising alternative feedstock for bio-jet fuel production.

作者信息

Redda Zinnabu Tassew, Laß-Seyoum Asnakech, Yimam Abubeker, Barz Mirko, Jabasingh S Anuradha

机构信息

School of Chemical and Bio Engineering, Addis Ababa Institute of Technology, Addis Ababa University, King George VI St., P.O. Box 385, Addis Ababa, Ethiopia.

Faculty I, University of Applied Sciences (HTW) Berlin, Wilhelminenhofstraße 75A, 12459 Berlin, Germany.

出版信息

Biomass Convers Biorefin. 2022 Nov 10:1-20. doi: 10.1007/s13399-022-03343-x.

Abstract

As a fossil fuel substitute, bio-jet fuel derived from inedible oilseed crops has the potential to improve energy security, decrease carbon footprint, and promote agricultural economy and social development. The efficient production of bio-jet fuels depends on the identification and characterization of eco-friendly and sustainable feedstocks. (Arun Braun) cultivars are among the most significant industrial oilseeds that can be utilized as alternative feedstocks in the aviation industry. The study thoroughly evaluated four non-food cultivars that are indigenous to Ethiopia to determine their suitability as substitute feedstocks for the production of bio-jet fuel. The effects of solvent extraction parameters were studied using response surface methodology with Box-Behnken design in an isothermal batch reactor. Physicochemical characterization, fatty acids profiling, ultimate analysis, analysis of metals and phosphorus concentration, Fourier-transform infrared spectroscopy characterization, and calorific value analyses were performed to characterize the properties of oils. Accordingly, oil yields ranged from 35.93 to 45.25%. Erucic acid (EA) was the most predominant fatty acid in all oils, accounting for 42-50%, of Derash and Yellow Dodolla oils, respectively, making Yellow Dodolla oil a super-high erucic acid oil. In comparison to the other oils, Yellow Dodolla was observed to be the least oxygenated oil, with a 7.80% oxygen content and oxygen to carbon ratio of 0.07, which may enable it to consume a very limited amount of hydrogen gas during hydrodeoxygenation in bio-jet fuel production. It was determined that, except for calcium and phosphorous levels in Tesfa, the concentrations of the metals and phosphorous were very small. Alkanes, alkenes, carboxylic acids, esters, alcohols, aromatics, and olefins were among the most significant and main functional groups identified. Our extraction and characterization results revealed that the cultivars have very high oil contents, better physicochemical properties, excellent fatty acid profiles, and very low concentrations of heteroatoms (nitrogen, sulfur), metals and phosphorous concentrations, and very low level of oxygen to carbon ratios, making the oils, notably Yellow Dodolla oil, very high quality and promising alternative feedstocks for upgrading of the oils into bio-jet fuels through hydroprocessing pathway.

摘要

作为一种化石燃料替代品,源自不可食用油籽作物的生物喷气燃料有潜力提高能源安全性、减少碳足迹,并促进农业经济和社会发展。生物喷气燃料的高效生产取决于对生态友好且可持续的原料的识别与表征。(阿伦·布劳恩)品种是最重要的工业用油籽之一,可作为航空业的替代原料。该研究全面评估了四种原产于埃塞俄比亚的非食用品种,以确定它们作为生产生物喷气燃料替代原料的适用性。在等温间歇反应器中,采用Box-Behnken设计的响应面方法研究了溶剂萃取参数的影响。进行了物理化学表征、脂肪酸谱分析、元素分析、金属和磷浓度分析、傅里叶变换红外光谱表征以及热值分析,以表征油的性质。相应地,出油率在35.93%至45.25%之间。芥酸(EA)是所有油中最主要的脂肪酸,分别占德拉萨油和黄多多拉油的42% - 50%,使黄多多拉油成为一种超高芥酸油。与其他油相比,黄多多拉油被观察到是含氧量最低的油,氧含量为7.80%,氧碳比为0.07,这可能使其在生物喷气燃料生产的加氢脱氧过程中消耗非常有限的氢气量。已确定,除了特斯法中的钙和磷含量外,金属和磷的浓度非常低。烷烃、烯烃、羧酸、酯、醇、芳烃和烯烃是所识别出的最重要和主要的官能团。我们的萃取和表征结果表明,这些品种的油含量非常高,具有较好的物理化学性质、优异的脂肪酸谱,并且杂原子(氮、硫)、金属和磷的浓度非常低,氧碳比也很低,这使得这些油,特别是黄多多拉油,成为通过加氢处理途径将油升级为生物喷气燃料的非常优质且有前景的替代原料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02b6/9648429/b87777042277/13399_2022_3343_Fig1_HTML.jpg

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