A new approach for bio-jet fuel generation from palm oil and limonene in the absence of hydrogen

被引:47
作者
Zhang, Jingjing [1 ]
Zhao, Chen [1 ]
机构
[1] E China Normal Univ, Sch Chem & Mol Engn, Shanghai Key Lab Green Chem & Chem Proc, Shanghai 200062, Peoples R China
基金
中国国家自然科学基金;
关键词
CATALYTIC DEOXYGENATION; MICROALGAE OIL; RANGE ALKANES; BIOMASS; HYDROCARBONS; CONVERSION; MOLECULES;
D O I
10.1039/c5cc06601h
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The traditional methodology includes a carbon-chain shortening strategy to produce bio-jet fuel from lipids via a two-stage process with hydrogen. Here, we propose a new solution using a carbon-chain filling strategy to convert C-10 terpene and lipids to jet fuel ranged hydrocarbons with aromatic hydrocarbon ingredients in the absence of hydrogen.
引用
收藏
页码:17249 / 17252
页数:4
相关论文
共 49 条
[41]   Hydrogen and power generation via integrated bio-oil sorption-enhanced steam reforming and solid oxide fuel cell systems: Economic feasibility analysis [J].
Wiranarongkorn, Kunlanan ;
Patcharavorachot, Yaneeporn ;
Panpranot, Joongjai ;
Assabumrungrat, Suttichai ;
Arpornwichanop, Amornchai .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2021, 46 (20) :11482-11493
[42]   The three-compartment microbial fuel cell: a new sustainable approach to bioelectricity generation from lignocellulosic biomass [J].
Krishnaraj, R. Navanietha ;
Berchmans, Sheela ;
Pal, Parimal .
CELLULOSE, 2015, 22 (01) :655-662
[43]   Refinery approach of bio-oils derived from fast pyrolysis of lignin to jet fuel range hydrocarbons: Reaction network development for catalytic conversion of cyclohexanone [J].
Saidi, Majid ;
Jahangiri, Alireza .
CHEMICAL ENGINEERING RESEARCH & DESIGN, 2017, 121 :393-406
[44]   Unveiling the role of Pd-Ni @ 2D/3D catalyst for the production of Bio-Jet (A) fuel analogues from biomass-derived compound: Multi-parameter optimization and kinetic-thermodynamic investigation [J].
Sekar, Deepika ;
Arumugam, Pandurangan ;
Roman, Tschentscher .
ENERGY, 2025, 316
[45]   Aromatic Hydrocarbon Generation from a Simulated Bio-oil Fraction by Dual-stage Hydrogenation-cracking: Hydrogen Supply and Transfer Behaviors [J].
Cai, Qinjie ;
Xu, Jia ;
Zhang, Suping ;
Wang, Shurong .
BIORESOURCES, 2017, 12 (03) :5174-5195
[46]   Sustainable synthesis of bio-diesel and jet-fuel range hydrocarbons from poisonous Abrus Precatorius seed oil over MoO3-HPW/Ga-KIT-6 [J].
Gunasekaran, Vijayakumar ;
Gurusamy, Harichandran ;
Ravi, Ganesan ;
Rathinam, Yuvakkumar .
RENEWABLE ENERGY, 2024, 224
[47]   Innovative hydrogen production from waste bio-oil via steam methane reforming: An advanced ANN-AHP-k-means modelling approach using extreme machine learning weighted clustering [J].
Khan, Faisal ;
Khan, Osama ;
Parvez, Mohd ;
Almujibah, Hamad ;
Pachauri, Praveen ;
Yahya, Zeinebou ;
Ahamad, Taufique ;
Yadav, Ashok Kumar ;
Agbulut, Umit .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2025, 105 :1080-1091
[48]   In-situ hydrogen generation from 1,2,3,4-tetrahydronaphthalene for catalytic conversion of oleic acid to diesel fuel hydrocarbons: Parametric studies using Response Surface Methodology approach [J].
Cheah, Kin Wai ;
Yusup, Suzana ;
Kyriakou, Georgios ;
Ameen, Mariam ;
Taylor, Martin J. ;
Nowakowski, Daniel J. ;
Bridgwater, Anthony, V ;
Uemura, Yoshimitsu .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2019, 44 (37) :20678-20689
[49]   New insights into secondary gas generation from the thermal cracking of oil: Methylated monoaromatics. A kinetic approach using 1,2,4-trimethylbenzene. Part III: An isotopic fractionation model [J].
Fusetti, Luc ;
Behar, Francoise ;
Lorant, Francois ;
Grice, Kliti ;
Derenne, Sylvie .
ORGANIC GEOCHEMISTRY, 2010, 41 (05) :431-436