Facile biphasic catalytic process for conversion of monoterpenoids to tricyclic hydrocarbon biofuels

被引:3
|
作者
Shaoqu Xie [1 ]
Trong H.Huynh [1 ]
Peiyong Qin [2 ]
Tianwei Tan [2 ]
Hongfei Lin [1 ]
机构
[1] The Gene and Linda Voiland School of Chemical Engineering and Bioengineering, Washington State University
[2] National Energy Research and Development Center for Biorefinery, Beijing University of Chemical Technology
关键词
D O I
暂无
中图分类号
TQ517.2 [人造燃料、合成燃料]; TQ426 [催化剂(触媒)];
学科分类号
080502 ; 0817 ; 081705 ;
摘要
Terpenoids have drawn much attention to scientists in synthesizing high-performance bio-jet fuels due to their ring structures, which feature potential high densities. Here, a facile biphasic catalytic process has been developed for the production of high-density tricyclic hydrocarbon biofuels from a monoterpenoid,1,8-cineole, using sulfuric acid(H2 SO4) as the homogeneous catalyst. A ~100% conversion of 1,8-cineole and a > 40% carbon yield of cyclic dimers were achieved at 100 ℃ within two hours. The mechanism for the acid-catalyzed conversion of 1,8-cineole to cyclic hydrocarbon dimers were explored. In particular, the formation of the diene intermediates and the following dimerization of dienes was essential to synthesize tricyclic terpene dimers. The biphasic catalytic process accelerated the deoxygenation rate and enabled the dimerization with the aid of organic solvent while controlling the reaction rates to avoid the formation of solid residues. Moreover, this process also facilitated the product separation by organic solvent extraction while enabling easy recycle of the homogenous catalysts.
引用
收藏
页码:42 / 50
页数:9
相关论文
共 50 条
  • [31] Catalytic conversion of Chlorella pyrenoidosa to biofuels in supercritical alcohols over zeolites
    Yang, Le
    Ma, Rui
    Ma, Zewei
    Li, Yongdan
    BIORESOURCE TECHNOLOGY, 2016, 209 : 313 - 317
  • [32] Heterogeneous Catalytic Conversion of Terpenes into Biofuels: An Open Pathway to Sustainable Fuels
    Lapuerta, Magin
    Tobio-Perez, Indira
    Ortiz-Alvarez, Marianela
    Donoso, David
    Canoira, Laureano
    Piloto-Rodriguez, Ramon
    ENERGIES, 2023, 16 (06)
  • [33] A process economic assessment of hydrocarbon biofuels production using chemoautotrophic organisms
    Khan, Nymul E.
    Myers, John A.
    Tuerk, Amalie L.
    Curtis, Wayne R.
    BIORESOURCE TECHNOLOGY, 2014, 172 : 201 - 211
  • [34] Highly efficient conversion of terpenoid biomass to jet-fuel range cycloalkanes in a biphasic tandem catalytic process
    Yang, Xiaokun
    Li, Teng
    Tang, Kan
    Zhou, Xinpei
    Lu, Mi
    Ounkham, Whalmany L.
    Spain, Stephen M.
    Frost, Brian J.
    Lin, Hongfei
    GREEN CHEMISTRY, 2017, 19 (15) : 3566 - 3573
  • [35] Integrated catalytic conversion of waste triglycerides to liquid hydrocarbons for aviation biofuels
    Xu, Junming
    Long, Feng
    Jiang, Jianchun
    Li, Fanglin
    Zhai, Qiaolong
    Wang, Fei
    Liu, Peng
    Li, Jing
    JOURNAL OF CLEANER PRODUCTION, 2019, 222 : 784 - 792
  • [36] Mesoporous zeolite single crystals for catalytic hydrocarbon conversion
    Schmidt, I
    Christensen, CH
    Hasselriis, P
    Kustova, MY
    Brorson, M
    Dahl, S
    Johannsen, K
    Christensen, CH
    MOLECULAR SIEVES: FROM BASIC RESEARCH TO INDUSTRIAL APPLICATIONS, PTS A AND B, 2005, 158 : 1247 - 1254
  • [38] Hydrocarbon catalysis Catalytic conversion of methane to liquid closer
    Turley, Andrew
    CHEMISTRY & INDUSTRY, 2009, (21) : 8 - 8
  • [39] Catalytic conversion of lignocellulosic feedstock to hydrocarbon fuel intermediates
    Padmaperuma, Asanga
    Lilga, Michael
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2018, 255
  • [40] The catalytic conversion of bioethanol to hydrocarbon fuel: A review and study
    Tret'yakov V.F.
    Makarfi Yu.I.
    Tret'yakov K.V.
    Frantsuzova N.A.
    Talyshinskii R.M.
    Catalysis in Industry, 2010, 2 (4) : 402 - 420