172
L. Lin et al.
7. Fallah RN, Azizian S (2012) Removal of thiophenic compounds from liquid fuel by different
modified activated carbon cloths. Fuel Process Technol 93(1):45–52
8. Huang DM, Jiang WW, Lin L et al (2013) Study on the catalyst performance on cornus wisoniana oil catalytic cracking prepared biological fuel oil. Appl Mech Mater 477–478(477–
478):1457–1463
9. Kunkes EL, Simonetti DA, West RM et al (2008) Catalytic conversion of biomass to
monofunctional hydrocarbons and targeted liquid-fuel classes. Science 322(5900):417–421
10. Li CZ, Zhang AH, Xiao ZH et al (2011) Preparation of bio-diesel from Cornus wilsoniana fruit
oil with basic ionic liquids as catalyst. J CentL South Univ For Technol 31(3):38–43
11. Lin L, Cui H, Vittayapadung S et al (2015) Synthesis of recyclable hollow Fe/C—SO3H fiber
as a catalyst for the production of biodiesel. Environ Prog Sustain Energy 33(4):1432–1437
12. Liu CW, Yang Z, Dai XA et al (2005) Study on the preparation of bio-diesel by vegetable oil.
Henan Chemical Industry
13. Lu L, Quan K, Xu J et al (2014) Liquid hydrocarbon fuels from catalytic cracking of rubber
seed oil using USY as catalyst. Fuel 123(123):189–193
14. Luo Z, Wang S, Liao Y et al (2004) Research on biomass fast pyrolysis for liquid fuel. Biomass
Bioenerg 26(5):455–462
15. Nian LI, Zhong SA (2011) Preparation of biodiesel from Cornus wilsonian oil catalyzed by
solid cesium phosphotungstates. J Cent South Univ 42(5):1226–1231
16. Oasmaa A, Kuoppala E (2003) Fast pyrolysis of forestry residue. 3. Storage stability of liquid
fuel. Energy Fuels 17(4):1075–1084
17. Ooi YS, Zakaria R, Mohamed AR et al (2004) Catalytic cracking of used palm oil and palm oil
fatty acids mixture for the production of liquid fuel: kinetic modeling. Energy Fuels 18(5):1555–
1561
18. Ooi YS, Zakaria R, Mohamed AR et al (2004) Catalytic conversion of palm oil-based fatty
acid mixture to liquid fuel. Biomass Bioenerg 27(5):477–484
19. Ooi YS, Zakaria R, Mohamed AR et al (2005) Catalytic conversion of fatty acids mixture
to liquid fuel and chemicals over composite microporous/mesoporous catalysts. Energy Fuels
19(3):736–743
20. Qiana W, Wilkinsona DP, Shena J et al (2006) Architecture for portable direct liquid fuel cells.
J Power Sources 154(1):202–213
21. Ramya G, Sudhakar R, Joice JAI et al (2012) Liquid hydrocarbon fuels from jatropha oil
through catalytic cracking technology using AlMCM-41/ZSM-5 composite catalysts. Appl
Catal A 433–434(31):170–178
22. Todsapon T, Rauchfuss TB (2010) Efficient production of the liquid fuel 2,5-dimethylfuran
from fructose using formic acid as a reagent. Angew Chem Int Ed 122(37):6766–6768
23. Twaiq FAA, Mohamad AR, Bhatia S (2004) Performance of composite catalysts in palm oil
cracking for the production of liquid fuels and chemicals. Fuel Process Technol 85(11):1283–
1300
24. Wang Z, Yu ST (2016) The production of liquid hydrocarbon fuel from catalytic cracking of
rubber seed oil using new mesoporous molecular sieves. Acs Sustain Chem Eng 4(10)
25. Zhang A, Li C (2014) Swida wilsoniana oil based biodiesel catalyzed by 1-(4-sulfonic acid)
butyl-pyridinium hydrosulfate. In: International conference on materials for renewable energy
and environment, pp 355–359
26. Zhang A, Yuandong XU, Zhang Y et al (2010) Biodiesel production from swida wilsoniana
fruit oil using 1-(4-sulfonic acid) butyl-pyridinium hydrosulfate ionic liquid as catalyst. In:
2010 China renewable energy science and technology development conference
27. Zhang AH, Liang-Hou LI, Lin L et al (2015) Preparation of biodiesel by magnetic solid acid
fiber catalytic Swida wilsoniana oil. Applied Chemical Industry
28. Zhang AH, Xiao ZH, Zhang LB et al (2013) Study on bio-fuels drop acid by [BSPy]HSO4
catalytic esterification. Adv Mater Res 781–784:2433–2437
29. Zhang LB, Xiao ZH, Li PW et al (2015) Research on Swida wilsoniana for biodiesel production.
J Biobased Mater Bioenergy 9(1)
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