[1] 邓立新. 生物质的洁净转化和综合利用[J]. 化学教育,2004,25(2):10-12. DENG L X. The conversion and utilization of biomass[J]. Chinese Journal of Chemical Education,2004,25(2):10-12.
[2] ZHAO H B,HOLLADAY J E,BROWN H,et al. Metal chlorides ionic liquid solvents convert sugars to 5-hydroxymethylfurfural[J]. Science,2007,316(5831):1597-1600.
[3] ROBERT-JAN V P, JONG E D, JAN C W, et al. Hydroxymethylfurfural,a versatile platform chemical made from renewable resources[J]. Chem. Rev.,2013,113(3):1499-1597.
[4] ALESSANDRO G. Polymers from renewable resources:a challenge for the future of macromolecular materials[J]. Macromolecules, 2008,41(24):9491-9504.
[5] RODRIGO L S, HAO Y, FRANCK R, et al. 5-Hydroxymethylfurfural(5-HMF)production from hexoses:limits of heterogeneous catalysis in hydrothermal conditions and potential of concentrated aqueous organic acids as reactive solvent system[J]. Challenges,2012,3(2):212-232.
[6] ROMAN-LESHKOV Y, BARRETTC J, LIU Z Y, et al. Production of dimethylfuran for liquid fuels from biomass-derived carbohydrates[J]. Nature,2007,447(7147):982-985.
[7] WANG Z H,CHEN Q W. Conversion of 5-hydroxymethylfurfural into 5-ethoxymethylfurfural and ethyl levulinate catalyzed by MOF-based heteropolyacid materials[J]. Green Chemistry,2016, 18:5884-5889.
[8] MASCAL M J,NIKITIN E B. Direct,high-yield conversion of cellulose into biofuel[J]. Angewandte Chemie:International Edition,2008,47(41):7924-7926.
[9] GRUTER G J M,DAUTZENBERG F. Method for the synthesis of 5-hydroxymethylfurfural ethers and their use:US20110082304[P]. 2011-04-07.
[10] THOMBAL R S,JADHAV V H. Application of glucose derived magnetic solid acid for etherification of 5-HMF to 5-EMF, dehydration of sorbitol to isosorbide,and esterification of fatty acids[J]. Tetrahedron Letters,2016,57(39):4398-4400.
[11] BICKER M,HIETH J,VOGEL H. Dehydration of fructose to 5-hydroxymethylfurfural in sub-and supercritical acetone[J]. Green Chem.,2003,5(2):280-284.
[12] BICKER M,KAISER D,OTT L,et al. Dehydration of d-fructose to hydroxymethylfurfural in sub-and supercritical fluid[J]. The Journal of Supercritical Fluids,2005,36(2):118-126.
[13] LAI L,ZHANG Y G. The Production of 5-hydroxymethylfurfural from fructose in isopropyl alcohol:a green and efficient system[J]. ChemSusChem.,2011,4(12):1745-1748.
[14] LIU J, TANG Y, WU K. Conversion of fructose into 5-hydroxymethylfurfural(HMF)and its derivatives promoted by inorganic salt in alcohol[J]. Carbohydrate Research,2012,350:20-24.
[15] ZHU H,CAO Q,LI C H,et al. Acidic resin-catalysed conversion of fructose into furan derivatives in low boiling point solvents[J]. Carbohydrate Research,2011,346(13):2016-2018.
[16] XU S Q,YAN X P,BU Q,et al. Highly efficient conversion of carbohydrates into 5-hydroxymethylfurfural using the bi-functional CrPO4 catalyst[J]. RSC Adv.,2016,6(10):8048-8052.
[17] CHHEDA J N,LESHKOV R Y,DUMESIC J A. Production of 5-hydroxymethylfurfural and furfural by dehydration of biomass-derived mono-and poly-saccharides[J]. Green Chem., 2007,9(4):342-350.
[18] HU S Q,ZHANG Z F,ZHOU Y X,et al. Conversion of fructose to 5-hydroxymethylfurfural using ionic liquids prepared from renewable materials[J]. Green Chem.,2008,10(12):1280-1283.
[19] OKANO T,QIAO K,BAO Q X,et al. Dehydration of fructose to 5-hydroxymethylfurfural (HMF) in an aqueous acetonitrile biphasic system in the presence of acidic ionic liquids[J]. Applied Catalysis A:General,2013,451:1-5.
[20] HAWORTH W N, HIRST E L, NICHOLSON V S. The constitution of the disaccharides. Part ⅩⅢ. The γ-fructose residue in sucrose[J]. J. Chem. Soc.,1927(0):1513-1526. DOI:10.1039/JR9270001513.
[21] LIU Y,LIU C L,WU H Z,et al. An efficient catalyst for the conversion of fructose into methyl levulinate[J]. Catalysis Letters. 2013,143(12):1346-1353.
[22] KRAUS G A,GUNEY T. A direct synthesis of 5-alkoxymethylfurfural ethers from fructose via sulfonic acid-functionalized ionic liquids[J]. Green Chem.,2012,14(6):1593-1596.
[23] GRUTER G J M,LEO E M. Hydroxymethylfurfural ethers from sugars or HMF and mixed alcohols:US12/518364[P]. 2010-03-11.
[24] TARABANKO V E, SMIRNOVA M A,CHERNYAK M Y. Investigation of acid-catalytic conversion of carbohydrates in the presence of aliphatic alcohols at mild temperatures[J]. Chem. Sus.Dev.,2005,13:551-558.
[25] GRUTER G J M,DAUTZENBERG F. Method for the synthesis of 5-alkoxymethylfurfural ethers and their use:US8133289[P]. 2012-03-13.
[26] JIA X Q,MA J P,CHE P H, et al. Direct conversion of fructose-based carbohydrates to 5-ethoxymethylfurfural catalyzed by AlCl3·6H2O/BF3·(Et)2O in ethanol[J]. Journal of Energy Chemistry, 2013,22(1):93-97.
[27] LIU B,ZHANG Z H,HUANG K C,et al. Efficient conversion of carbohydrates into 5-ethoxymethylfurfural in ethanol catalyzed by AlCl3[J]. Fuel,2013,113:625-631.
[28] LANZAFAME P, TEMI D M, PERATHONER S, et al. Etherification of 5-hydroxymethyl-2-furfural (HMF) with ethanol to biodiesel components using mesoporous solid acidic catalysts[J]. Catalysis Today,2011,175(1):435-441.
[29] ZHANG Z H,WANG Y M,FANG Z F,et al. Synthesis of 5-ethoxymethylfurfural from fructose and inulin catalyzed by a magnetically recoverable acid catalyst[J]. Chem Plus Chem.,2014, 79(2):233-240.
[30] YIN S S,SUN J, LIU B, et al. Magnetic material grafted cross-linked imidazolium based polyionic liquids:an efficient acid catalyst for the synthesis of promising liquid fuel 5-ethoxymethylfurfural from carbohydrates[J]. J. Mater. Chem. A, 2015,3(9):4992-4999.
[31] WANG H L,DENG T S,WANG Y X,et al. Efficient catalyt is system for the conversion of fructose into 5-ethoxymethylfurfural[J]. Bioresource Technology,2013,136:394-400.
[32] LI H, COVIND K S, KOTNI R, et al. Direct catalytic transformation of carbohydrates into 5-ethoxymethylfurfural with acid-base bifunctional hybrid nanospheres[J]. Energy Conversion and Management,2014,88:1245-1251.
[33] YANG Y,ABU-OMAR M M,HU C. Heteropolyacid catalyzed conversion of fructose, sucrose, and inulin to 5-ethoxymethylfurfural, a liquid biofuel candidate[J]. Applied Energy,2012,99:80-84.
[34] LIU X F,LI H,PAN H,et al. Efficient catalytic conversion of carbohydrates into 5-ethoxymethylfurfural over MIL-101-based sulfated porous coordination polymers[J]. Journal of Energy Chemistry,2016,25(3):523-530.
[35] ALONSO D M, WETTSTEIN S G, DUMESIC J A. Gamma-valerolactone,a sustainable platform molecule derived from lignocellulosic biomass[J]. Green Chemistry,2013,15(3):584-595. |