CIESC Journal ›› 2013, Vol. 64 ›› Issue (1): 182-197.DOI: 10.3969/j.issn.0438-1157.2013.01.021
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LI Changzhi, WANG Aiqin, ZHANG Tao
Received:
2012-08-01
Revised:
2012-10-29
Online:
2013-01-05
Published:
2013-01-05
Supported by:
supported by the National Natural Science Foundation of China (21003121,21176235), the National Basic Research Program of China (2009CB226102) and the Doctor Start-up Foundation of DICP (S201107).
李昌志, 王爱琴, 张涛
通讯作者:
张涛
作者简介:
李昌志(1979—),男,博士。
基金资助:
国家自然科学基金项目(21003121,21176235);国家重点基础研究发展计划项目(2009CB226102);大连化学物理研究所博士启动基金项目(S201107)。
CLC Number:
LI Changzhi, WANG Aiqin, ZHANG Tao. Progress of conversion of cellulose resource in ionic liquids[J]. CIESC Journal, 2013, 64(1): 182-197.
李昌志, 王爱琴, 张涛. 离子液体介质中纤维素资源转化研究进展[J]. 化工学报, 2013, 64(1): 182-197.
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[1] | Ragauskas A J, Williams C K, Davison B H, et al.The path forward for biofuels and biomaterials[J].Science,2006,311:484-489 |
[2] | Zhao Zongbao(赵宗保), Hua Yanyan(华艳艳), Liu Bo(刘波).How to secure triacylglycerol supply for Chinese biodiesel industry[J].China Biotechnology(中国生物工程杂志), 2005,25:1-6 |
[3] | van de Vyver S, Geboers J, Jacobs P A, et al.Recent advances in the catalytic conversion of cellulose[J].Chemcatchem, 2011,3:82-94 |
[4] | Himmel M E, Ding S Y, Johnson D K, et al.Biomass recalcitrance:engineering plants and enzymes for biofuels production[J].Science, 2007,315:804-808 |
[5] | Lü Ang(吕昂), Zhang Lina(张俐娜).Advance in solvents of cellulose[J].Acta Polymerica Sinica(高分子学报), 2007,10:937-944 |
[6] | Hallett J P, Welton T.Room-temperature ionic liquids:solvents for synthesis and catalysis(Ⅱ)[J].Chem.Rev., 2011,111:3508-3576 |
[7] | Welton T.Room-temperature ionic liquids.Solvents for synthesis and catalysis[J].Chem.Rev.,1999,99:2071-2083 |
[8] | Swatloski R P, Spear S K, Holbrey J D,Rogers R D. Dissolution of cellulose with ionic liquids[J].J. Am. Chem. Soc., 2002,124:4974-4975 |
[9] | Zhu S D, Wu Y X, Chen Q M, et al.Dissolution of cellulose with ionic liquids and its application:a mini-review[J].Green Chem., 2006,8:325-327 |
[10] | Graenacher C.Cellulose solution[P]:US, 1943176.1934 |
[11] | Fischer S, Voigt W, Fischer K.The behaviour of cellulose in hydrated melts of the composition LiX·nH2O(X=I-, NO-3, CH3COO-, ClO-4)[J].Cellulose, 1999,6:213-219 |
[12] | Husemann E, Siefert E.Systematic of cellulose functionalization:Section 4.4.4[J].Makromol.Chem.,1969,128:288-291 |
[13] | United States Environmental Protection Agency.The presidential green chemistry challenge awards program, summary of 2005 award entries and recipients[EB/OL].http://www.epa.gov/greenchemistry/pubs/docs/award_ entries_ and _recipients2005.pdf |
[14] | Fukaya Y, Hayashi K, Wada M, et al.Cellulose dissolution with polar ionic liquids under mild conditions:required factors for anions[J].Green Chem.,2008,10:44-46 |
[15] | Fukaya Y, Sugimoto A, Ohno H.Superior solubility of polysaccharides in low viscosity, polar, and halogen-free 1,3-dialkylimidazolium formates[J].Biomacromolecules, 2006,7:3295-3297 |
[16] | Vitz J, Erdmenger T, Haensch C, et al.Extended dissolution studies of cellulose in imidazolium based ionic liquids[J].Green Chem., 2009,11:417-424 |
[17] | Zhang Q, Benoit M, Vigier K, et al.Green and inexpensive choline-derived solvents for cellulose decrystallization[J].Chem.Eur.J.,2012,18:1043-1046 |
[18] | Wang H, Gurau G, Rogers R D.Ionic liquid processing of cellulose[J].Chem.Soc.Rev., 2012,41:1519-1537 |
[19] | Ren Qiang(任强), Wu Jin(武进), Zhang Jun(张军).Synthesis of 1-allyl-3-methylimdazolium-based room temperature ionic liquid and preliminary study of its dissolving cellulose[J].Acta Polymerica Sinica(高分子学报), 2003,3:448-451 |
[20] | Laus G, Bentivoglio G, Schottenberger H, et al.Ionic liquids:current developments, potential and drawbacks for industrial applications[J].Lenzinger Berichte, 2005,84:71-85 |
[21] | de la Hoz A, Diaz-Ortiz A, Moreno A.Microwaves in organic synthesis.Thermal and non-thermal microwave effects[J].Chem.Soc.Rev., 2005,34:164-178 |
[22] | Liebert T, Heinze T.Interactions of ionic liquids with polysaccharides(Ⅴ):Solvents and reaction media for the modification of cellulose[J].Bioresources, 2008,3:576-601 |
[23] | Moulthrop J S, Swatloski R P, Moyna G, et al.High-resolution 13C NMR studies of cellulose and cellulose oligomers in ionic liquid solutions[J].Chem.Commun., 2005:1557-1559 |
[24] | Remsing R C, Swatloski R P, Rogers R D, et al. Mechanism of cellulose dissolution in the ionic liquid 1-n-butyl-3-methylimidazolium chloride:a 13C and 35/37Cl NMR relaxation study on model systems[J].Chem.Commun., 2006:1271-1273 |
[25] | Perez-Pimienta J A, Lopez-Ortega M G, Varanasi P, et al. Comparison of the impact of ionic liquid pretreatment on recalcitrance of agave bagasse and switchgrass[J].Bioresour.Technol., 2013, 127: 18-24 |
[26] | Zhao H, Baker G A, Song Z Y, et al.Designing enzyme-compatible ionic liquids that can dissolve carbohydrates[J].Green Chem., 2008,10:696-705 |
[27] | Gutowski K E, Broker G A, Willauer H D, et al. Controlling the aqueous miscibility of ionic liquids:aqueous biphasic systems of water-miscible ionic liquids and water-structuring salts for recycle, metathesis, and separations[J].J.Am.Chem.Soc., 2003,125:6632-6633 |
[28] | Liu H B, Sale K L, Holmes B M, et al.Understanding the interactions of cellulose with ionic liquids:a molecular dynamics study[J].J.Phys.Chem.B,2010, 114:4293-4301 |
[29] | Janesko B G.Modeling interactions between lignocellulose and ionic liquids using DFT-D[J].Phys. Chem. Chem. Phys.,2011,13:11393-11401 |
[30] | Cho H M, Gross A S, Chu J W.Dissecting force interactions in cellulose deconstruction reveals the required solvent versatility for overcoming biomass recalcitrance[J].J.Am.Chem.Soc., 2011,133:14033-14041 |
[31] | Gupta K M, Hu Z Q, Jiang J W.Mechanistic understanding of interactions between cellulose and ionic liquids:a molecular simulation study[J].Polymer, 2011,52:5904-5911 |
[32] | Ding Z D, Chi Z, Gu W X, et al.Theoretical and experimental investigation on dissolution and regeneration of cellulose in ionic liquid[J].Carbohydr.Polym., 2012,89:7-16 |
[33] | Lindman B, Karlstrm G, Stigsson L.On the mechanism of dissolution of cellulose[J].J.Mol.Liq., 2010,156:76-81 |
[34] | Dadi A P, Varanasi S, Schall C A.Enhancement of cellulose saccharification kinetics using an ionic liquid pretreatment step[J].Biotechnol.Bioeng., 2006,95:904-910 |
[35] | Pu Y Q, Jiang N, Ragauskas A J.Ionic liquid as a green solvent for lignin[J].J.Wood Chem.Technol.,2007,27:23-33 |
[36] | Wu Y, Sasaki T, Irie S, et al.A novel biomass-ionic liquid platform for the utilization of native chitin[J].Polymer, 2008,49:2321-2327 |
[37] | Qin Y, Lu X M, Sun N, et al.Dissolution or extraction of crustacean shells using ionic liquids to obtain high molecular weight purified chitin and direct production of chitin films and fibers[J].Green Chem., 2010,12:968-971 |
[38] | Phillips D M, Drummy L F, Conrady D G, et al.Dissolution and regeneration of Bombyx mori silk fibroin using ionic liquids[J].J.Am.Chem.Soc., 2004,126:14350-14351 |
[39] | Han S Q, Li J L, Zhu S D, et al.Potential applications of ionic liquids in wood related industries[J].Bioresources, 2009,4:825-834 |
[40] | Haykir N I, Bahcegul E, Bicak N, et al.Pretreatment of cotton stalk with ionic liquids including 2-hydroxy ethyl ammonium formate to enhance biomass digestibility [J].Ind.Crop.Prod., 2013, 41: 430-436 |
[41] | Turley A.Biotechnology dissolving wood with ionic liquids[J].Chem. Ind.-London, 2009:7 |
[42] | Fort D A, Remsing R C, Swatloski R P, et al.Can ionic liquids dissolve wood? Processing and analysis of lignocellulosic materials with 1-n-butyl-3-methylimidazolium chloride[J].Green Chem., 2007,9:63-69 |
[43] | Sun N, Rahman M, Qin Y, et al.Complete dissolution and partial delignification of wood in the ionic liquid 1-ethyl-3-methylimidazolium acetate[J].Green Chem., 2009,11:646-655 |
[44] | Li W Y, Sun N, Stoner B, et al.Rapid dissolution of lignocellulosic biomass in ionic liquids using temperatures above the glass transition of lignin[J].Green Chem., 2011,13:2038-2047 |
[45] | Sun N, Jiang X Y, Maxim M L, et al.Use of polyoxometalate catalysts in ionic liquids to enhance the dissolution and delignification of woody biomass[J].Chemsuschem,2011,4:65-73 |
[46] | Sun N, Li W Y, Stoner B, et al.Composite fibers spun directly from solutions of raw lignocellulosic biomass dissolved in ionic liquids[J].Green Chem.,2011,13:1158-1161 |
[47] | Sun N, Rodriguez H, Rahman M, et al.Where are ionic liquid strategies most suited in the pursuit of chemicals and energy from lignocellulosic biomass?[J].Chem. Commun.,2011,47:1405-1421 |
[48] | Lan W, Liu C F, Sun R G.Fractionation of bagasse into cellulose, hemicelluloses, and lignin with ionic liquid treatment followed by alkaline extraction[J].J. Agr. Food.Chem.,2011,59:8691-8701 |
[49] | Cui Mei(崔美), Huang Renliang(黄仁亮), Su Rongxin(苏荣欣), et al.An overview on lignocellulose pretreatment and recalcitrant characteristics[J].CIESC Journal(化工学报),2012,63:677-687 |
[50] | Li B, Asikkala J, Filpponen I, et al.Factors affecting wood dissolution and regeneration of ionic liquids[J].Ind. Eng. Chem.Res.,2010,49:2477-2484 |
[51] | Fojutowski A, Noskowiak A, Kot M, et al.The assessment of mechanical properties of wood treated with ionic liquids[J].Drewno,2010,53:21-37 |
[52] | Li X, Simonsen J, Li K C.Wood dissolution and the regeneration of its components using ionic liquids[J].Abstr.Am.Chem.Soc.,2004,227:U310-U311 |
[53] | Viell J, Marquardt W.Disintegration and dissolution kinetics of wood chips in ionic liquids[J].Holzforschung,2011,65:519-525 |
[54] | Vo H T, Kim C S, Ahn B S, et al.Study on dissolution and regeneration of poplar wood in imidazolium-based ionic liquids[J].J.Wood Chem.Technol.,2011,31:89-102 |
[55] | Cuissinat C, Navard P, Heinze T.Swelling and dissolution of cellulose(Ⅳ):Free floating cotton and wood fibres in ionic liquids[J].Carbohydr.Polym.,2008,72:590-596 |
[56] | Kilpelainen I, Xie H, King A, et al.Dissolution of wood in ionic liquids[J].J.Agr.Food Chem.,2007,55:9142-9148 |
[57] | Zhao H, Jones C I L, Baker G A, et al.Regenerating cellulose from ionic liquids for an accelerated enzymatic hydrolysis[J].J.Biotechnol.,2009,139:47-54 |
[58] | Xiao W W, Yin W, Xia S Q, et al.The study of factors affecting the enzymatic hydrolysis of cellulose after ionic liquid pretreatment[J].Carbohydr.Polym.,2012,87:2019-2023 |
[59] | Cheng G, Varanasi P, Li C L, et al.Transition of cellulose crystalline structure and surface morphology of biomass as a function of ionic liquid pretreatment and its relation to enzymatic hydrolysis[J].Biomacromolecules,2011,12:933-941 |
[60] | Torr K M, Love K T, etinkol , et al.The impact of ionic liquid pretreatment on the chemistry and enzymatic digestibility of Pinus radiata compression wood [J].Green Chem., 2012, 14: 778-787 |
[61] | Ha S H, Ngoc L M, An G M, et al.Microwave-assisted pretreatment of cellulose in ionic liquid for accelerated enzymatic hydrolysis[J].Bioresource Technol.,2011,102:1214-1219 |
[62] | Li Qiujin(李秋瑾), Yin Youli(殷友利), Su Rongxin(苏荣欣), et al.Enzymatic hydrolysis of microcrystalline cellulose with an ionic liquid pretreatment step[J].Acta Chim.Sinica(化学学报), 2009,67:88-92 |
[63] | Dadi A P, Schall C A, Varanasi S.Mitigation of cellulose recalcitrance to enzymatic hydrolysis by ionic liquid pretreatment[J].Appl.Biochem.Biotech.,2007,137:407-421 |
[64] | Dadi A P, Varanasi S, Schall C A.Enhancement of cellulose saccharification kinetics using an ionic liquid pretreatment step[J].Biotechnol.Bioeng.,2006,95:904-910 |
[65] | Edye L A, Doherty S O W.Fractionation of lignocellulosic materials[P]:WO, 2008/095252A095251.2008 |
[66] | Argyropoulos D S.Use of lignocellulosics solvated in ionic liquids for production of biofuels[P]:US, 2008/ 0190013A0190011. 2008 |
[67] | Li C Z, Zhao Z K B.Efficient acid-catalyzed hydrolysis of cellulose in ionic liquid[J].Adv.Synth.Catal.,2007,349:1847-1850 |
[68] | Li C Z, Wang Q, Zhao Z K B.Acid in ionic liquid:an efficient system for hydrolysis of lignocellulose[J].Green Chem.,2008,10:177-182 |
[69] | Sievers C, Valenzuela-Olarte M B, Marzialetti T, et al. Ionic-liquid-phase hydrolysis of pine wood[J].Ind. Eng. Chem.Res.,2009,48:1277-1286 |
[70] | Li B, Filpponen I, Argyropoulos D S.Acidolysis of wood in ionic liquids[J].Ind.Eng.Chem.Res.,2010,49:3126-3136 |
[71] | Dee S J, Bell A T A.Study of the acid-catalyzed hydrolysis of cellulose dissolved in ionic liquids and the factors influencing the dehydration of glucose and the formation of humins[J].Chemsuschem,2011,4:1166-1173 |
[72] | Binder J B, Raines R T.Fermentable sugars by chemical hydrolysis of biomass[J].P.Natl.Acad.Sci.USA,2010,107:4516-4521 |
[73] | Rinaldi R, Palkovits R, Schuth F.Depolymerization of cellulose using solid catalysts in ionic liquids[J].Angew.Chem.Int.Ed.,2008,47:8047-8050 |
[74] | Rinaldi R, Meine N, vom Stein J, et al.Which controls the depolymerization of cellulose in ionic liquids:the solid acid catalyst or cellulose?[J].Chemsuschem,2010,3:266-276 |
[75] | Dwiatmoko A A, Choi J W, Suh D J, et al.Understanding the role of halogen-containing ionic liquids in the hydrolysis of cellobiose catalyzed by acid resins[J].Appl.Catal.A,2010,387:209-214 |
[76] | Cai H L, Li C Z, Wang A Q, et al.Zeolite-promoted hydrolysis of cellulose in ionic liquid, insight into the mutual behavior of zeolite, cellulose and ionic liquid[J].Appl. Catal.B,2012,123/124:333-338 |
[77] | Datta S, Holmes B, Park J I, et al.Ionic liquid tolerant hyperthermophilic cellulases for biomass pretreatment and hydrolysis[J].Green Chem.,2010,12:338-345 |
[78] | Arai S, Nakashima K, Tanino T, et al.Production of biodiesel fuel from soybean oil catalyzed by fungus whole-cell biocatalysts in ionic liquids[J].Enzyme Microb. Tech.,2010,46:51-55 |
[79] | Engel P, Mladenov R, Wulfhorst H, et al.Point by point analysis:how ionic liquid affects the enzymatic hydrolysis of native and modified cellulose[J].Green Chem.,2010,12:1959-1966 |
[80] | Gorke J, Srienc F, Kazlauskas R.Toward advanced ionic liquids.Polar, enzyme-friendly solvents for biocatalysis[J].Biotechnol.Bioproc.E,2010,15:40-53 |
[81] | Lee S H, Doherty T V, Linhardt R J, et al.Ionic liquid-mediated selective extraction of lignin from wood leading to enhanced enzymatic cellulose hydrolysis[J].Biotechnol. Bioeng.,2009,102:1368-1376 |
[82] | Liu L Y, Chen H Z.Enzymatic hydrolysis of cellulose materials treated with ionic liquid[BMIM]Cl[J].Chin.Sci.Bull.,2006,51:2432-2436 |
[83] | Samayam I P, Hanson B L, Langan P, et al.Ionic-liquid induced changes in cellulose structure associated with enhanced biomass hydrolysis[J].Biomacromolecules,2011,12:3091-3098 |
[84] | Xiros C, Vafiadi C, Topakas E, et al.Decrement of cellulose recalcitrance by treatment with ionic liquid(1-ethyl-3-methylimidazolium acetate)as a strategy to enhance enzymatic hydrolysis[J].J.Chem.Technol.Biot.,2012,87:629-634 |
[85] | Rosatella A A, Simeonov S P, Frade R F M, et al.5-Hydroxymethylfurfural(HMF)as a building block platform:biological properties, synthesis and synthetic applications[J].Green Chem.,2011,13:754-793 |
[86] | Roman-Leshkov Y, Barrett C J, Liu Z Y, et al.Production of dimethylfuran for liquid fuels from biomass-derived carbohydrates[J].Nature,2007,447:982-985 |
[87] | Roman-Leshkov Y, Chheda J N, Dumesic J A.Phase modifiers promote efficient production of hydroxymethylfurfural from fructose[J].Science,2006,312:1933-1937 |
[88] | VanDam H E, Kieboom A P G, VanBekkum H.The conversion of fructose and glucose in acidic media:formation of mydroxymethylfurfural[J].Starch/Strke,1986,38:95-101 |
[89] | Cottier L, Deseotes G, Nevret C.Pyrolise de sucres. Analyse des vapeurs de caramels industriels(Pyrolysis of sugars.Analysis of vapours of industrial caramels)[J].Industries Aliment.Agrieol.,1989,106:567-570 |
[90] | Cao Q, Guo X C, Yao S X, et al.Conversion of hexose into 5-hydroxymethylfurfural in imidazolium ionic liquids with and without a catalyst[J].Carbohydr.Res.,2011,346:956-959 |
[91] | Hu S Q, Zhang Z F, Zhou Y X,Han B X,et al. Conversion of fructose to 5-hydroxymethylfurfural using ionic liquids prepared from renewable materials[J].Green Chem.,2008,10:1280-1283 |
[92] | Jadhav A H, Kim H, Hwang I T.Efficient selective dehydration of fructose and sucrose into 5-hydroxymethylfurfural(HMF)using dicationic room temperature ionic liquids as a catalyst[J].Catal.Commun., 2012,21:96-103 |
[93] | Lansalot-Matras C, Moreau C.Dehydration of fructose into 5-hydroxymethylfurfural in the presence of ionic liquids[J].Catal.Commun.,2003,4:517-520 |
[94] | Qi X H, Guo H X, Li L Y.Efficient conversion of fructose to 5-hydroxymethylfurfural catalyzed by sulfated zirconia in ionic liquids[J].Ind.Eng.Chem.Res.,2011,50:7985-7989 |
[95] | Qi X H, Watanabe M, Aida T M, et al.Efficient catalytic conversion of fructose into 5-hydroxymethylfurfural in ionic liquids at room temperature[J].Chemsuschem,2009,2:944-946 |
[96] | Qi X H, Watanabe M, Aida T M, et al.Efficient process for conversion of fructose to 5-hydroxymethylfurfural with ionic liquids[J].Green Chem.,2009,11:1327-1331 |
[97] | Shi C Y, Zhao Y L, Xin J Y, et al.Effects of cations and anions of ionic liquids on the production of 5-hydroxymethylfurfural from fructose[J].Chem. Commun.,2012,48:4103-4105 |
[98] | Tao F R, Song H L, Chou L J.Dehydration of fructose into 5-hydroxymethylfurfural in acidic ionic liquids[J].Rsc.Adv.,2011,1:672-676 |
[99] | Tian Yukui(田玉奎), Deng Jin(邓晋), Pan Tao(潘涛), et al.Dehydration of glucose and fructose into 5-hydroxymethylfurfural catalyzed by Lewis acid in ionic liquids[J].Chin.J.Catal.(催化学报), 2011,32:997-1002 [ZK)] |
[100] | Tong X L, Li Y D.Efficient and selective dehydration of fructose to 5-hydroxymethylfurfural catalyzed by bronsted-acidic ionic liquids[J].Chemsuschem,2010,3:350-355 |
[101] | Tong X L, Ma Y, Li Y D.An efficient catalytic dehydration of fructose and sucrose to 5-hydroxymethylfurfural with protic ionic liquids[J].Carbohydr.Res.,2010,345:1698-1701 |
[102] | Li C Z, Zhao Z K, Wang A Q, et al.Production of 5-hydroxymethylfurfural in ionic liquids under high fructose concentration conditions[J].Carbohydr.Res.,2010,345:1846-1850 |
[103] | Li C Z, Zhao Z B K, Cai H L, et al.Microwave-promoted conversion of concentrated fructose into 5-hydroxymethylfurfural in ionic liquids in the absence of catalysts[J].Biomass Bioenerg.,2011,35:2013-2017 |
[104] | Jafarpour L, Stevens E D, Nolan S P A.Sterically demanding nucleophilic carbene:1,3-bis(2,6-diisopropylphenyl)imidazol-2-ylidene).Thermochemistry and catalytic application in olefin metathesis[J].J. Organomet.Chem.,2000,606:49-54 |
[105] | de la Hoz A, Diaz-Ortiz A, Moreno A.Microwaves in organic synthesis.Thermal and non-thermal microwave effects[J].Chem.Soc.Rev.,2005,34:164-178 |
[106] | Lai L K, Zhang Y G.The effect of imidazolium ionic liquid on the dehydration of fructose to 5-hydroxymethylfurfural, and a room temperature catalytic system[J].Chemsuschem,2010,3:1257-1259 |
[107] | Chan J Y G, Zhang Y G.Selective conversion of fructose to 5-hydroxymethylfurfural catalyzed by tungsten salts at low temperatures[J].Chemsuschem,2009,2:731-734 |
[108] | Zhao H, Holladay J E, Brown H, Zhang Z C.Metal chlorides in ionic liquid solvents convert sugars to 5-hydroxymethylfurfural[J].Science,2007,316:1597-1600 |
[109] | Li C Z, Zhang Z H, Zhao Z B K.Direct conversion of glucose and cellulose to 5-hydroxymethylfurfural in ionic liquid under microwave irradiation[J].Tetrahedron Lett.,2009,50:5403-5405 |
[110] | Tan M X, Zhao L, Zhang Y G.Production of 5-hydroxymethyl furfural from cellulose in CrCl2/Zeolite/BMIMCl system[J].Biomass Bioenerg.,2011,35:1367-1370 |
[111] | Binder J B, Raines R T.Simple chemical transformation of lignocellulosic biomass into furans for fuels and chemicals[J].J.Am.Chem.Soc.,2009,131:1979-1985 |
[112] | Hu S Q, Zhang Z F, Zhou Y X,Han B X, et al.Direct conversion of inulin to 5-hydroxymethylfurfural in biorenewable ionic liquids[J].Green Chem.,2009,11:873-877 |
[113] | Xie H B, Zhao Z K, Wang Q.Catalytic conversion of inulin and fructose into 5-hydroxymethylfurfural by lignosulfonic acid in ionic liquids[J].Chemsuschem,2012,5:901-905 |
[114] | Chidambaram M, Bell A T A.Two-step approach for the catalytic conversion of glucose to 2,5-dimethylfuran in ionic liquids[J].Green Chem.,2010,12:1253-1262 |
[115] | Nimlos M R, Qian X H, Davis M, et al.Energetics of xylose decomposition as determined using quantum mechanics modeling[J].J.Phys.Chem.A,2006,110:11824-11838 |
[116] | Khokhlova E A, Kachala V V, Ananikov V P.The first molecular level monitoring of carbohydrate conversion to 5-hydroxymethylfurfural in ionic liquids.B2O3—an efficient dual-function metal-free promoter for environmentally benign applications[J].Chemsuschem,2012,5:783-789 |
[117] | Binder J B, Cefali A V, Blank J J, et al.Mechanistic insights on the conversion of sugars into 5-hydroxymethylfurfural[J].Energy Environ.Sci.,2010,3:765-771 |
[118] | Ignatyev I A, van Doorslaer C, Mertens P G N, et al.Reductive splitting of cellulose in the ionic liquid 1-butyl-3-methylimidazolium chloride[J].Chemsuschem,2010,3:91-96 |
[119] | Zhu Y H, Kong Z N, Stubbs L P, et al.Conversion of cellulose to hexitols catalyzed by ionic liquid-stabilized ruthenium nanoparticles and a reversible binding agent[J].Chemsuschem,2010,3:67-70 |
[120] | Saravanamurugan S, van Buu O N, Riisager A. Conversion of mono- and disaccharides to ethyl levulinate and ethyl pyranoside with sulfonic acid-functionalized ionic liquids[J].Chemsuschem,2011,4:723-726 |
[121] | Villandier N, Corma A.One pot catalytic conversion of cellulose into biodegradable surfactants[J].Chem. Commun.,2010,46:4408-4410 |
[122] | Chemical & Engineering News, BASF’S SMART IONIC LIQUID, Process scavenges acid on a large scale without producing solids[EB/OL].[2003-03-31].http://pubs.acs.org/cen/topstory/8113/8113notw7.html |
[123] | Plechkova N V, Seddon K R.Applications of ionic liquids in the chemical industry[J].Chem.Soc.Rev.,2008,37:123-150 |
[124] | Schneider S, Hawkins T, Ahmed Y, et al.Green bipropellants:hydrogen-rich ionic liquids that are hypergolic with hydrogen peroxide[J].Angew. Chem. Int.Ed.,2011,123:6008-6010 |
[125] | Zhang Y, Shreeve J M.Dicyanoborate-based ionic liquids as hypergolic fluids[J].Angew.Chem.Int.Ed.,2011,50:935-937 |
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