[1] WERPY T,PETERSEN G.Top value-added chemicals from biomass,volume J-results of screening for potential candidates from sugars and synthesis gas[R]. Office of Energy Efficiency and Renewable Energy,US Department of Energy,2004. [2] 薄德臣,李凭力. 糠醛生产技术发展及展望[J]. 林产化学与工业,2013,33(6):128-134. BO D C,LI P L. Development and prospect of furfural production technology[J]. Chemistry and Industry of Forest Products,2013,33(6):128-134. [3] 欧阳洪生,肖竹钱,蒋成君,等. 生物质基平台化合物糠醛的研究进展[J]. 应用化工,2014,43(10):1903-1907. OUYANG H S,XIAO Z Q,JIANG C J,et al. Advances in bio-based platform chemical-furfural[J]. Applied Chemical Industry,2014,43(10):1903-1907. [4] LI S,LI N,LI G,et al. Lignosulfonate-based acidic resin for the synthesis of renewable diesel and jet fuel range alkanes with 2-methylfuran and furfural[J]. Green Chemistry,2015,17(6):3644-3652. [5] 张野,何铁光,何永群,等. 农业废弃物资源化利用现状概述[J]. 农业研究与应用,2014(3):64-67,72. ZHANG Y,HE T G,HE Y Q,et al. Utilization status of agricultural wastes[J]. Agricultural Research and Application,2014(3):64-67,72. [6] 高红玲,庞博,杜健,等. 半纤维素转化为糠醛的绿色制备工艺及发展趋势[J]. 纸和造纸,2015,134(8):13-19. GAO H L,PANG B,DU J,et al. Current status and future developments in green process of hemicellulose conversion to furfural[J]. Paper and Paper Making,2015,134(8):13-19. [7] ZEITSCH K J. The Chemistry and technology of furfural and its many by-products[M]. Elsevier,2000. [8] 施英乔,丁来保,盘爱享,等. 糠醛生产废水废渣的资源化利用研究进展[J]. 林产化学与工业,2016,36(3):133-138. SHI Y Q,DING L B,PAN A X,et al. Resource utilization of furfural production wastewater and residues[J]. Chemistry and Industry of Forest Products,2016,36(3):133-138. [9] 张璐鑫,于宏兵. 糠醛生产工艺及制备方法研究进展[J]. 化工进展,2013,32(2):425-432. ZHANG L X,YU H B. Research progress in the production and synthesis of furfural[J]. Chemical Industry and Engineering Progress,2013,32(2):425-432. [10] 高美香,刘宗章,张敏华. 生物质转化制糠醛工艺的研究进展[J]. 化工进展,2013,32(4):878-884. GAO M X,LIU Z Z,ZHANG M H. Progress in the production of furfural from biomass[J]. Chemical Industry and Engineering Progress,2013,32(4):878-884. [11] MONTANE D,SALVADO J,TORRAS C,et al. High-temperature dilute-acid hydrolysis of olive stones for furfural production[J]. Biomass and Bioenergy,2002,22(4):295-304. [12] 李志松,朱斌. 汽爆法生产糠醛新工艺[J]. 化工进展,2012,31(5):1109-1129. LI Z S,ZHU B. Study on a new furfural preparation process based on steam-explosion way[J]. Chemical Industry and Engineering Progress,2012,31(5):1109-1129. [13] 刘俊峰,易平贵,金一粟. 改良硫酸法制取糠醛--反应条件对出醛率的影响[J]. 化学世界,1999(10):551-553. LIU J F,YI P G,JIN Y S. Effects of reaction conditions on the productivity in the process of modified sulfuric acid catalytic method to produce furfural from straws[J]. Chemistry World,1999(10):551-553. [14] 刘永春. 陇东地区玉米秆制取糠醛研究[J]. 宝鸡文理学院学报,2004,24(3):201-204. LIU Y C. Study on the furfural production from cornstalk in Longdong area[J]. Journal of Baoji University of Arts and Sciences,2004,24(3):201-204. [15] SIEVERS C,MUSIN I,MARZIALETTI T,et al. Acid-catalyzed conversion of sugars and furfurals in an ionic-liquid phase[J]. ChemSusChem,2009,2(7):665-671. [16] YEMIS O,MAZZA G. Acid-catalyzed conversion of xylose,xylan and straw into furfural by microwave-assisted reaction[J]. Bioresource Technology,2011,102(15):7371-7378. [17] MARCOTULLIO G,DE JONG W. Chloride ions enhance furfural formation from d-xylose in dilute aqueous acidic solutions[J]. Green Chemistry,2010,12(10):1739-1746. [18] ENSLOW K R,BELL A T. The role of metal halides in enhancing the dehydration of xylose to furfural[J]. ChemCatChem,2015,7(3):479-489. [19] 李志松. 糠醛生产工艺研究综述[J]. 广东化工,2010,37(3):40-41. LI Z S. A review of the study on furfural production process[J]. Guangdong Chemical Industry,2010,37(3):40-41. [20] 李凭力,李加波,解利昕,等. 木糖制备糠醛的工艺[J]. 化学工业与工程,2007,24(6):525-527. LI P L,LI J B,XIE L X,et al. Technology of furfural production from xylose[J]. Chemical Industry and Engineering,2007,24(6):525-527. [21] 王晓伟,李凭力,杨万典,等. 甲酸/乙酸/氯化钠催化玉米芯水解条件优化[J]. 化学工程,2013,41(9):10-14. WANG X W,LI P L,YANG W D,et al. Optimization of corncob hydrolysis coupled with formic acid/acetic acid/sodium chloride system as catalyst[J]. Chemical Engineering,2013,41(9):10-14. [22] 隆金桥,陈华妮,黎远成. 路易斯酸催化剂的研究进展[J]. 广东化工,2011(4):23,37. LONG J Q,CHEN H N,LI Y C.Research progress of lewis acid catalyst[J]. Guangdong Chemical Industry,2011(4):23,37. [23] ENSLOW K R,BELL A T.SnCl4-catalyzed isomerization/dehydration of xylose and glucose to furanics in water[J]. Catalysis Science & Technology,2015,5(5):2839-2847. [24] STEIN T V,GRANDE P M,LEITNER W,et al. Iron-catalyzed furfural production in biobased biphasic systems:from pure sugars to direct use of crude xylose effluents as feedstock[J]. ChemSusChem,2011,4(11):1592-1594. [25] YANG Y,HU C-W,ABU-OMAR M M. Synthesis of furfural from xylose,xylan,and biomass using AlCl3·6 H2O in biphasic media via xylose isomerization to xylulose[J]. ChemSusChem,2012,5(2):405-410. [26] ZHANG Z,ZHAO Z K. Microwave-assisted conversion of lignocellulosic biomass into furans in ionic liquid[J]. Bioresource Technology,2010,101(3):1111-1114. [27] ZHANG L,YU H,WANG P,et al. Conversion of xylan,d-xylose and lignocellulosic biomass into furfural using AlCl3 as catalyst in ionic liquid[J]. Bioresource Technology,2013,130:110-116. [28] 杨珊珊,秦灿娟,吴洁. ZnCl2/凹土固载催化剂的制备及其催化活性研究[J]. 淮阴工学院学报,2014(5):1-5,15. YANG S S,QIN S J,WU J. Preparation and catalytic activity of ZnCL2/attapulgite immobilized catalyst[J]. Journal of Huaiyin Institute of Technology,2014(5):1-5,15. [29] MOREAU C,DURAND R,PEYRON D,et al. Selective preparation of furfural from xylose over microporous solid acid catalysts[J]. Industrial Crops and Products,1998,7(2/3):95-99. [30] SADABA I,OJEDA M,MARISCAL R,et al. Silica-poly(styrenesulphonic acid) nanocomposites for the catalytic dehydration of xylose to furfural[J]. Applied Catalysis B:Environmental,2014,150/151:421-431. [31] DIAS A S,LIMA S,PILLINGER M,et al. Acidic cesium salts of 12-tungstophosphoric acid as catalysts for the dehydration of xylose into furfural[J]. Carbohydrate Research,2006,341(18):2946-2953. [32] KHATRI P K,KARANWAL N,KAUL S,et al. Sulfonated polymer impregnated carbon composite as a solid acid catalyst for the selective synthesis of furfural from xylose[J]. Tetrahedron Letters,2015,56(10):1203-1206. [33] GARCIA-SANCHO C,AGIRREZABAL-TELLERIA I,GUEMEZ M B,et al. Dehydration of d-xylose to furfural using different supported niobia catalysts[J]. Applied Catalysis B:Environmental,2014,152/153:1-10. [34] METKAR P S,TILL E J,CORBIN D R,et al. Reactive distillation process for the production of furfural using solid acid catalysts[J]. Green Chemistry,2015,17(3):1453-1466. [35] SHI X,WU Y,YI H,et al. Selective preparation of furfural from xylose over sulfonic acid functionalized mesoporous SBA-15 materials[J]. Energies,2011,4(4):669. [36] AGIRREZABAL-TELLERIA I,REQUIES J,GUEMEZ M B,et al. Pore size tuning of functionalized SBA-15 catalysts for the selective production of furfural from xylose[J]. Applied Catalysis B:Environmental,2012,115/116:169-178. [37] ZHANG J,ZHUANG J,LIN L,et al. Conversion of D-xylose into furfural with mesoporous molecular sieve MCM-41 as catalyst and butanol as the extraction phase[J]. Biomass and Bioenergy,2012,39:73-77. [38] GARCIA-SANCHO C,SADABA I,MORENO-TOST R,et al. Dehydration of xylose to furfural over MCM-41-supported niobium-oxide catalysts[J]. ChemSusChem,2013,6(4):635-642. [39] LAM E,MAJID E,LEUNG A C W,et al.Synthesis of furfural from xylose by heterogeneous and reusable nafion catalysts[J]. ChemSusChem,2011,4(4):535-541. [40] AELLIG C,SCHOLZ D,DAPSENS P Y,et al. When catalyst meets reactor:continuous biphasic processing of xylan to furfural over GaUSY/Amberlyst-36[J]. Catalysis Science & Technology,2015,5(1):142-149. [41] CHENG L,GUO X,SONG C,et al. High performance mesoporous zirconium phosphate for dehydration of xylose to furfural in aqueous-phase[J]. RSC Advances,2013,3(45):23228-23235. [42] ZHANG L,YU H,WANG P. Solid acids as catalysts for the conversion of d-xylose,xylan and lignocellulosics into furfural in ionic liquid[J]. Bioresource Technology,2013,136:515-521. [43] BHAUMIK P,KANE T,DHEPE P L. Silica and zirconia supported tungsten,molybdenum and gallium oxide catalysts for the synthesis of furfural[J]. Catalysis Science & Technology,2014,4(9):2904-2907. [44] LI H,DENG A,REN J,et al. A modified biphasic system for the dehydration of d-xylose into furfural using SO42-/TiO2-ZrO2/La3+ as a solid catalyst[J]. Catalysis Today,2014,234:251-256. [45] KIM Y C,LEE H S. Selective synthesis of furfural from xylose with supercritical carbon dioxide and solid acid catalyst[J]. Journal of Industrial & Engineering Chemistry,2001,7(6):424-429. [46] BHAUMIK P,DHEPE P L. Efficient,stable,and reusable silicoaluminophosphate for the one-pot production of furfural from hemicellulose[J]. ACS Catalysis,2013,3(10):2299-2303. [47] BHAUMIK P,DHEPE P L. Exceptionally high yields of furfural from assorted raw biomass over solid acids[J]. RSC Advances,2014,4(50):26215-26221. [48] GAO H,LIU H,PANG B,et al. Production of furfural from waste aqueous hemicellulose solution of hardwood over ZSM-5 zeolite[J]. Bioresource Technology,2014,172:453-456. [49] 赵婷婷,胡亚楠,孙玉兰. 燃料乙醇的发展及应用研究[J]. 当代化工,2015,44(10):2374-2380. ZHAO T T,HU Y N,SUN Y L. Study on development and application of ethanol fuel[J]. Contemporary Chemical Industry,2015,44(10):2374-2380. [50] 刘美玲,高路. 竹纤维制备工艺的研究现状[J]. 山东纺织科技,2016(1):46-48. LIU M L,GAO L. Advance of researches on preparation of bamboo fiber[J]. Shandong Textile Science & Technology,2016(1):46-48. |