1 |
阎立峰, 朱清时. 以生物质为原材料的化学化工[J]. 化工学报, 2004, 55(12): 1938-1943.
|
|
Yan L F, Zhu Q S. New chemical industry based on biomass[J]. Journal of Chemical Industry and Engineering(China), 2004, 55(12): 1938-1943.
|
2 |
吴志强, 张博, 杨伯伦. 生物质化学链转化技术研究进展[J]. 化工学报, 2019, 70(8): 2835-2853.
|
|
Wu Z Q, Zhang B, Yang B L. Research progress on biomass chemical-looping conversion technology[J]. CIESC Journal, 2019, 70(8): 2835-2853.
|
3 |
周晨, 龚党生, 李学敏, 等. 呋喃二甲酸的合成研究进展及其应用前景[J]. 染料与染色, 2018, 55(2): 38-42, 61.
|
|
Zhou C, Gong D S, Li X M, et al. Synthesis research progress and application prospects of 2,5-furandicarboxylic acid[J]. Dyestuffs and Coloration, 2018, 55(2): 38-42, 61.
|
4 |
Sousa A F, Vilela C, Fonseca A C, et al. Biobased polyesters and other polymers from 2,5-furandicarboxylic acid: a tribute to furan excellency[J]. Polymer Chemistry, 2015, 6(33): 5961-5983.
|
5 |
Eerhart A J J E, Faaij A P C, Patel M K. Replacing fossil based PET with biobased PEF; process analysis, energy and GHG balance[J]. Energy & Environmental Science, 2012, 5(4): 6407-6422.
|
6 |
Xu S, Zhou P, Zhang Z H, et al. Selective oxidation of 5-hydroxymethylfurfural to 2,5-furandicarboxylic acid using O2 and a photocatalyst of Co-thioporphyrazine bonded to g-C3N4[J]. Journal of the American Chemical Society, 2017, 139(41): 14775-14782.
|
7 |
Sajid M, Zhao X B, Liu D H. Production of 2,5-furandicarboxylic acid (FDCA) from 5-hydroxymethylfurfural (HMF): recent progress focusing on the chemical-catalytic routes[J]. Green Chemistry, 2018, 20(24): 5427-5453.
|
8 |
Donen S, Hash K, Smitth T. Oxidation process: US135005[P]. 2016-04-21.
|
9 |
Smith T N, Hash K, Davey C L, et al. Modifications in the nitric acid oxidation of D-glucose[J]. Carbohydrate Research, 2012, 350(1): 6-13.
|
10 |
Su H H, Guo Z W, Wu X L, et al. Efficient bioconversion of sucrose to high-value-added glucaric acid by in vitro metabolic engineering[J]. ChemSusChem, 2019, 12(10): 2278-2285.
|
11 |
Zheng S, Hou J, Zhou Y, et al. One-pot two-strain system based on glucaric acid biosensor for rapid screening of myo-inositol oxygenase mutations and glucaric acid production in recombinant cells[J]. Metabolic Engineering, 2018, 49: 212-219.
|
12 |
Bratulescu G. New synthesis method for 2,5-bis(alkoxycarbonyl)furans in one single step[J]. Journal de la Société Algérienne de Chimie, 2000, 10(1): 135-137.
|
13 |
Bratulescu G. Cyclisation under the action of microwaves of the D-saccaric acid to 2,5-furandicarboxylic acid[J]. Revue Roumaine de Chimie, 2000, 45(9): 883-885.
|
14 |
Lewkowski J. Convenient synthesis of furan-2,5-dicarboxylic acid and its derivatives[J]. Polish Journal of Chemistry, 2001, 75(12): 1943-1946.
|
15 |
Taguchi Y, Oishi A, Iida H. One-step synthesis of dibutyl furandicarboxylates from galactaric acid[J]. Chemistry Letters, 2008, 37(1): 50-51.
|
16 |
Zhao D Y, Delbecq F, Len C. One-pot FDCA diester synthesis from mucic acid and their solvent-free regioselective polytransesterification for production of glycerol-based furanic polyesters[J]. Molecules, 2019, 24(6): 1030-1044.
|
17 |
Guo N. Acid-catalyzed dehydration of glucaric acid to2,5-furandicarboxylic acid (FDCA): US060975[P]. 2016-08-11.
|