[1]YU P, JIANG J, CHEN C, et al.RuSiO2 Catalyst for Highly Selective Hydrogenation of Dimethyl Malate to 1,2,4-Butanetriol at Low Temperatures in Aqueous Solvent[J].Catalysis Letters, 2022, 152(10):3046-57
[2]孙伟之, 盛卓枫, 陈绍娟, 等.一种(R)-(+)-1, 2, 4-丁三醇及其高效合成方法和应用:中国, CN202310546643.5[P].2023-08-29.
[3]李学兵, 姜军翔, 李广慈, 等.一种催化加氢制备1, 2, 4丁三醇的方法:中国, CN201911298595.2[P].2022-10-28.
[4]LE T C, M B F.Explosives Research [R]. WASHINGTON,D. C.: Navy Department Office Of Naval Research, 1953.
[5]CAO Y, NIU W, GUO J, et al.Biotechnological production of 1,2,4-butanetriol: An efficient process to synthesize energetic material precursor from renewable biomass[J].Scientific Reports, 2015, 5(1):-
[6]李赤峰, 徐保国.1, 2, 4-丁三醇合成工艺述[J]精细化工中间体, 2000, 30(3):9-11.[J].湖南化工, 2000, 30(3):10-11
[7]罗阿利, 乔建军, 宋新潮.1, 2, 4-丁三醇的合成工艺研究[J]西北药学杂志, 2007, 22(3):2.[J].西北药学杂志, 2006, 22(3):144-145
[8]PISACANE F J.1, 2, 4-Butanetriol: Analysis and Synthesis [R]. Dahlgren, Virginia 22448: NAVAL SURFACE WEAPONS CENTER, 1982.
[9]CAMPBELL C J, HINSHAW J C.Making 1, 2, 4-butanetriol by hydroformylation of glycidol:US, US4410744A[P].1983-10-18.
[10]VALDEHUESA K N G, LIU H, RAMOS K R M, et al.Direct bioconversion of d-xylose to 1,2,4-butanetriol in an engineered Escherichia coli[J].Process Biochemistry, 2014, 49(1):25-32
[11]ZHANG N, WANG J, ZHANG Y, et al.Metabolic pathway optimization for biosynthesis of 1, 2, 4-butanetriol from xylose by engineered Escherichia coli [J]. Enzyme and Microbial Technology, 2016, 93-94: 51-8.[J].Enzyme and Microbial Technology, 2016, 93-94:51-58
[12]YUKAWA T, BAMBA T, GUIRIMAND G, et al.Optimization of 1,2,4-butanetriol production from xylose in Saccharomyces cerevisiae by metabolic engineering of NADHNADPH balance[J].Biotechnology and Bioengineering, 2021, 118(1):175-85
[13]SUTIONO S, ZACHOS I, PASCHALIDIS L, et al.Biocatalytic Production of 1,2,4-Butanetriol beyond a Titer of 100 gL: Boosting by Intermediates[J].ACS Sustainable Chemistry & Engineering, 2023, 11(17):6592-9
[14]LV K, CAO X, PEDROSO M M, et al.Structure-guided engineering of branched-chain α-keto acid decarboxylase for improved 1, 2, 4-butanetriol production by in vitro synthetic enzymatic biosystem [J]. International Journal of Biological Macromolecules, 2024, 255: 128303.[J].International Journal of Biological Macromolecules, 2024, 255:2-10
[15]NIU W, MOLEFE M N, FROST J W.Microbial Synthesis of the Energetic Material Precursor 1,2,4-Butanetriol[J].Journal of the American Chemical Society, 2003, 125(43):12998-9
[16]ZHAO M, SHI D, LU X, et al.Co-production of 1, 2, 4-butantriol and ethanol from lignocellulose hydrolysates [J]. Bioresource Technology, 2019, 282: 433-8.[J].Bioresource Technology, 2019, 282:433-438
[17]MACNEIL P A, ROBERTS N K, BOSNICH B.Asymmetric synthesisAsymmetric catalytic hydrogenation using chiral chelating six-membered ring diphosphines[J].Journal of the American Chemical Society, 1981, 103(9):2273-80
[18]IKAI K, MIKAMI M, FURUKAWA Y, et al.Process for preparing 1, 2, 4-butanetriol:US, US6949684(B2)[P].2006-12-19.
[19]SCHOFIELD D, BAILEY M, MONTEITH M J.Process for the preparation of butane triols:AU, AU3948697A[P].1998.
[20]NAKAGAWA Y, KASUMI T, OGIHARA J, et al.Erythritol: Another C4 Platform Chemical in Biomass Refinery[J].ACS Omega, 2020, 5(6):2520-30
[21]MONTASSIER C, MéNéZO J C, MOUKOLO J, et al.Polyol conversions into furanic derivatives on bimetallic catalysts: Cu-Ru,Cu-Pt and Ru-Cu[J].Journal of Molecular Catalysis, 1991, 70(1):65-84
[22]AMADA Y, WATANABE H, HIRAI Y, et al.Production of Biobutanediols by the Hydrogenolysis of Erythritol[J].ChemSusChem, 2012, 5(10):1991-9
[23]VIRGILIO E M, SAD M E, PADRó C L.Kinetic analysis of the conversion of aqueous erythritol solution on Ir/ReOx/TiO2 in a batch slurry reactor [J]. Applied Catalysis A: General, 2022, 643: 118691.[J].Applied Catalysis A: General, 2022, 643:-
[24]MA L, HE D.Influence of catalyst pretreatment on catalytic properties and performances of Ru–ReSiO2 in glycerol hydrogenolysis to propanediols[J].Catalysis Today, 2010, 149(1):148-56
[25]TOMISHIGE K, TAMURA M, NAKAGAWA Y.Role of Re species and acid cocatalyst on Ir-ReOx /SiO2 in the C-O hydrogenolysis of biomass-derived substrates [J]. Chemical Record, 2015, 14(9).[J].THE CHEMICAL RECORD, 2014, 14:1041-1054
[26]VIRGILIO E M, PADRó C L, SAD M E.Effect of Support Properties on Selective Butanediols Production from Erythritol using IrReOx Catalysts[J].ChemCatChem, 2021, 13(17):3889-906
[27]GU M, LIU L, NAKAGAWA Y, et al.Selective Hydrogenolysis of Erythritol over Ir?ReOxRutile-TiO2 Catalyst[J].ChemSusChem, 2021, 14(2):642-54
[28]LIU B, NAKAGAWA Y, YABUSHITA M, et al.Boron Nitride- and Carbon-Supported Iridium–Iron Catalysts for Synthesizing Mono-Alcohols from Biomass-Derived Vicinal Diols[J].ACS Catalysis, 2023, 13(13):8485-502
[29]SAID A, DA SILVA PEREZ D, PERRET N, et al.Selective C?O Hydrogenolysis of Erythritol over Supported Rh-ReOxCatalysts in the Aqueous Phase[J].ChemCatChem, 2017, 9(14):2768-83
[30]LIU B, NAKAGAWA Y, LI C, et al.Selective C–O Hydrogenolysis of Terminal C–OH Bond in 1,2-Diols over Rutile-Titania-Supported Iridium-Iron Catalysts[J].ACS Catalysis, 2022, 12(24):15431-50
[31]TOMISHIGE K, NAKAGAWA Y, TAMURA M.Selective hydrogenolysis and hydrogenation using metal catalysts directly modified with metal oxide species[J].Green Chemistry, 2017, 19(13):2876-924
[32]NAKAGAWA Y, TAZAWA S, WANG T, et al.Mechanistic Study of Hydrogen-Driven Deoxydehydration over Ceria-Supported Rhenium Catalyst Promoted by Au Nanoparticles[J].ACS Catalysis, 2018, 8(1):584-95
[33]SADIER A, PERRET N, DA SILVA PEREZ D, et al.Effect of carbon chain length on catalytic CO bond cleavage of polyols over Rh-ReOx/ZrO2 in aqueous phase [J]. Applied Catalysis A: General, 2019, 586: 117213.[J].Applied Catalysis A: General, 2019, 586:-
[34]BHOWMIK S, AKULA V, SETHIA G, et al.Promoting effect of titanium on C―O hydrogenolysis of erythritol to 1, 4-butanediol over Pt/W/Ti-SBA-15 catalysts [J]. Applied Catalysis A: General, 2023, 666: 119425.[J].Applied Catalysis A: General, 2023, 666:-
[35]WANG W, NAKAGAWA K, YOSHIKAWA T, et al.Selective aqueous phase hydrodeoxygenation of erythritol over carbon-supported Cu catalyst prepared from ion-exchange resin [J]. Applied Catalysis A: General, 2021, 619: 118152.[J].Applied Catalysis A: General, 2021, 619:-
[36]VARGHESE A R A J J.Mechanistic insights into C–O bond cleavage in erythritol during hydrodeoxygenation on an Ir–ReOx catalyst [J]. Reaction Chemistry & Engineering, 2024.[J].ReactionChemistry &Engineering, 2024, :-
[37]JIN X, SHEN J, YAN W, et al.Sorbitol Hydrogenolysis over Hybrid CuCaO-Al2O3 Catalysts: Tunable Activity and Selectivity with Solid Base Incorporation[J].ACS Catalysis, 2015, 5(11):6545-58
[38]金鑫, 严文娟, 刘腾, 等.一种复合多界面特性的零临氢氢解催化剂及其制备方法和应用:中国, 202410899599.0[P].2024-9-4. |