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Heterologous expression of membrane-bound alcohol dehydrogenase-encoding genes for glyceric acid production using Gluconobacter sp. CHM43 and its derivatives Habe H, Sato Y, Tani H, Matsutani M, Tanioka K, Theeragool G, Matsushita K, Yakushi T Applied Microbiology and Biotechnology, 105(18), 6749, 2021 |
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Glycerol Conversion to Lactic Acid with Unsupported Copper Salts and Bulk Cupric Oxide in Aqueous Alkali Media Li KT, Li HH Applied Biochemistry and Biotechnology, 191(1), 125, 2020 |
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Nanotubes TiO2 supported Pt catalyst for selective electrocatalytic oxidation of glycerol to glyceric acid Qin GX, Wang XY, Wan XJ, Chen D, Qiu B Energy Sources Part A-recovery Utilization and Environmental Effects, 42(17), 2120, 2020 |
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An investigation on AuPt and AuPt-Bi on granular carbon as catalysts for the oxidation of glycerol under continuous flow conditions Motta D, Trujillo FJS, Dimitratos N, Villa A, Prati L Catalysis Today, 308, 50, 2018 |
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Reduced graphene oxide decorated with PtCo bimetallic nanoparticles: Facile fabrication and application for base-free oxidation of glycerol Zhang MY, Shi JJ, Ning WS, Hou ZY Catalysis Today, 298, 234, 2017 |
6 |
Pt catalysts supported on ion exchange resins for selective glycerol oxidation. Effect of Au incorporation Sanchez BS, Gross MS, Querini CA Catalysis Today, 296, 35, 2017 |
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Effective improvement of the activity of membrane-bound alcohol dehydrogenase by overexpression of adhS in Gluconobacter oxydans Zhang H, Shi LL, Lin JP, Sun M, Wei DZ Biotechnology Letters, 38(7), 1131, 2016 |
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Gel-type ion exchange resin stabilized Pd-Bi nanoparticles for the glycerol oxidation in liquid phase Vajıcek S, Stolcova M, Kaszonyi A, Micusık M, Alexy P, Canton P, Onyestyak G, Harnos S, Lonyi F, Valyon J Journal of Industrial and Engineering Chemistry, 39, 77, 2016 |
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Glycerol oxidation in liquid phase: Highly stable Pt catalysts supported on ion exchange resins Gross MS, Sanchez BS, Querini CA Applied Catalysis A: General, 501, 1, 2015 |
10 |
Microbial resolution of DL-glyceric acid for L-glyceric acid production with newly isolated bacterial strains Sato S, Morita T, Fukuoka T, Kitamoto D, Habe H Journal of Bioscience and Bioengineering, 119(5), 554, 2015 |