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- The construction of helicate metal–organic nanotubes and enantioselective recognition. Yan-Wu Zhao, Xian-Ming Zhang
, J. Mater. Chem. C
, 2020
, 8
, 4453
- Improved lactic acid productivity by an open repeated batch fermentation system using Enterococcus mundtii QU 25. Mohamed Ali Abdel-Rahman, Yukihiro Tashiro, Takeshi Zendo, Kenji Sonomoto
, RSC Adv.
, 2013
, 3
, 8437
- Biomass to biodegradable polymer (PLA). Mamata Singhvi, Digambar Gokhale
, RSC Adv.
, 2013
, 3
, 13558
- Determination of Lactic Acid and Poly(lactic acid)s in a
Dermatological Formulation by Capillary Electrophoresis. Derek C. Sharman
, Analyst
, 1997
, 122
, 709
- High-yield lactic acid-mediated route for a g-C3N4 nanosheet photocatalyst with enhanced H2-evolution performance. Xinhe Wu, Duoduo Gao, Huogen Yu, Jiaguo Yu
, Nanoscale
, 2019
, 11
, 9608
- Lactic acid as a platform chemical in the biobased economy: the role of chemocatalysis. Michiel Dusselier, Pieter Van Wouwe, Annelies Dewaele, Ekaterina Makshina, Bert F. Sels
, Energy Environ. Sci.
, 2013
, 6
, 1415
- Melt/solid-state polytransesterification supported by an inert gas flow – an alternative route for the synthesis of high molar mass poly(l-lactic acid). Izabela Steinborn-Rogulska, Paweł Parzuchowski, Gabriel Rokicki
, Polym. Chem.
, 2014
, 5
, 5412
- Efficient production of lactic acid from biomass-derived carbohydrates under synergistic effects of indium and tin in In–Sn-Beta zeolites. Meng Xia, Wenjie Dong, Zheng Shen, Shaoze Xiao, Wenbo Chen, Minyan Gu, Yalei Zhang
, Sustainable Energy Fuels
, 2020
, 4
, 5327
- l-(+)-Lactic acid production by co-fermentation of cellobiose and xylose without carbon catabolite repression using Enterococcus mundtii QU 25. Ying Wang, Mohamed Ali Abdel-Rahman, Yukihiro Tashiro, Yaotian Xiao, Takeshi Zendo, Kenji Sakai, Kenji Sonomoto
, RSC Adv.
, 2014
, 4
, 22013
- Synthesis of lactic acid from dihydroxyacetone: use of alkaline-earth metal hydroxides. Susanne Lux, Matthäus Siebenhofer
, Catal. Sci. Technol.
, 2013
, 3
, 1380