Malic acid, mainly used as acidulant and taste enhancer in the food industry, is currently produced from fossil resources. In this study, microbial L-malate production with the filamentous fungus A. oryzae using the carbon source acetate was evaluated. Acetate is for example contained in biomass-derived substrates such as lignocellulosic hydrolysates and condensates of fast pyrolysis, thus avoiding competition with food production. Since research on malic acid synthesis from acetate is limited and reported productivities and yields are low, this work aimed to improve the process. First, different cultivation temperatures were tested. This parameter was found to affect the ratio between malic and succinic acid, which is the major by-product ...
Abstract Background The organic acid producer Aspergillus oryzae and Rhizopus delemar are able to co...
A recent effort to improve malic acid production by Saccharomyces cerevisiae by means of metabolic e...
A recent effort to improve malic acid production by Saccharomyces cerevisiae by means of metabolic e...
This study investigated the malic acid production capability of Aspergillus oryzae NRRL 3488 with th...
Pyrolytic aqueous condensate (PAC) might serve as a cost-effective substrate for microbial malic aci...
Malic acid is a C4 dicarboxylic acid which is used as an acidulant in food and beverages. It is also...
Malic acid is a C4 dicarboxylic acid which is used as an acidulant in food and beverages. It isalso ...
Whole-cell immobilization by entrapment in natural polymers can be a tool for morphological control ...
Malic acid has great potential for replacing petrochemical building blocks in the future. For this a...
Synthesis gas (syngas) fermentation using acetogenic bacteria is an approach for production of bulk ...
Malic acid has great potential for replacing petrochemical building blocks in the future. For this a...
Malic acid is a potential biomass-derivable "building block" for chemical synthesis. Since wild-type...
Malic acid is a C-4 dicarboxylic acid that is currently mainly used in the food and beverages indust...
Malic acid is a C-4 dicarboxylic acid that is currently mainly used in the food and beverages indust...
Background: The organic acid producer Aspergillus oryzae and Rhizopus delemar are able to convert se...
Abstract Background The organic acid producer Aspergillus oryzae and Rhizopus delemar are able to co...
A recent effort to improve malic acid production by Saccharomyces cerevisiae by means of metabolic e...
A recent effort to improve malic acid production by Saccharomyces cerevisiae by means of metabolic e...
This study investigated the malic acid production capability of Aspergillus oryzae NRRL 3488 with th...
Pyrolytic aqueous condensate (PAC) might serve as a cost-effective substrate for microbial malic aci...
Malic acid is a C4 dicarboxylic acid which is used as an acidulant in food and beverages. It is also...
Malic acid is a C4 dicarboxylic acid which is used as an acidulant in food and beverages. It isalso ...
Whole-cell immobilization by entrapment in natural polymers can be a tool for morphological control ...
Malic acid has great potential for replacing petrochemical building blocks in the future. For this a...
Synthesis gas (syngas) fermentation using acetogenic bacteria is an approach for production of bulk ...
Malic acid has great potential for replacing petrochemical building blocks in the future. For this a...
Malic acid is a potential biomass-derivable "building block" for chemical synthesis. Since wild-type...
Malic acid is a C-4 dicarboxylic acid that is currently mainly used in the food and beverages indust...
Malic acid is a C-4 dicarboxylic acid that is currently mainly used in the food and beverages indust...
Background: The organic acid producer Aspergillus oryzae and Rhizopus delemar are able to convert se...
Abstract Background The organic acid producer Aspergillus oryzae and Rhizopus delemar are able to co...
A recent effort to improve malic acid production by Saccharomyces cerevisiae by means of metabolic e...
A recent effort to improve malic acid production by Saccharomyces cerevisiae by means of metabolic e...