Process and medium for reducing selenium levels in biomass from fermentation of co-containing gaseous substrates
A process for fermenting syngas and a fermentation medium provides high ethanol productivity while removing medium components that were previously thought to be essential. The process is effective for providing a specific STY of at least about 1 gram of ethanol/(L·day·gram cells) and for providing a selenium content in cell biomass exiting the fermentation of about 1 ppm or less.
1. A process for reducing selenium levels in cell biomass from fermentation of a CO-containing gaseous substrate, the method comprising:
providing a fermentation medium to a bioreactor, the fermentation medium comprising about 112 to about 160 mg of nitrogen per gram of cells, about 10.5 to about 15 mg of phosphorous per gram of cells, about 26 to about 36 mg of potassium per gram of cells, less than about 0.01 g/L yeast extract, and less than about 0.01 g/L carbohydrates;
providing the CO-containing gaseous substrate to the bioreactor, the CO-containing gaseous substrate comprising at least about 10 mole % CO and having a CO/CO2 ratio of at least about 0.75;
fermenting the CO-containing gaseous substrate in a fermentation medium with acetogenic bacteria selected from the group consisting of Clostridium autoethanogenum (DSM 10061 of DSMZ Germany), Clostridium coskatii (ATCC PTA-10522), Clostridium ljungdahlii PETC (ATCC 49587), Clostridium ljungdahlii ER12 (ATCC 55380), Clostridium ljungdahlii C-01 (ATCC 55988), Clostridium ljungdahlii O-52 (ATCC 55889), and mixtures thereof;
wherein the fermentation medium has less than 1 ppm selenium, wherein the selenium is in the form of selenite or selenate,
wherein the process provides a specific STY of at, least about 1 gram of ethanol/(L·day·gram cells), and
wherein the process provides a selenium content in cell biomass exiting the fermentation of about 1 ppm or less.
2. The fermentation process of claim 1 wherein a pH of the fermentation medium is maintained in a range of about 4.2 to about 4.8.