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Sustaining fermentation in high-gravity ethanol production by feeding yeast to a temperature-profiled multifeed simultaneous saccharification and co-fermentation of wheat straw.

Johan O WestmanRuifei WangVera NovyCarl Johan Franzén
Published in: Biotechnology for biofuels (2017)
Multifeed SSCF was further developed by means of a flocculating yeast and a temperature-reduction profile. Ethanol toxicity is intensified in the presence of lignocellulosic inhibitors at temperatures that are beneficial to hydrolysis in high-gravity SSCF. The counteracting effects of temperature on cell viability and hydrolysis call for more tolerant microorganisms, enzyme systems with lower temperature optimum, or full optimization of the multifeed strategy with temperature profile.
Keyphrases
  • saccharomyces cerevisiae
  • anaerobic digestion
  • oxidative stress
  • risk assessment
  • lactic acid
  • heavy metals
  • sewage sludge