Matches in SemOpenAlex for { <https://semopenalex.org/work/W4311587445> ?p ?o ?g. }
- W4311587445 endingPage "736" @default.
- W4311587445 startingPage "726" @default.
- W4311587445 abstract "Simultaneous saccharification and fermentation (SSF) is a well-known strategy for valorization of lignocellulosic biomass. Because the fermentation process typically is anaerobic, oxidative enzymes found in modern commercial cellulase cocktails, such as lytic polysaccharide monooxygenases (LPMOs), may be inhibited, limiting the overall efficiency of the enzymatic saccharification. Recent discoveries, however, have shown that LPMOs are active under anoxic conditions if they are provided with H2O2 at low concentrations. In this study, we build on this concept and investigate the potential of using externally added H2O2 to sustain oxidative cellulose depolymerization by LPMOs during an SSF process for lactic acid production. The results of bioreactor experiments with 100 g/L cellulose clearly show that continuous addition of small amounts of H2O2 (at a rate of 80 µM/h) during SSF enables LPMO activity and improves lactic acid production. While further process optimization is needed, the present proof-of-concept results show that modern LPMO-containing cellulase cocktails such as Cellic CTec2 can be used in SSF setups, without sacrificing the LPMO activity in these cocktails." @default.
- W4311587445 created "2022-12-27" @default.
- W4311587445 creator A5000990854 @default.
- W4311587445 creator A5016227194 @default.
- W4311587445 creator A5025665785 @default.
- W4311587445 creator A5026770096 @default.
- W4311587445 date "2022-12-15" @default.
- W4311587445 modified "2023-10-03" @default.
- W4311587445 title "H <sub>2</sub> O <sub>2</sub> feeding enables LPMO‐assisted cellulose saccharification during simultaneous fermentative production of lactic acid" @default.
- W4311587445 cites W131558756 @default.
- W4311587445 cites W1788645855 @default.
- W4311587445 cites W183005799 @default.
- W4311587445 cites W1971088257 @default.
- W4311587445 cites W1989089659 @default.
- W4311587445 cites W2020353904 @default.
- W4311587445 cites W2026465921 @default.
- W4311587445 cites W2030535009 @default.
- W4311587445 cites W2035900304 @default.
- W4311587445 cites W2064013442 @default.
- W4311587445 cites W2064956451 @default.
- W4311587445 cites W2070309425 @default.
- W4311587445 cites W2070832580 @default.
- W4311587445 cites W2113975655 @default.
- W4311587445 cites W2116056926 @default.
- W4311587445 cites W2128635872 @default.
- W4311587445 cites W2180787849 @default.
- W4311587445 cites W2281956162 @default.
- W4311587445 cites W2506246923 @default.
- W4311587445 cites W2507540425 @default.
- W4311587445 cites W2519120315 @default.
- W4311587445 cites W2555178989 @default.
- W4311587445 cites W2596764728 @default.
- W4311587445 cites W2746397541 @default.
- W4311587445 cites W2769708802 @default.
- W4311587445 cites W2785236199 @default.
- W4311587445 cites W2809218627 @default.
- W4311587445 cites W2884393202 @default.
- W4311587445 cites W2894516258 @default.
- W4311587445 cites W2902687746 @default.
- W4311587445 cites W2941666089 @default.
- W4311587445 cites W2979609341 @default.
- W4311587445 cites W2979868576 @default.
- W4311587445 cites W3019492629 @default.
- W4311587445 cites W3081073041 @default.
- W4311587445 cites W3099932880 @default.
- W4311587445 cites W3106906779 @default.
- W4311587445 cites W3119124583 @default.
- W4311587445 cites W3121485084 @default.
- W4311587445 cites W3130652338 @default.
- W4311587445 cites W3158445185 @default.
- W4311587445 cites W3160906519 @default.
- W4311587445 cites W3174803191 @default.
- W4311587445 cites W3209141437 @default.
- W4311587445 cites W3215179701 @default.
- W4311587445 cites W4214952547 @default.
- W4311587445 cites W4223501469 @default.
- W4311587445 cites W4223632258 @default.
- W4311587445 cites W4225657861 @default.
- W4311587445 doi "https://doi.org/10.1002/bit.28298" @default.
- W4311587445 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/36471631" @default.
- W4311587445 hasPublicationYear "2022" @default.
- W4311587445 type Work @default.
- W4311587445 citedByCount "2" @default.
- W4311587445 countsByYear W43115874452023 @default.
- W4311587445 crossrefType "journal-article" @default.
- W4311587445 hasAuthorship W4311587445A5000990854 @default.
- W4311587445 hasAuthorship W4311587445A5016227194 @default.
- W4311587445 hasAuthorship W4311587445A5025665785 @default.
- W4311587445 hasAuthorship W4311587445A5026770096 @default.
- W4311587445 hasBestOaLocation W43115874451 @default.
- W4311587445 hasConcept C100544194 @default.
- W4311587445 hasConcept C100817775 @default.
- W4311587445 hasConcept C127413603 @default.
- W4311587445 hasConcept C141603559 @default.
- W4311587445 hasConcept C168170006 @default.
- W4311587445 hasConcept C178790620 @default.
- W4311587445 hasConcept C185592680 @default.
- W4311587445 hasConcept C2775920511 @default.
- W4311587445 hasConcept C2779251873 @default.
- W4311587445 hasConcept C31903555 @default.
- W4311587445 hasConcept C42360764 @default.
- W4311587445 hasConcept C4916135 @default.
- W4311587445 hasConcept C49852136 @default.
- W4311587445 hasConcept C523546767 @default.
- W4311587445 hasConcept C528095902 @default.
- W4311587445 hasConcept C54355233 @default.
- W4311587445 hasConcept C55493867 @default.
- W4311587445 hasConcept C86803240 @default.
- W4311587445 hasConcept C94412978 @default.
- W4311587445 hasConceptScore W4311587445C100544194 @default.
- W4311587445 hasConceptScore W4311587445C100817775 @default.
- W4311587445 hasConceptScore W4311587445C127413603 @default.
- W4311587445 hasConceptScore W4311587445C141603559 @default.
- W4311587445 hasConceptScore W4311587445C168170006 @default.
- W4311587445 hasConceptScore W4311587445C178790620 @default.
- W4311587445 hasConceptScore W4311587445C185592680 @default.
- W4311587445 hasConceptScore W4311587445C2775920511 @default.
- W4311587445 hasConceptScore W4311587445C2779251873 @default.