Matches in SemOpenAlex for { <https://semopenalex.org/work/W2009904231> ?p ?o ?g. }
- W2009904231 endingPage "267" @default.
- W2009904231 startingPage "261" @default.
- W2009904231 abstract "This paper reports a solid-state fungal fermentation-based pre-treatment strategy to convert wheat straw into a fermentable hydrolysate. Aspergillus niger was firstly cultured on wheat straw for production of cellulolytic enzymes and then the wheat straw was hydrolyzed by the enzyme solution into a fermentable hydrolysate. The optimum moisture content and three wheat straw modification methods were explored to improve cellulase production. At a moisture content of 89.5%, 10.2 ± 0.13 U/g cellulase activity was obtained using dilute acid modified wheat straw. The addition of yeast extract (0.5% w/v) and minerals significantly improved the cellulase production, to 24.0 ± 1.76 U/g. The hydrolysis of the fermented wheat straw using the fungal culture filtrate or commercial cellulase Ctec2 was performed, resulting in 4.34 and 3.13 g/L glucose respectively. It indicated that the fungal filtrate harvested from the fungal fermentation of wheat straw contained a more suitable enzyme mixture than the commercial cellulase." @default.
- W2009904231 created "2016-06-24" @default.
- W2009904231 creator A5022877821 @default.
- W2009904231 creator A5033651373 @default.
- W2009904231 creator A5035700934 @default.
- W2009904231 creator A5039322611 @default.
- W2009904231 creator A5078669000 @default.
- W2009904231 date "2013-12-01" @default.
- W2009904231 modified "2023-10-17" @default.
- W2009904231 title "A solid state fungal fermentation-based strategy for the hydrolysis of wheat straw" @default.
- W2009904231 cites W1971820570 @default.
- W2009904231 cites W1972040158 @default.
- W2009904231 cites W1973091844 @default.
- W2009904231 cites W1978379212 @default.
- W2009904231 cites W1993019194 @default.
- W2009904231 cites W1995011260 @default.
- W2009904231 cites W2000369665 @default.
- W2009904231 cites W2004958771 @default.
- W2009904231 cites W2005012158 @default.
- W2009904231 cites W2020076755 @default.
- W2009904231 cites W2022103009 @default.
- W2009904231 cites W2022796965 @default.
- W2009904231 cites W2032982682 @default.
- W2009904231 cites W2045707333 @default.
- W2009904231 cites W2058023486 @default.
- W2009904231 cites W2064902795 @default.
- W2009904231 cites W2067819138 @default.
- W2009904231 cites W2070629380 @default.
- W2009904231 cites W2070879206 @default.
- W2009904231 cites W2081425013 @default.
- W2009904231 cites W2086365387 @default.
- W2009904231 cites W2089696541 @default.
- W2009904231 cites W2089937124 @default.
- W2009904231 cites W2090329332 @default.
- W2009904231 cites W2091298423 @default.
- W2009904231 cites W2093156616 @default.
- W2009904231 cites W2093595704 @default.
- W2009904231 cites W2111858949 @default.
- W2009904231 cites W2112723141 @default.
- W2009904231 cites W2119354066 @default.
- W2009904231 cites W2148041910 @default.
- W2009904231 cites W2163739303 @default.
- W2009904231 doi "https://doi.org/10.1016/j.biortech.2013.09.061" @default.
- W2009904231 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/3824065" @default.
- W2009904231 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/24121367" @default.
- W2009904231 hasPublicationYear "2013" @default.
- W2009904231 type Work @default.
- W2009904231 sameAs 2009904231 @default.
- W2009904231 citedByCount "93" @default.
- W2009904231 countsByYear W20099042312014 @default.
- W2009904231 countsByYear W20099042312015 @default.
- W2009904231 countsByYear W20099042312016 @default.
- W2009904231 countsByYear W20099042312017 @default.
- W2009904231 countsByYear W20099042312018 @default.
- W2009904231 countsByYear W20099042312019 @default.
- W2009904231 countsByYear W20099042312020 @default.
- W2009904231 countsByYear W20099042312021 @default.
- W2009904231 countsByYear W20099042312022 @default.
- W2009904231 countsByYear W20099042312023 @default.
- W2009904231 crossrefType "journal-article" @default.
- W2009904231 hasAuthorship W2009904231A5022877821 @default.
- W2009904231 hasAuthorship W2009904231A5033651373 @default.
- W2009904231 hasAuthorship W2009904231A5035700934 @default.
- W2009904231 hasAuthorship W2009904231A5039322611 @default.
- W2009904231 hasAuthorship W2009904231A5078669000 @default.
- W2009904231 hasBestOaLocation W20099042311 @default.
- W2009904231 hasConcept C100544194 @default.
- W2009904231 hasConcept C141603559 @default.
- W2009904231 hasConcept C179104552 @default.
- W2009904231 hasConcept C185592680 @default.
- W2009904231 hasConcept C2775960407 @default.
- W2009904231 hasConcept C2779251873 @default.
- W2009904231 hasConcept C2779587293 @default.
- W2009904231 hasConcept C2779942233 @default.
- W2009904231 hasConcept C28800991 @default.
- W2009904231 hasConcept C31903555 @default.
- W2009904231 hasConcept C55493867 @default.
- W2009904231 hasConcept C6557445 @default.
- W2009904231 hasConcept C86803240 @default.
- W2009904231 hasConcept C94412978 @default.
- W2009904231 hasConceptScore W2009904231C100544194 @default.
- W2009904231 hasConceptScore W2009904231C141603559 @default.
- W2009904231 hasConceptScore W2009904231C179104552 @default.
- W2009904231 hasConceptScore W2009904231C185592680 @default.
- W2009904231 hasConceptScore W2009904231C2775960407 @default.
- W2009904231 hasConceptScore W2009904231C2779251873 @default.
- W2009904231 hasConceptScore W2009904231C2779587293 @default.
- W2009904231 hasConceptScore W2009904231C2779942233 @default.
- W2009904231 hasConceptScore W2009904231C28800991 @default.
- W2009904231 hasConceptScore W2009904231C31903555 @default.
- W2009904231 hasConceptScore W2009904231C55493867 @default.
- W2009904231 hasConceptScore W2009904231C6557445 @default.
- W2009904231 hasConceptScore W2009904231C86803240 @default.
- W2009904231 hasConceptScore W2009904231C94412978 @default.
- W2009904231 hasLocation W20099042311 @default.
- W2009904231 hasLocation W20099042312 @default.
- W2009904231 hasLocation W20099042313 @default.
- W2009904231 hasLocation W20099042314 @default.