Matches in SemOpenAlex for { <https://semopenalex.org/work/W3176873823> ?p ?o ?g. }
- W3176873823 endingPage "131264" @default.
- W3176873823 startingPage "131264" @default.
- W3176873823 abstract "Enzymatic pretreatment is emerging as an efficient tool for the extraction of biofuel precursors from algal biomass. However, yardsticks for end-use directed selection of optimal pretreatment conditions are not yet identified. The present study, for the first time, reveals different optimal conditions for algal biomass solubilization and sugar release. Algal biomass pretreatment optimization was carried out using the Taguchi method. Crude enzyme from Aspergillus fischeri was found effective for pretreatment of Chlorella pyrenoidosa. Maximum sugar yield (190 mg g−1 biomass) from algal biomass was observed at a substrate concentration of 4 g L-1, with a 5% enzyme load at temperature 60°C, pH 5.5, and shaking speed of 80 rpm. In contrast, maximum sCOD (1350 mg g−1 biomass) was obtained at 2 g L−1 substrate concentration with enzyme load of 20% v/v, at 60°C, pH 4, and shaking speed of 100 rpm. Hence, the first set of conditions would be more beneficial for bioethanol production. Whereas another set of conditions would improve the biofuel production that requires maximum solubilization of algal biomass, such as fermentative methane production. Overall, the present observations established that process conditions required for enzymatic pretreatment of algal biomass should be selected according to the desired biofuel type." @default.
- W3176873823 created "2021-07-05" @default.
- W3176873823 creator A5002457551 @default.
- W3176873823 creator A5003797421 @default.
- W3176873823 creator A5012264420 @default.
- W3176873823 creator A5041620417 @default.
- W3176873823 creator A5044925063 @default.
- W3176873823 creator A5054932161 @default.
- W3176873823 date "2021-12-01" @default.
- W3176873823 modified "2023-10-17" @default.
- W3176873823 title "Enzymatic pretreatment of algal biomass has different optimal conditions for biogas and bioethanol routes" @default.
- W3176873823 cites W1122866445 @default.
- W3176873823 cites W1480021343 @default.
- W3176873823 cites W1515781535 @default.
- W3176873823 cites W1646052597 @default.
- W3176873823 cites W1848168885 @default.
- W3176873823 cites W1998926818 @default.
- W3176873823 cites W2003435349 @default.
- W3176873823 cites W2003809872 @default.
- W3176873823 cites W2005392171 @default.
- W3176873823 cites W2011381419 @default.
- W3176873823 cites W2031279545 @default.
- W3176873823 cites W2037610987 @default.
- W3176873823 cites W2045752112 @default.
- W3176873823 cites W2067104911 @default.
- W3176873823 cites W2070051079 @default.
- W3176873823 cites W2102978829 @default.
- W3176873823 cites W2121405881 @default.
- W3176873823 cites W2124405104 @default.
- W3176873823 cites W2151060130 @default.
- W3176873823 cites W2157254165 @default.
- W3176873823 cites W2168793888 @default.
- W3176873823 cites W2170698673 @default.
- W3176873823 cites W2176091800 @default.
- W3176873823 cites W2412799795 @default.
- W3176873823 cites W2516504805 @default.
- W3176873823 cites W2573589850 @default.
- W3176873823 cites W2766224787 @default.
- W3176873823 cites W2769809031 @default.
- W3176873823 cites W2777847105 @default.
- W3176873823 cites W2792537203 @default.
- W3176873823 cites W2794328875 @default.
- W3176873823 cites W2795310313 @default.
- W3176873823 cites W2887792294 @default.
- W3176873823 cites W2889282128 @default.
- W3176873823 cites W2925206082 @default.
- W3176873823 cites W2944491265 @default.
- W3176873823 cites W2946546173 @default.
- W3176873823 cites W2946796563 @default.
- W3176873823 cites W2948263645 @default.
- W3176873823 cites W2961316252 @default.
- W3176873823 cites W2979860656 @default.
- W3176873823 cites W2981710311 @default.
- W3176873823 cites W2983133738 @default.
- W3176873823 cites W3000135863 @default.
- W3176873823 cites W3009102540 @default.
- W3176873823 cites W3034084200 @default.
- W3176873823 cites W3038951919 @default.
- W3176873823 cites W3042782586 @default.
- W3176873823 cites W3092548315 @default.
- W3176873823 cites W3113737888 @default.
- W3176873823 cites W3161930567 @default.
- W3176873823 doi "https://doi.org/10.1016/j.chemosphere.2021.131264" @default.
- W3176873823 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/34216928" @default.
- W3176873823 hasPublicationYear "2021" @default.
- W3176873823 type Work @default.
- W3176873823 sameAs 3176873823 @default.
- W3176873823 citedByCount "26" @default.
- W3176873823 countsByYear W31768738232021 @default.
- W3176873823 countsByYear W31768738232022 @default.
- W3176873823 countsByYear W31768738232023 @default.
- W3176873823 crossrefType "journal-article" @default.
- W3176873823 hasAuthorship W3176873823A5002457551 @default.
- W3176873823 hasAuthorship W3176873823A5003797421 @default.
- W3176873823 hasAuthorship W3176873823A5012264420 @default.
- W3176873823 hasAuthorship W3176873823A5041620417 @default.
- W3176873823 hasAuthorship W3176873823A5044925063 @default.
- W3176873823 hasAuthorship W3176873823A5054932161 @default.
- W3176873823 hasConcept C115540264 @default.
- W3176873823 hasConcept C127413603 @default.
- W3176873823 hasConcept C150903083 @default.
- W3176873823 hasConcept C156380964 @default.
- W3176873823 hasConcept C185592680 @default.
- W3176873823 hasConcept C18903297 @default.
- W3176873823 hasConcept C2777108408 @default.
- W3176873823 hasConcept C2777289219 @default.
- W3176873823 hasConcept C2779378843 @default.
- W3176873823 hasConcept C2781144631 @default.
- W3176873823 hasConcept C31903555 @default.
- W3176873823 hasConcept C528095902 @default.
- W3176873823 hasConcept C53991642 @default.
- W3176873823 hasConcept C559758991 @default.
- W3176873823 hasConcept C59822182 @default.
- W3176873823 hasConcept C6557445 @default.
- W3176873823 hasConcept C75212476 @default.
- W3176873823 hasConcept C86803240 @default.
- W3176873823 hasConceptScore W3176873823C115540264 @default.
- W3176873823 hasConceptScore W3176873823C127413603 @default.