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Biogenic enabled in-vitro synthesis of nickel cobaltite nanoparticle and its application in single stage hybrid biohydrogen production

dc.contributor.authorSrivastava N.; Mohammad A.; Srivastava M.; Syed A.; Elgorban A.M.; Bahadur Pal D.; Mishra P.K.; Yoon T.; Gupta V.K.
dc.date.accessioned2025-05-23T11:27:38Z
dc.description.abstractIn biomass to biofuels production technology enzyme plays a key role. Nevertheless, the high production cost of cellulase enzyme is one of the critical issues in the economical production of biofuels. Nowadays, implementation of nanomaterials as catalyst is emerging as an innovative approach for the production of sustainable energy. In this context, synthesis of nickel cobaltite nanoparticles (NiCo2O4 NPs) via in vitro route has been conducted using fungus Emericella variecolor NS3 meanwhile; its impact has been evaluated on improved thermal and pH stability of crude cellulase enzyme obtained from Emericella variecolor NS3. Additionally, bioconversion of alkali treated rice straw using NiCo2O4 NPs stabilized cellulase produced sugar hydrolyzate which is further used for H2 production via hybrid fermentation. Total 51.7 g/L sugar hydrolyzate produced 2978 mL/L cumulative H2 production after 336 h along with maximum rate 34.12 mL/L/h in 24 h using Bacillus subtilis PF_1 and Rhodobacter sp. employed for dark and photo-fermentation, respectively. © 2021 Elsevier Ltd
dc.identifier.doihttps://doi.org/10.1016/j.biortech.2021.126006
dc.identifier.urihttp://172.23.0.11:4000/handle/123456789/11638
dc.relation.ispartofseriesBioresource Technology
dc.titleBiogenic enabled in-vitro synthesis of nickel cobaltite nanoparticle and its application in single stage hybrid biohydrogen production

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