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- W3178136372 abstract "• Fungal cellulase production using residual algal biomass has been performed. • Significantly enhanced cellulase production catalyzed by NiFe 2 O 4 NPs. • Cellulase enzyme exhibits better thermal and pH stability catalyzed by NiFe 2 O 4 NPs. • High sugar (42.40 g/L) is yielded in just 12 h due to catalytic effect of NiFe 2 O 4 NPs. • Cumulative hydrogen ~ 1820 mL/L with optimum production rate of 19.92 mL/L/h in 24 h. The present study reports nickel ferrite nanoparticles (NiFe 2 O 4 NPs) induced enhanced production of crude cellulase enzyme using residual algal biomass of cyanobacteria Lyngbya limnetica as substrate. It is noticed that the residual algal substrate and NiFe 2 O 4 NPs mediated crude cellulase exhibits nearly 2.5 fold enhanced filter paper activity after 72 h along with better efficiency in terms of pH and thermal stability as compared to the control system. Further, NiFe 2 O 4 NPs mediated crude cellulase enzyme was employed for the enzymatic hydrolysis of rice straw to produce sugar hydrolyzate. Subsequently, using bacterial strains Bacillus subtilis PF_1 the cumulative hydrogen ~ 1820 mL/L has been produced under the dark fermentation." @default.
- W3178136372 created "2021-07-19" @default.
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- W3178136372 date "2021-11-01" @default.
- W3178136372 modified "2023-10-16" @default.
- W3178136372 title "Nickel ferrite nanoparticles induced improved fungal cellulase production using residual algal biomass and subsequent hydrogen production following dark fermentation" @default.
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- W3178136372 doi "https://doi.org/10.1016/j.fuel.2021.121391" @default.
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