Findings demonstrates that optimized pretreatment coupled with selected indigenous bacterial isolates enhanced conversion of WB into protein-enriched microbial biomass, providing a basis for further development of lignocellulosic biomass valorization for SCP production.
Sharda Devi Rajput, S. Keshavkant· Biomass Conversion and Biore...· 0 citations
A novel strategy integrating fungal consortium–mediated co-production of α-amylase and cellulase with advanced statistical modeling for efficient agro-waste valorization is introduced, providing an eco-friendly approach to convert agricultural residues into industrially valuable enzymes.
R. Abdullah, Maria Saeed, H. Butt et al.· Biotechnology Letters· 0 citations
Production and characterize of β-glucosidases from the crude extract of the cyanobacterium Microcystis aeruginosa CACIAM 03 reinforce the promising enzymatic potential of M. aeruginosa strains isolated from the Amazon region for sustainable biotechnological applications.
G. Serra, Matheus Silva da Fonseca Diniz, E. Gonçalves et al.· Biotechnology and applied bi...· 0 citations
Local was adjudged the SCB with the highest potential for fungal cellulase-mediated biodegradation to reduce sugar production and hydrolysis for reducing sugar production.
Baturh Yarkwan, Clement A. Wada, F. C. Chilaka· AgroEnvironmental Sustainabi...· 0 citations
The extracted α-amylase demonstrated exceptional characteristics, with a saccharification efficiency of 39.3% at 50 °C and notable resistance to detergents and surfactants, illustrating how this approach effectively converts waste into valuable industrial enzymes while promoting environmental sustainability.
Arashdeep Kaur, Anoop Verma, R. Prakash· Biomass Conversion and Biore...· 0 citations
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