Global ETD Search

Search theses and dissertations gathered from participating repositories worldwide. Every result links back to the library that holds it. No account is needed.

Results

Showing 1 to 4 of 4 for “"QP501-801 Animal biochemistry"”.

  1. Oil palm residue biodelignification by bacillus cereus ligninase from coptotermus curvignathus gut for handsheet production

    Conventional methods used to delignify lignin using mechanical and chemical process consumed high energy and environmentally unfriendly. Meanwhile, the demand for paper substantially increased with declined wood fibres. In this study, Bacillus cereus isolated from termite species Coptotermes …

    uthm Repository record for Oil palm residue biodelignification by bacillus cereus ligninase from coptotermus curvignathus gut for handsheet production (opens in a new tab)

  2. Evaluation of ligninolytic enzymes of (coptotermes curvignathus) gut bacteria for oil palm residues biodelignification

    Lignin degradation is imperative for the maximum utilization of cellulose either for pulp processing or biofuel production. Conventional methods employed in dissolving lignin involve the use of chemicals and bleaching agents with the release of highly toxic effluents, which have deleterious effects …

    uthm Repository record for Evaluation of ligninolytic enzymes of (coptotermes curvignathus) gut bacteria for oil palm residues biodelignification (opens in a new tab)

  3. Application of bacterial ligninase enzymes from rynchophorus ferrugineus’s gut consortium in agropulp biodelignification

    Lignin is a complex phenylpropanoid heteropolymer entangled around cellulose and hemicellulose fibre. It is recalcitrant towards degradation, thus pose a major problem in obtaining good quality fibre. Moreover, the conventional degradation methods (chemically and mechanically) consume vast amount …

    uthm Repository record for Application of bacterial ligninase enzymes from rynchophorus ferrugineus’s gut consortium in agropulp biodelignification (opens in a new tab)

  4. Characterization of botryococcus sp. and identification of carbohydrates metabolic related enzymes toward lipid production

    The advancement of microalgal biofuels is faced with challenges among which is low strain performance in lipid production. Alternatively, the carbohydrate production in microalgal cells could be manipulated to increase the lipid content thereby maximizing the overall biofuel production. This work …

    uthm Repository record for Characterization of botryococcus sp. and identification of carbohydrates metabolic related enzymes toward lipid production (opens in a new tab)