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Dr. Mohamed Abdelmonem Mohamed Taha :: Publications:

Title:
Pongamiapinnata seed residue–A low cost inedible resource for on-site/in-house lignocellulases and sustainable ethanol production
Authors: Muktham Radhakumari, Mohamed Taha, Esmaeil Shahsavari, SureshK.Bhargava, Bankupalli Satyavathi, Andrew S.Ball
Year: 2016
Keywords: Cellulases; Enzymatic hydrolysis; Lignocellulosic biomass; Pongamia pinnata; Pretreatment
Journal: Renewable Energy
Volume: Not Available
Issue: Not Available
Pages: 1-6
Publisher: ELSEVIR
Local/International: International
Paper Link:
Full paper Mohamed Abdelmonem Mohamed Taha _Pongamiapinnataseedresidue–Alowcostinedibleresourceforon-sitein-house lignocellulasesandsustainableethanolproduction .pdf
Supplementary materials Not Available
Abstract:

Lignocelluosic biomass represents a promising feed stock for biofuels production. However currently the costs associated with lignocellulases represent a key limiting factor in the development of biomass conversion process. The aim of this work was to exploit Pongamia pinnata seed residue, a cheap inedible bioresource, for both lignocellulases and ethanol production. Spingomonas echinoides and Iprex lacteus were selected as novel sources of lignocellulases during solid state fermentation. Both organisms produced an array of lignocellulases (exoglucanase, endoglucanase, xylanase and laccase). Subsequent hydrolysis of the seed residue for sugars production using this crude enzyme from S. echinoides and I. lacteus were compared with those produced using commercial cellulase from Aspergillus niger (10 U g−1), resulted in sugars yields of 233, 302 and 330 mg g−1, respectively. Ethanol yields of 81.5, 104.5 and 157.6 mg g−1 and ethanol concentrations of 4.0, 5.3 and 7.9 mg mL−1 were achieved from the fermentation of the three hydrolyzates using Saccharomyces cerevisiae. The study demonstrated the feasibility of using the seed residue for enzyme preparation and its subsequent application in hydrolysis of the same seed residue and the potential of using the hydrolysis product for ethanol production.

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