Biodeinking of Photocopier Waste Paper Effluent by Fungal Cellulase under Solid State Fermentation
Journal of Advances in Biology & Biotechnology · pp. 190–199 · Published 14 Jan 2015
10.9734/JABB/2015/15378Abstract
Aims: In this study, the purified cellulase was examined for its ability to deink the photocopier waste paper effluent and the application of enzymatic deinking improved ink removal. Study Design: OFAT (One Factor At a Time). Place and Duration of Study: Medical Labs Department of Unayza Community College, Qassim University, KSA between October 2012 and April 2013. Methodology: Four fungal isolates were isolated from rice husks and screened for their production of cellulase and the most potent ones were selected. The resultant extracts were identified and used for deinking of photocopier waste paper. One isolate that showed efficient deinking and maximum cellulase production was identified morphologically and microscopically. Results: The enzyme was successively optimized for its maximum productivity and purified by precipitation with 80% ammonium sulfate followed by chromatography on G-100 Sephadex. The purification procedure provided 2.36 folds purification with 64.78% yield recovery of cellulase. The maximum production was achieved in flasks with shaking speed of 200 rpm at pH 5.0, 30°C and incubation time of 5 days. SDS-PAGE indicated that the molecular weight of the purified cellulase was 71.6 KDa. Results also revealed that, the ink color was removed gradually by increasing the reaction time between cellulase and the effluent and the maximum color removal was achieved after 9 hours. Conclusion: This study suggested that toxic pollutants like waste paper effluents (concentrated in industrial wastes and contaminated sites) can potentially be eliminated by low cost bioremediation systems using microbial cultures. The knowledge about the optimum environmental factors or conditions could help to employ biological approaches efficiently to clean up the water discharged from waste paper recycling industry. Mucor hiemalis cellulase effectively deinked wastepaper effluents.
Cited by 7
Bahareh Ghanbarzadeh, Maryam Ataeefard, Seyed Masoud Etezad · Biomass Conversion and Biorefinery · 2021
Saharman Gea, Rumondang Bulan, Emma Zaidar · Journal of Wood Chemistry and Technology · 2023
Priyanka Bajaj, Ritu Mahajan · Applied Microbiology and Biotechnology · 2019
", ABDULHADI YAKUBU, Department of Microbiology, School of Bioscience and Bioengineering, Lovely Professional University, Phagwara, 144111 Punjab, India" · Cellulose Chemistry and Technology · 2023
Abdulhadi Yakubu, Upasana Saikia, Ashish Vyas · Fungal Biology · 2019
Agbaje Lateef, Joseph Adetunji Elegbede, Evariste Bosco Gueguim-Kana · Biocatalysis and Agricultural Biotechnology · 2025
J. A. Elegbede, A. Lateef, E. B. Gueguim-Kana · Preparative Biochemistry & Biotechnology · 2023
Related research
- Broad-range pH/Temperature-stable Cellulase from a Novel Hydrocarbon Contaminated Mangrove soil Bacterium, Bacillus licheniformis VVA21 — shares topic coverage
- Effect of Biochar on the Abundance of Soil Bacteria — shares topic coverage
- Bioprospecting of Cellulase Producing Extremophilic Bacterial Isolates from India — shares topic coverage
- Purification and Characteristics of Beta-1, 4-Glucanase Occel9 of Oxya chinensis — shares topic coverage
- Measurement of Cellulolytic Potential of Cellulase Producing Bacteria — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
7
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.