Abstract
The present work reports the biobleaching effect on OPEFB pulp upon utilisation of extracellular xylano-pectinolytic enzymes simultaneously yielded from Bacillus amyloliquefaciens ADI2. The impacts of different doses, retention times, pH, and temperatures required for the pulp biobleaching process were delineated accordingly. Here, the OPEFB pulp was subjected to pre-treatment with xylano-pectinolytic enzymes generated from the same alkalo-thermotolerant isolate that yielded those of higher quality. Remarkable enhanced outcomes were observed across varying pulp attributes: for example, enzyme-treated pulp treated to chemical bleaching sequence generated improved brightness of 11.25%. This resulted in 11.25% of less chlorine or chemical consumption required for obtaining pulp with optical attributes identical to those generated via typical chemical bleaching processes. Ultimately, the reduced consumption of chlorine would minimise the organochlorine compounds found in an effluent, resulting in a lowered environmental effect of paper-making processes overall as a consequence. This will undoubtedly facilitate such environmentally-friendly technology incorporation in the paper pulp industry of today.
Funder
Universiti Putra Malaysia
Subject
Chemistry (miscellaneous),Analytical Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Molecular Medicine,Drug Discovery,Pharmaceutical Science
Reference40 articles.
1. A study on oxygen delignification of Melocanna baccifera (Muli bamboo) kraft pulp;Thomas;BioResources,2007
2. Environmentally Benign Approaches for Pulp Bleaching;Bajpai,2012
3. Biobleaching for pulp and paper industry in India: Emerging enzyme technology
4. Forest Products: Biotechnology in Pulp and Paper Processing;Viikari,2009
5. Xylanases and their industrial applications: A review;Kumar;Biochem. Cell. Arch.,2017
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