Synergistic Use of Thermostable Laccase and Xylanase in Optimizing the Pre-Bleaching of Kraft Pulp

Author:

Patel Kartik12,Vaghamshi Nilam2ORCID,Shah Kamlesh3,Duggirala Srinivas Murty4,Ghelani Anjana5,Dudhagara Pravin2,Shyu Douglas J. H.6ORCID

Affiliation:

1. Biotech Research and Development Lab, Witmans Industries Private Limited, Bhimpore, Daman 396210, India

2. Department of Biosciences (UGC-SAP-DRS-II & DST-FIST-I), Veer Narmard South Gujarat University, Surat 395007, India

3. Department of Microbiology, R. G. Shah Science College Vasana, Ahmedabad 380007, India

4. Biogas Research Centre, P. G. Department of Microbiology, M. D. Gramsewa Mahavidyalaya, Gujarat Vidyapith Sadra, Gandhinagar 382320, India

5. Shree Ramkrishna Institutes of Computer Education & Applied Sciences, Sarvajanik University, Surat 395001, India

6. Department of Biological Science and Technology, National Pingtung University of Science and Technology, Neipu, Pingtung 912301, Taiwan

Abstract

The continuous requirement for pre-bleaching processes on kraft pulp, employing a range of compatible enzymes, aims to mitigate the pollution caused by chemical bleaching agents. In the present study, the laccase-producing bacterium Bacillus licheniformis BK-1 was isolated from the Bakreshwar hot spring in India and tested for laccase production using different lignocellulosic substrates. The isolate was found to produce maximum laccase (8.25 IU/mL) in the presence of rice bran as a substrate, followed by 5.14 IU/mL using sawdust over a 48 h period. Laccase production doubled when medium parameters were optimized using a central composite design. The bleaching of rice straw pulp was accomplished using a laccase, xylanase (previously extracted from the same bacteria), and laccase–xylanase mixture. The mix-wood kraft pulp treated with the enzyme mixture at pH 7.0 and 50 °C temperature for up to 180 min reduced the chlorine amount by 50% compared to the control. The results also revealed that the enzyme mixture improved the pulp’s optical (brightness 10.39%) and physical (tear index 39.77%, burst index 22.82%, and tensile strength 14.28%) properties with 50% chlorine dose. These exceptional properties underscore the enzyme mixture’s suitability for pulp pre-bleaching in paper manufacturing, offering a safer and more environmentally friendly process.

Funder

Gujarat State Biotechnology Mission, Gandhinagar

University Grant Commission (UGC), New Delhi, India

Publisher

MDPI AG

Subject

Physical and Theoretical Chemistry,Catalysis,General Environmental Science

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