4.4 Review

Xylanolytic Enzymes in Pulp and Paper Industry: New Technologies and Perspectives

Journal

MOLECULAR BIOTECHNOLOGY
Volume 64, Issue 2, Pages 130-143

Publisher

SPRINGERNATURE
DOI: 10.1007/s12033-021-00396-7

Keywords

Xylanolytic enzymes; Xylanase; Laccase; Enzymatic treatment; De-lignification; Factors; Enzyme consortium

Funding

  1. BHU, Varanasi [F(C)/XVIII-Spl.Fund/Misc/Infrastructure/Instt.Sc/2019-2020/10290]
  2. BTISNET- Sub-Distributed Information Centre - DBT, Govt. of India at the School of Biotechnology, Banaras Hindu University, Varanasi, India
  3. Department of Science and Technology, New Delhi, Govt. of India, through FIST grant [1196 SR/FST/LS-I/2017/4]
  4. Department of Biotechnology, Government of India [BT/PR27437/BCE/8/1433/2018]
  5. DBT, Govt. of India
  6. CSIR, India [09/382(0211)/2019-EMR-I]

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The pulp and paper industry releases a significant amount of wastewater containing hazardous organochlorine compounds, prompting the need for cost-effective and nonpolluting practices to mitigate environmental impact. Enzymatic treatments, particularly using xylanolytic enzymes, show potential for enhancing paper quality through hydrolysing raw materials and can be used for bio-deinking and bio-bleaching.
The pulp and paper industry discharges massive amount of wastewater containing hazardous organochlorine compounds released during different processing stages. Therefore, some cost-effective and nonpolluting practices such as enzymatic treatments are required for the potential mitigation of effluents released in the environment. Various xylanolytic enzymes such as xylanases, laccases, cellulases and hemicellulases are used to hydrolyse raw materials in the paper manufacturing industry. These enzymes are used either individually or in combination, which has the efficient potential to be considered for bio-deinking and bio-bleaching components. They are highly dynamic, renewable, and high in specificity for enhancing paper quality. The xylanase act on the xylan and cellulases act on the cellulose fibers, and thus increase the bleaching efficacy of paper. Similarly, hemicellulase enzyme like endo-xylanases, arabinofuranosidase and beta-d-xylosidases have been described as functional properties towards the biodegradation of biomass. In contrast, laccase enzymes act as multi-copper oxidoreductases, bleaching the paper by the oxidation and reduction process. Laccases possess low redox potential compared to other enzymes, which need some redox mediators to catalyze. The enzymatic process can be affected by various factors such as pH, temperature, metal ions, incubation periods, etc. These factors can either increase or decrease the efficiency of the enzymes. This review draws attention to the xylanolytic enzyme-based advanced technologies for pulp bleaching in the paper industry.

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