Use of a Novel Extremophilic Xylanase for an Environmentally Friendly Industrial Bleaching of Kraft Pulps

Author:

Almeida Nazaré,Meyer Valérie,Burnet Auphélia,Boucher Jeremy,Talens-Perales DavidORCID,Pereira Susana,Ihalainen Petri,Levée Thomas,Polaina JulioORCID,Petit-Conil Michel,Camarero SusanaORCID,Pinto PaulaORCID

Abstract

Xylanases can boost pulp bleachability in Elemental Chlorine Free (ECF) processes, but their industrial implementation for producing bleached kraft pulps is not straightforward. It requires enzymes to be active and stable at the extreme conditions of alkalinity and high temperature typical of this industrial process; most commercial enzymes are unable to withstand these conditions. In this work, a novel highly thermo and alkaline-tolerant xylanase from Pseudothermotoga thermarum was overproduced in E. coli and tested as a bleaching booster of hardwood kraft pulps to save chlorine dioxide (ClO2) during ECF bleaching. The extremozyme-stage (EXZ) was carried out at 90 °C and pH 10.5 and optimised at lab scale on an industrial oxygen-delignified eucalyptus pulp, enabling us to save 15% ClO2 to reach the mill brightness, and with no detrimental effect on paper properties. Then, the EXZ-assisted bleaching sequence was validated at pilot scale under industrial conditions, achieving 25% ClO2 savings and reducing the generation of organochlorinated compounds (AOX) by 18%, while maintaining pulp quality and papermaking properties. Technology reproducibility was confirmed with another industrial kraft pulp from a mix of hardwoods. The new enzymatic technology constitutes a realistic step towards environmentally friendly production of kraft pulps through industrial integration of biotechnology.

Funder

Bio-based Industries Joint Undertaking

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Reference27 articles.

1. Efficient enzymatic delignification of wheat straw pulp by a sequential xylanase-laccase mediator treatment;Herpoël;J. Pulp Pap. Sci.,2002

2. Effects of xylanase treatment on fibre morphology in totally chlorine free bleaching (TCF) of Eucalyptus pulp;Roncero;Process Biochem.,2000

3. Effect of xylanase on ozone bleaching kinetics and properties of Eucalyptus kraft pulp;Roncero;J. Chem. Technol. Biotechnol.,2003

4. The effect of xylanase on lignocellulosic components during the bleaching of wood pulps;Roncero;Bioresour. Technol.,2005

5. Application of Enzymes in the Pulp and Paper Industry;Bajpai;Biotechnol. Prog.,1999

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