Oxidative Pretreathent with Hydrogen Peroxide Prior to Alkaline Pulping
Robert V. Allison, Josef S. Gratzl
Abstract
Robert V. Allison, Josef S. Gratzl
Abstract
Oxidative pretreatment of Southern pine wood with alkaline hydrogen peroxide increased its rate of delignification during subsequent kraft and soda-AQ pulping. Effective pretreatment required the removal of transition metals prior to oxidation at high pH (12), low teaperature (50°C) and short reaction time (<45 min.). Compared with reference pulping, pretreatment with 1.4% H2O2 and 3.3% NaOH on wood reduced pulping time to 35 kappa number by 30 minutes (at 170°C). Pre-oxidation resulted in pulp with yield-kappa number and viscosity-kappa number relations equal to or greater than those of corresponding reference pulp. For both kraft and soda-AQ pulp, bleachability, in terms of chemical charge and final viscosity, was unaffected by pre-oxidation while total bleached yield was increased by about 2% on wood. Handsheet strengths for unbleached and bleached kraft pulp were unaffected by oxidative pretreatment whereas those for unbleached soda-AQ pulp were improved to kraft-like levels. However bleached soda-AQ pulp strengths, both with and without pre-oxidation, were less than those of corresponding bleached kraft pulp.
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Oxidative pretreatment of Southern pine wood with alkaline hydrogen peroxide increased its rate of delignification during subsequent kraft and soda-AQ pulping. Effective pretreatment required the removal of transition metals prior to oxidation at high pH (12), low teaperature (50°C) and short reaction time (<45 min.). Compared with reference pulping, pretreatment with 1.4% H2O2 and 3.3% NaOH on wood reduced pulping time to 35 kappa number by 30 minutes (at 170°C). Pre-oxidation resulted in pulp with yield-kappa number and viscosity-kappa number relations equal to or greater than those of corresponding reference pulp. For both kraft and soda-AQ pulp, bleachability, in terms of chemical charge and final viscosity, was unaffected by pre-oxidation while total bleached yield was increased by about 2% on wood. Handsheet strengths for unbleached and bleached kraft pulp were unaffected by oxidative pretreatment whereas those for unbleached soda-AQ pulp were improved to kraft-like levels. However bleached soda-AQ pulp strengths, both with and without pre-oxidation, were less than those of corresponding bleached kraft pulp.
Key concepts: Kappa number, Kraft process, Chemistry, Pulp (tooth), Kraft paper, Hydrogen peroxide, Pulp and paper industry, Peroxide