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Facing the Market, Paper360 May/June 2019
Facing the Market, Paper360 May/June 2019
Journal articles
Magazine articles
The Shortest Route to Fiber Quality, Paper360 May/June 2019
The Shortest Route to Fiber Quality, Paper360 May/June 2019
Journal articles
Magazine articles
Wood Pulp: The New Cotton for the Garment Industry?, Paper360 May/June 2019
Wood Pulp: The New Cotton for the Garment Industry?, Paper360 May/June 2019
Journal articles
Magazine articles
Interesting Developments in the Dissolving Pulp Market, Pap
Interesting Developments in the Dissolving Pulp Market, Paper360º November/December 2016
Journal articles
Hydrogen peroxide and caustic soda: Dancing with a dragon while bleaching, TAPPI JOURNAL July 2013
Authors: Peter W. Hart; Carl Houtman; and Kilby Hirth | ABSTRACT: When hydrogen peroxide is mixed with caustic soda, an auto-accelerating reaction can lead to generation of significant amounts of heat and oxygen. On the basis of experiments using typical pulp mill process concentration and temperatures, a relatively simple kinetic model has been developed. Evaluation of these model results reveals that hydrogen peroxide-caustic soda systems are extremely sensitive to hydrogen peroxide:caustic soda ratio, transition metal contamination, and temperature. Small changes in initial conditions can result in a closed system becoming explosive. Analysis of model results was used to develop guidelines for safer application of hydrogen peroxide in a mill setting.
Journal articles
Magazine articles
Automating Process Cooling Can Eliminate ´Strainer Danger’, Paper360º January/February 2022
Automating Process Cooling Can Eliminate ´Strainer Danger’, Paper360º January/February 2022
Journal articles
Magazine articles
Turning Pulper Rejects into Valuable Fuel, Paper360º January/February 2022
Turning Pulper Rejects into Valuable Fuel, Paper360º January/February 2022
Journal articles
Magazine articles
Fiber-based characterization of pulp refining, TAPPI Journal September 2022
ABSTRACT: Fiber development in pulp refining can be characterized by three parameters: number of impacts on pulp, N; energy per impact, I, and bar force on fibers, F. These parameters enable comparisons of radically different refining conditions; determination of intensity for hardwoods and softwoods; assessment of effect of bar width on fiber shortening; and predictions of tensile strength increases.
Journal articles
Magazine articles
Suzano Pulp Plant to Set World Standard for Efficiency, Sustainability, Paper360º September/October 2022
Journal articles
Magazine articles
Reach the Perfect Temperature with Regular Heating System Maintenance, Paper360º September/October 2022