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Strength, Retention-Drainage (Wet End)

Superior Boxboard Binding and Retention

To increase strength, retention or drainage, it's critical for your product to bind with the anionic fiber and be retained in the wet-end. Simply put, to work, it has to stay with the sheet. Penford's Topcat L products have an ultra-high cationic charge that binds with fiber to increase strength. They also contain enough charge to promote retention of colloidal material to clean up your system and reduce BOD.
Recommended
Products
Technical Specs Features  Request A Sample 
Penbond® 1000  Product Data Sheet
 MSDS
Liquid, ready-to-use cationic additive for wet-end to improve dry strength, reduce linting & dusting. For use in systems with low conductivity.
Penbond® 4000  Product Data Sheet
 MSDS
Liquid, ready-to-use cationic additive for wet-end to improve dry strength, reduce linting & dusting. For use in systems with medium conductivity.
PenStrength™ 6210  MSDS High-performance cationic polymer used to enhance binding of pulp fibers in recycle furnish. Manufacturers can achieve higher ring crush and STFI results to enable production of premium grades while reducing manufacturing costs and conserving energy resources. Producers of recycle grades can reduce basis weight without loss of strength.
PenStrength™ 6510  MSDS High-performance cationic polymer used to enhance binding of pulp fibers in recycle furnish. Manufacturers can achieve higher ring crush, ZDT and STFI results to enable production of premium grades while reducing manufacturing costs and conserving energy resources. Producers of recycle grades can reduce basis weight without loss of strength. Use 6510 for the highest conductivity furnishes.
Topcat® L95  Product Data Sheet
 MSDS
Liquid, ready-to-use cationic additive for wet-end to improve dry strength, reduce linting & dusting. For use in systems high conductivity.
Topcat® L98  Product Data Sheet
 MSDS
Liquid, ready-to-use cationic additive for wet-end to improve dry strength, reduce linting & dusting. For use in systems with very high conductivity.

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