共 50 条
- [31] THE MECHANISM OF WET-STRENGTH DEVELOPMENT BY ALKALINE-CURING AMINO POLYMER-EPICHLOROHYDRIN RESINS TAPPI JOURNAL, 1988, 71 (05): : 133 - 137
- [32] Effects of polyamideamine-epichlorohydrin (PAE) resin deterioration on PAE retention and wet strength performance in handsheet making APPITA JOURNAL, 2004, 57 (05): : 411 - 414
- [33] Polyamidoamine Epichlorohydrin (PAAE) Wet-strength Agent: Generations, Application, Performance, and Recyclability in Paperboard and Linerboard BIORESOURCES, 2024, 19 (02): : 3895 - 3920
- [34] Enhancement of wet-strength of unbleached pulp with laccase and laccase-mediator treatment Chung kuo Tsao Chih, 2006, 2 (8-12):
- [35] A STUDY OF WET-STRENGTH MECHANISM - THE EFFECT OF MELAMINE RESIN ON THE BONDING OF PAPER FIBERS TECHNICAL ASSOCIATION PAPERS, 1947, 30 (JUN): : 223 - 229
- [36] Enhancing Subsequent Kraft Fiber Dewatering Properties by using Fiber Polyamide-epichlorohydrin (PAE) Treatment to Prepare a Dry Pulp Product BIORESOURCES, 2024, 19 (03): : 5227 - 5238
- [37] Improving Mechanical Strength and Water Barrier Properties of Pulp Molded Product by Wet-End Added Polyamide Epichlorohydrin/Cationic Starch ACS OMEGA, 2022, 7 (26): : 22173 - 22180
- [38] Regulatory and sustainability initiatives lead to improved polyaminopolyamide-epichlorohydrin (PAE) wet-strength resins and paper products TAPPI JOURNAL, 2018, 17 (09): : 519 - 532
- [39] Piloting Wet Tensile Strength Development of Polyamide-Amine-Epichlorohydrin Wet Strengthened Nordic Bleached Softwood Pulp Paper by Alkyl Ketene Dimer Internal Sizing BIORESOURCES, 2022, 17 (04): : 6970 - 6982
- [40] High wet-strength, thermally stable and transparent TEMPO-oxidized cellulose nanofibril film via cross-linking with poly-amide epichlorohydrin resin RSC ADVANCES, 2017, 7 (50): : 31567 - 31573