Wet-Strength Agents and AKD Fixing Agents ...

Wet-Strength Agents and AKD Fixing Agents ...

Wet-Strength Agents and AKD Fixing Agents ... Made in Korea

Description

Wet-Strength Agents and AKD fixing Agents The need for a wet-strength resin which could be used in neutral or alkaline papermaking led, over fifty years ago, to the development of poly(aminoamide)- epichlorohydrin (PAE) resins, sometimes referred to as polyamide-polyamine- epichlorohydrin (PPE) resins. A dibasic acid is condensed with polyfunctional amine to give a water-soluble polyamide. The secondary amine groups of the polyamide are then alkylated with epichlorohydrin, and a number of reactions take place. The resulting product consists of relatively low molecular weight polyamide backbones with many reactive side chains. Chloride counterions are formed as a result of the epoxidation and, at the end of the manufacturing process, the resin is usually acidified to provide stability against gelation during storage. As the resin is dried in a paper sheet, the hydroxyazetidinium groups have two possibilities for reaction. One is to react through the amine groups of other resin molecules to give a homo-crosslinked network, and the other is to react with available carboxyl groups in the paper. The wet strength is not fully developed by the time a paper product reaches the end of a paper machine, and strength continues to develop as the paper is stored. The rate of curing is affected by temperature and length of time in contact with heat. The bonds that are eventually formed are not readily broken under either acid or slightly alkaline conditions, and the wet strength is therefore permanent. Whilst this can be an advantage in certain applications, it does make the paper or paperboard more difficult to disintegrate. However, the difficulties for the disintegration of PAE-treated paper have not been reported practically when the dosage level of PAE resin is below 4%. PAE resins are most often used in a pH range of 6 to 8, but their efficiency is adequate in the pH range 5 to 9. Reducing the pH of a papermaking furnish leads to two effects that discourage adsorption. Firstly, fewer carboxyl groups on the pulp are dissociated. Secondly, although most of the charge on the PAE resin is due to the azetidinium groups, which are insensitive to pH change, there are some tertiary amine groups present in the polymer and these lose their charge at lower pH. PAE resins are used extensively in all types of wet-strength papers. Major examples are household products such as paper towels, napkins, facial tissue, and packaging materials like liquid packaging, corrugated boxes, paper bags, and specialties such as photographic papers, wrappings and disposables. 1. Typical Properties   FINEX-414 FINEX-606 FINEX-737 Appearance Pale yellow liquid Pale yellow liquid Pale yellow liquid Active content(%) 12.0~13.0 24.0~29.0 12.0~13.0 Bulk viscosity(cps, 25°C) 30~70 30~100 40~100 Specific gravity(Ave.) 1.025~1.035 1.050~1.100 1.025~1.035 pH 3.8~4.8 3.0~5.0 3.0~5.0 Storage temp.(°C) 5~30 5~30 5~30 Shelf life(Months) 3 3 3 2. Packaging Plastic pails Metalic drums Schutz container Other sizes 20kg 200kg 1,000kg - 3. Heath and Safety Toxicity, caused by FINEX products alone and when incorporated into papers and paperboards, has not been reported so far. The content of FINEX series is listed under Title 21 of the Code of Federal Regulations, Paragraph 176.170. However, contact with the FINEX solution should be avoided because of its acidic nature. When exposed to the solutions, wash with fresh water immediately. These data are given for information only. They do not constitute a specification and no liability is assumed, nor freedom from any existing patents.We do not guarantee the applicability or the accuracy of this information and the suitability of our products in any given situation, since we cannot anticipate the many different conditions under which our products may be used.

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