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About Wet Strength Resins

About Wet Strength Resins

by adminkraft
papers

About Wet Strength Resins

Definitions

Also, these resins improve the overall strength of the paper by strengthening the leaf-leaf bonds.

Wet strength resins in paper industries

Cationic oxalated polyacrylamide (GPAM) is a strength-enhancing resin that is often used as a dry strength-enhancing resin.

The polyacrylamide chain includes small amounts of cationic monomer such as dimethyl ammonium chloride (DADMAC) which causes the self-maintenance of the polymer on the fibers.

This situation is shown in the figure below (adapted from TAPPI documents).

About Wet Strength Resins

What is GPAM

GPAM is a polymer with the ability to form a re-covalent bond with cellulose during the drying of the cellulose network. The result of this process is the production of paper in which both wet resistance and dry resistance are improved. The reaction with cellulose can be reversed in the aqueous medium. In other words, if the dry paper is placed in a wet environment, the connection between the cellulose and the polymer begins to slowly break, which is why GPAM is called “resin for increasing temporary wet resistance”. From its use, it does not cause clogging of the sewage paths in the sanitary facilities, and the structure of the paper is destroyed during the entry of the napkin into the sewers. Likewise, this feature in paper factories causes the conversion of Brook Pulper to take place with less energy consumption.

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Also, the molecular structure of GPAM is such that it can control the decay rate of wet resistance. Controlling the decay rate of resistance is important according to the type of paper, so that in tissue paper (and especially toilet paper), the decay rate must be fast. But in cardboard and cardboard, the decay rate should be slower.

About Wet Strength Resins

Applications

 The use of temporary wet resistance increasing resin in cardboard and cardboard can improve RCT, CMT, SCT resistance, burst resistance, tensile strength and surface resistance. The mechanism of action in this case includes strengthening the connections between fibers by bonding. covalent bonds and hydrogen bonds.

This material also improves the water absorption of the sheet in the press section, in addition to this, the drainage (in the wire section) also increases.

In PAE, the linkages are not easily hydrolyzed. PAE creates a waterproof layer around the leaf-leaf points, which prevents the destruction of hydrogen bonds by water. The use of this resin in tissue (especially paper towels) should be controlled in such a way that it does not reduce the smoothness of the surface.

In papers that are used to produce cartons and boxes in humid environments such as shipping by ship or used in climates with high relative humidity (such as the north and south of our country), the consumption of this resin is about 5-7 kg per ton of paper. 5-7 kg/ton) can significantly improve the efficiency and durability of cartons in these climates and produce high-quality cartons.

In tissue papers, the highest consumption of this resin should be in napkins, conventional papers such as tea bags (such as paper tea bags), sanitary napkins, baby diapers, hospital and operating room towels and sheets. In toilet paper, it is better to use the temporary wet resistance resin mentioned above.

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Brief about wet resistance increasing resins

Wet resistance increasing resins are divided into two categories:

1) wet strength agent

2) temporary wet strength agent

Wet Strength Resins
Wet Strength Resins

The materials of the first group are based on the molecular structure of PAE and the materials of the second group are based on the molecular structure of GPAM.

Advantages

The use of Wet strength resins has the following advantages:

1-Improved wet resistance

2-Improvement of retention and drainage

3-Creating better control conditions on cropping operation

4-Improve dry resistance

5-Reducing the cost of chemicals

6-Improving the efficiency and having a positive effect on the speed of the paper machine

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