eleten® technology is a technology that utilizes unique nanotechnology to minimize side effects while maintaining the effectiveness of a drug. The technology can be applied to many fields, and the most used is in the field of sanitary paper.
eleten® technology is a technology that utilizes unique nanotechnology to minimize side effects while maintaining the effectiveness of a drug. The technology can be applied to many fields, and the most used is in the field of sanitary paper.
Using its own nanotechnology, the agent is broken down to the nanoscale. Drugs can be customized for use. Bactericidal ingredients, deodorant ingredients, fragrance ingredients.
The three layers of the coated reagent are designed and matched according to the application. When raw pulp and nanocapsules are mixed in the papermaking process, special additions are made to prevent the chemical inside from dissolving. Therefore, it can be changed according to the area of use.
In the drying process of the paper making process, if the above 3 layers are exposed to temperatures above 100 ° C, each layer will undergo a chemical reaction and change into 1 layer (purple layer in the above figure). The layer contains cations and has the property of instant melting in contact with water. When using sanitary products, the nanocapsules with cations kill bacteria by destroying the cell walls of bacteria with anions. In addition, when used with water, the reagent in the purple layer dissolved capsule is released instantly to play the original effect of the reagent.
Through the application of unique nanotechnology, the nanocapsules are evenly dispersed in the raw material during the manufacturing process. The coverage rate of nanocapsules in the finished product reached 99%.
Traditional hygiene products with a bactericidal effect of more than 90% are manufactured by soaking non-woven fabrics in a pharmaceutical solution (concentration of 1,000ppm). Normally 1 ton of non-woven fabric uses 1.7kg of drug, but by using eleten® technology, the drug dose is about 1/3,500 of the traditional, and a similar bactericidal effect (more than 99%) can be achieved.