With the differentiation, functionalization, and high performance, the protection of professional protective clothing has increased significantly with the replacement of functional fiber materials. The professional apparel that is escorted by high-tech materials and integrated with advanced technological elements will become the potential biggest profit-making point in the future apparel market segment. At the second session of the China Special Fabrics Summit held last week, the participants reached a consensus. To increase the development of high-performance, functional and differentiated fibers, expand its application in key areas such as functional textiles, green eco-textiles, and industrial textiles, and rely on the contribution rate of science and technology to increase the added value of products, and will become the future chemical fiber industry. The goal of working together with the textile industry.
New material interpretation of costume magic
According to Wang Yaoxi, Secretary-General of the China Professional Wear Industry Association, in the just-concluded 2010 World Expo, high-tech professional wear has emerged, demonstrating the inexhaustible charm of high-tech and new materials. For example, garments made with Flycool cool fabrics can produce a cool feeling of 1°C to 2°C lower when exposed to the skin. Long-term sunlight exposure can produce a temperature difference of 3°C to 5°C, and it also has moisture absorption and perspiration. Anti-ultraviolet effect. This cool fiber “cold fabric†has a higher moisture regain and higher fiber thermal diffusion rate than ordinary fibers. When wearing this series of clothing, the air conditioner can be increased by 1°C, saving electricity costs by 5% to 6%, and reducing the energy consumption by approximately 0.62kg. Carbon amount. A naturally heatable “hot fabric†garment developed by a company in Taiwan can be raised to 30.2°C in 15 minutes after wearing, and the surface temperature is 27.4°C. It is called a thermal garment that is free of electricity.
During the Shanghai World Expo, the kimono worn by the staff of the Japanese Pavilion was made of heat-resistant bio-plastic fibers and the traditional silk fabric of Kyoto, Tango crepe. At the end of the Expo, these uniforms will be shipped back to Japan along with other facilities of the Japan Pavilion, and will be processed and recycled through recycling and recycling systems. In addition, a variety of new functional fabrics such as anti-static, anti-oil, high-temperature and flame-retardant, as well as professional wear made of these fabrics are in dire straits.
Professional dress called fiber "three"
Yang Wenfen, director of the National Labor Protection Supply Quality Supervision and Inspection Center, said that hollow fiber, Kermel (aromatic polyamide argon amine) fiber, PBI (polybenzimidazole) fiber, microfiber, shape memory material, far infrared ceramic fiber and high strength fiber The replacement of raw materials, so that the protection of protective clothing has been significantly improved. Now, protective clothing is developing in the direction of multi-functionalization, compounding and systemization, such as flame retardant and anti-static compatibility, anti-chemical and moisture permeability. In addition to satisfying the purpose of protection, in the future protective clothing will also consider more to ease the clothing load, adjust the micro-climate within the clothing, antibacterial processing and other comfort features. In addition to the traditional flame-retardant and anti-static fields, new materials such as antibacterial and odor-removing materials and retro-reflective marking materials and processing technologies have appeared one after another. They are also continuously expanding the field of application of protective clothing. At the same time, they require fiber materials to be differentiated, functionalized, and high. Performance development.
According to Cheng Longqi, the key laboratory of the Ministry of Education for Textile Fabrics and the director of the National Fabrics Research and Development Center of Donghua University, the reason why protective clothing has various protective functions is mainly the application of various functional fabrics. He said that functional materials have excellent electrical, magnetic, optical, thermal, acoustic, mechanical, chemical, and biomedical functions, or have special physical, chemical, and biological effects, and can accomplish functional transformation and are mainly used for manufacturing. A variety of fiber materials or finishing materials are widely used in all kinds of fabrics of high-tech materials. The functional fabric is a functional textile material or a special textile dyeing and finishing textile fabric with special functions. Functional materials mainly include superconducting fiber materials, biomedical materials, solar cell materials, eco-environment materials, and smart materials. At present, the research of advanced functional materials for textiles mainly focuses on carbon fiber, aramid 1414, ultra high molecular weight polyethylene (UHMWPE), polyimide, polyphenylene sulfide (PPS), PBO (poly(p-phenylene) benzo (Oxazole), M5 fiber (liquid crystal aromatic heterocyclic polymer poly 2,5-dihydroxy-l,4-phenylpyridinoimidazole), SiBNC ceramics and other fiber materials.
Functionalization strides toward "a well-off"
Wang Yaoxi said that the world's leading fashion brands have begun to try to add technology elements in their clothing, making their high-end clothes more high-performance features.
Introduce high-tech materials such as functional fibers into the field of professional wear protection, convert cutting-edge technologies into applied technologies, and focus on the research and development of occupational apparel in special fields such as aviation, navigation, metallurgy, electric power, and petrochemicals to meet high temperature resistance, acid and alkali resistance, and fire protection. Anti-radiation, anti-static and other special protection needs will be the key to the "good food and clothing" in the business wear industry.
Water Treatment products are mainly used for water cleaning, waste water and drinking water, swimming pool cleaning, can be used as bactericide agent and chelating agent.
The processes involved in removing the contaminants include physical processes such as settling and filtration, chemical processes such as disinfection and coagulation and biological processes such as slow sand filtration.
Measures taken to ensure water quality not only relate to the treatment of the water, but to its conveyance and distribution after treatment. It is therefore common practice to keep residual disinfectants in the treated water to kill bacteriological contamination during distribution.
World Health Organization (WHO) guidelines are a general set of standards intended to apply where better local standards are not implemeted. More rigorous standards apply across Europe, the USA and in most other developed countries. followed throughout the world for drinking water quality requirements
Water Treatment
Trichloroisocyanuric Acid,Sodium Dichloroisocyanurate,Calcium Hypochlorite
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