New Material: Cotton-Sim Bionic To Deal With The Harm Of Micro Plastics To Marine Ecology
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In 2004, Thompson and others from the University of Plymouth, UK, published a paper on plastic debris in marine water and sediment in the journal Science. They first proposed the concept of "microplastics", which refers to plastic fragments and particles less than 5 mm in diameter. In fact, the particle size of microplastics ranges from a few microns to a few millimeters, which is a heterogeneous mixture of plastic particles with various shapes, which is often difficult to distinguish with the naked eye, and is described as "PM2.5 in the sea".
It is mainly caused by micro plastic carrier. The small volume of microplastics means higher specific surface area (specific surface area refers to the surface area per unit mass of porous solid material). The larger the specific surface area, the stronger the ability to adsorb pollutants.
Once the microplastics and pollutants meet, they just gather to form an organic pollution sphere. Microplastics act as mounts of pollutants, both of which can roam around the environment.
The wandering microplastics are easy to be eaten by mussels, zooplankton and other low-end food chain organisms. They can not be digested and can only exist in the stomach, occupying space, leading to diseases and even death of animals; If the micro plastic with organic pollutants is eaten, the damage to these plankton is even worse. The pollutants are released under the action of enzymes in the organism, which aggravates the disease. Mussels, zooplankton and other organisms at the bottom of the food chain will be eaten by the upper layer animals. Micro plastics, even micro plastics and organic pollutants enter the upper layer of the animal body. Only 1% of the harmful substances in the bottom animal body, but 20% in the upper layer, which will make a large number of micro plastic eating organisms sick or dead.
Compared with the "white pollution" plastics, the harm of microplastics is reflected in the small particle diameter, which is the reason why compared with the general non degradable plastics, the micro plastics do more harm to the environment.
Centre for ecological impact research on coastal cities, University of Sydney More microplastics have been found on the coast of densely populated areas and identified as an important source of waste water from household washing machines.
They point out that every time a garment is washed, more than 1900 fibers are washed out, and these fibers look exactly like tiny plastic fragments found in coastal areas. They say the problem is likely to intensify in the future.
Wipes: polyester, polyethylene, styrene, etc., wipes will release plastic fibers. After washing, a large number of synthetic fibers, such as polyester and polyamide, will be released after washing. After drying, the fiber will disperse into the air and become respirable dust.
New technology of cotton-sim bionic cotton developed
Cotton SIM is an environment-friendly and green textile product developed by Mr. Zeng Xiang in Zeng Ye Textile Science and technology studio a few years ago. It uses waste materials such as old plastic bottle to produce colored masterbatch. The color is phthalocyanine pigment. The coloring process does not need water. It does not need dyeing process for subsequent weaving process, which means no sewage discharge, Colored staple fiber is produced by drawing, and colored grey yarn is blended by special technology. Various fashionable colorful fabrics are made by computer matching. After finishing, all kinds of colorful fabrics with cotton hand feel are green textile products with continuous development and recycling.
In order to cooperate with Zeng Ye Textile Science and technology studio under the epidemic situation, combined with physical anti-bacterial technology, it can obtain permanent anti-virus and anti-bacterial function from raw materials to fabrics, so as to ensure consumers' health protection while purchasing environmental protection products.
Permanent anti-virus and antibacterial function
1. Physical wave frequency antibacterial Technology: everything in the universe has frequency. If you master the frequency and use it scientifically, you can get amazing results. Our company collects a lot of bacteria frequency data, forms multi-dimensional scalar field through the wave frequency resonance principle, and takes advantage of the unique amplification energy of scalar wave, carries the antibacterial wave frequency and penetrates all objects, and has resonance effect with the objects. The antibacterial information wave frequency is superimposed on the object without changing the original properties of the object, so as to achieve the antibacterial effect.
2. Uvc-fac-uvc can rapidly reduce the number of air borne pathogens in mice by UV-vis spectroscopy, while keeping the number of airborne pathogens safe for mice. Far UVC reduced the pathogen load by up to 98.4% in a few minutes and kept the environmental level at a 92% reduction, in line with ICNIRP guidelines.
Now Zengye textile technology studio uses bionic cotton cotton cotton-sim with any material to produce fabrics with different ingredients. Bionic cotton colorful garment can be recycled and recycled to give the second life extension, and 100% recycling. The whole process has passed the LCA of sustainable textile.
The original development concept of cotton-sim bionic cotton was developed in accordance with the European Commission's proposal called European Green deal, hoping to make sustainable products a normal in the EU and promote the development of recyclable business models.
The proposal covers almost all physical goods, hoping to make them more environmentally sound, more sustainable, and more efficient in their life cycle from design to production to recycling.
Now the new generation of products combined with the market needs to increase anti-virus and antibacterial functions to the safest, most environmentally friendly innovation! Technology production, no chemical addition, the whole process from raw materials to finished products are water-free production, there is no chance of pollution and secondary pollution, the product is the second life, the finished product can be recycled into the third life product after use.
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