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    Air scavenger -- Satin tourmaline


    People spend more than 80% of their time indoors. With the modernization of production and lifestyle, more activities can be carried out indoors. Suitable indoor microclimate makes people do not have to adjust the thermal effect outdoors frequently. And even if the indoor pollution concentration is low, but the contact time is long, the cumulative contact volume is also high. Therefore, the relationship between indoor air quality and human health is more closely related.


    With the sustainable development of green economy in recent years, negative oxygen ions have entered our field of vision. Known as the "negative oxygen ion air vitamin", has a very important effect on the activities of human life, its concentration level with people's health is closely related to the existence of people constantly to purify the air, especially in today's increasingly serious air pollution.


    According to environmental experts, the concentration of negative oxygen ions in the air per cubic centimeter in 20 when the people feel tired; when the negative oxygen ions per cubic centimeter of air in between 1000~10000, people will feel calm and stability; when the number of negative oxygen ions per cubic centimeter of air in more than 10000, people will feel comfortable; and when the number of negative oxygen ions per cubic centimeter of air in more than 100 thousand, can serve to check out, adjust nerve disease prevention and cure effect.



    Pilot ceramic enterprises have been adhering to the forefront of the industry, draw fresh development information. While actively responding to the slogan of green sustainable development, environmental protection is also integrated into the product. Take this fair, "Satin tourmaline" heavy launch.



    As a function of health concerns, "Satin tourmaline" added anion glaze, using natural inorganic materials through nanotechnology to nanoscale, the lattice defect, followed by using sensitized rare earth materials, which can be a large number of long-term release of negative oxygen ions.