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AKM42E-AN-320VDC AKM42E-ANCNGB00

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產品價格: 88/人民幣 
最后更新: 2017-07-26 15:44:23
產品產地: 本地
發貨地: 泉州 (發貨期:當天內發貨)
供應數量: 不限
有效期: 長期有效
最少起訂: 1
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    (DCS系統)和(機器人系統)及(大型伺服控制系統)備件大賣!叫賣!特賣!賣賣賣!
    Most people have experienced a sunburn caused by ultraviolet radiation whose intensity exceeds the skin's natural protective ability to tan. Moreover, ultraviolet radiation can damage many polymers (plexiglass, polyethylene, polypropylene, etc.), a phenomenon known as ultraviolet ageing.

    Various filters and additives to polymer compositions and suntan creams are widely used in the world to protect against radiation's harmful and damaging effects. Filters are usually metal oxide based, such as titanium dioxide or zinc oxide. But some sources have reported that titanium dioxide nanoparticles may cause cancer, while zinc oxide is inconvenient in that it is white in color (it is the main component of ZnO-based white paint).

    To achieve a universal UV safety filter, NUST MISIS researchers, in cooperation with the Blokhin Russian Oncological Scientific Center, came up with a new approach based on the chemical synthesis of zinc nanoparticles with a modified surface.

    They learned how to control the optical properties of zinc oxide nanoparticle-based UV filters directly in the process of their chemical synthesis. During experiments, a solution of nanoparticles and polypropylene film with a nanostructured additive demonstrated 100% absorption of Type B ultraviolet.

    "We have synthesized zinc oxide nanoparticles with a modified surface," MISIS researcher Svetlana Senatova, PhD Chemistry, said. "The study of how a modified surface impacts the chemical and physical properties of zinc oxide nanoparticles has shown that the resultant nanoparticles can be used as safety filters against UV radiation. Our in vitro experiments have demonstrated the lack of hematoxicity in synthesized nanoparticles with a surface modified by silane-containing compounds as they were incubated with donor blood."

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