Method for bleaching a hard surface using tungsten activated peroxide
    4.
    发明授权
    Method for bleaching a hard surface using tungsten activated peroxide 失效
    使用钨活化过氧化物漂白硬表面的方法

    公开(公告)号:US5904734A

    公开(公告)日:1999-05-18

    申请号:US745164

    申请日:1996-11-07

    CPC分类号: C11D3/3932

    摘要: Disclosed herein are bleaching systems that contain a peroxide and an activator. The activator is a tungsten containing compound, preferably sodium tungstate or tungstosilicic acid. When such bleaching systems are applied in an aqueous alkaline environment they can bleach mold, fungus, and the like.

    摘要翻译: 本文公开了含有过氧化物和活化剂的漂白体系。 活化剂是含钨化合物,优选钨酸钠或钨硅酸。 当这种漂白系统应用在碱性水溶液环境中时,它们可以漂白霉菌,真菌等。

    Precipitation of colloidal materials from aqueous systems by
electrochemical release of metallic flocculating agents and dynamic
bimetallic cell for use therein
    6.
    发明授权
    Precipitation of colloidal materials from aqueous systems by electrochemical release of metallic flocculating agents and dynamic bimetallic cell for use therein 失效
    通过电化学释放金属絮凝剂和用于其中的动态双金属电池,从水性体系中沉淀胶体材料

    公开(公告)号:US4749457A

    公开(公告)日:1988-06-07

    申请号:US829153

    申请日:1986-02-14

    IPC分类号: C02F1/461 C02F1/463 C02F1/46

    CPC分类号: C02F1/46176 C02F1/463

    摘要: A method of precipitating colloidal materials from aqueous systems and a dynamic bimetallic galvanic cell is disclosed, said cell including a metallic electrode which provides a source of flocculating agent and an inert electrode to which the metallic electrode is short circuited. When water containing colloidal particles is passed through the galvanic cell and the electrodes are short circuited, the metallic electrode provides a source of flocculating agent which coprecipitates with the colloidal particles, forming a sediment which can be readily removed. The cell is constructed to maximize the contact between the water and the electrode surfaces and to maintain the metallic electrode short circuited against the inert electrode as the metallic electrode is consumed.

    摘要翻译: 公开了一种从水性体系和动态双金属电池沉淀胶体材料的方法,所述电池包括提供絮凝剂源的金属电极和金属电极短路的惰性电极。 当含有胶体颗粒的水通过原电池并且电极短路时,金属电极提供与胶体颗粒共沉淀的絮凝剂源,形成可以容易地除去的沉淀物。 电池被构造成使水和电极表面之间的接触最大化,并且当金属电极被消耗时,使金属电极与惰性电极短路。