Method of treating exhaust gas
    3.
    发明授权
    Method of treating exhaust gas 失效
    废气处理方法

    公开(公告)号:US5254797A

    公开(公告)日:1993-10-19

    申请号:US981983

    申请日:1992-11-24

    CPC分类号: B01D53/8668 B01D53/8662

    摘要: A catalyst composition including component A and component B, the component A being a carrier, preferably having a honeycomb structure, and being a single-component oxide or a multi-component composite oxide of at least one metal of titanium, silicon and zirconium, and the component B being a catalyst component deposited on the carrier of component A and being at least one member selected from the group of noble metals and other specifically limited metals and their oxides, is very effective for decomposing and removing poisonous organic chlorine compounds, such as dioxin and the like, or poisonous organic chlorine compound-forming substances contained in an exhaust gas exhausted from an incinerator of an incineration plant provided with the incinerator and a dust collector. In addition, and the generation of the poisonous organic chlorine compound from the incineration plant can be prevented.

    摘要翻译: 包含组分A和组分B的催化剂组合物,组分A是载体,优选具有蜂窝结构,并且是至少一种钛,硅和锆的金属的单组分氧化物或多组分复合氧化物,以及 组分B是沉积在组分A的载体上的催化剂组分,并且是选自贵金属和其它特别有限的金属及其氧化物中的至少一种,对于分解和除去有毒的有机氯化合物是非常有效的,例如 二恶英等,或从设置有焚化炉的焚烧厂的焚化炉排出的排气中含有的有机的含氯化合物形成物质和集尘器。 此外,可以防止来自焚烧装置的有机有机氯化合物的产生。

    Method of decomposing flow
    4.
    发明授权
    Method of decomposing flow 失效
    分解流动的方法

    公开(公告)号:US5206003A

    公开(公告)日:1993-04-27

    申请号:US803903

    申请日:1991-12-09

    IPC分类号: A62D3/00 B01D53/86

    CPC分类号: B01D53/8662

    摘要: An excellent method of decomposing flon is provided which can decompose flon economically with high decomposition efficiency without necessitating high temperature and high pressure by contacting a gas containing a flon with a catalyst at a condition of a temperature of not less than 200.degree. C. and space velocity of not over than 50,000 (hr.sup.-1).

    摘要翻译: 提供了一种分解氟里昂的优良方法,可以在高分解效率下经济地分解氟里昂,而不需要高温高压,在不低于200℃的温度和不超过200℃的条件下将含有氟里昂的气体与催化剂接触 速度不超过50,000(hr-1)。