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    • 4. 发明公开
    • A method of recycling waste fluorescent lamps
    • 回收废荧光灯的方法
    • EP2453460A3
    • 2012-11-28
    • EP11188398.9
    • 2011-11-09
    • Shirai Tech, LimitedKramy Technical Research Laboratory, Ltd.
    • Kuramoto, Shunji
    • H01J9/50H01J9/52
    • H01J9/52Y02W30/60Y02W30/828
    • [Subject]
      A method for recycling the waste fluorescent lamp which can be peeled off the layers formed in the internal surface of the glass tube without crushing the whole of glass tube.
      [Solution]
      Immerse the lower edge of the waste fluorescent lamp (10) under the peeling liquid (30), and push the lower edge of the waste fluorescent lamp harder against the protrusion (34). The protrusion will penetrate the ferrule (14) in the lower edge of the waste fluorescent lamp and crush the base end section of the exhaust tube. Next, the peeling liquid will be absorbed and fulfilled inside the glass tube using the vacuum state maintained inside the glass tube. After the layers are peeled off, the protrusion tool (42) will penetrate the ferrule (14) in the upper edge of the waste fluorescent lamp and crush the base end section of the exhaust tube. And then move the waste fluorescent lamp upwards, the peeled layers will naturally be discharged with the peeling liquid from the crushed exhaust tube in the lower edge of the glass tube because an air will intake from the crushed exhaust tube in the upper edge of the glass tube.
    • [主题]一种回收可从玻璃管内表面中形成的层剥离的废荧光灯的方法,而不会破坏整个玻璃管。 [解决方法]将废荧光灯(10)的下边缘浸入剥离液(30)下面,并将废荧光灯的下边缘朝向突出部分(34)推进。 突起将穿过废荧光灯下边缘中的套圈(14)并压碎排气管的基端部分。 接着,利用保持在玻璃管内部的真空状态,剥离液在玻璃管内部被吸收并实现。 在剥离层之后,突出工具(42)将穿过废荧光灯的上边缘中的套圈(14)并压碎排气管的基端部分。 然后将废荧光灯向上移动,被剥离的层自然会随着玻璃管下边缘的破碎排气管中的剥离液排出,因为空气会从玻璃上边缘的压扁排气管中吸入 管。
    • 5. 发明公开
    • A method of recycling waste fluorescent lamps
    • Verfahren zum Recyceln von Altleuchtstofflampen
    • EP2453460A2
    • 2012-05-16
    • EP11188398.9
    • 2011-11-09
    • Shirai Tech, LimitedKramy Technical Research Laboratory, Ltd.
    • Kuramoto, Shunji
    • H01J9/50H01J9/52
    • H01J9/52Y02W30/60Y02W30/828
    • [Subject]
      A method for recycling the waste fluorescent lamp which can be peeled off the layers formed in the internal surface of the glass tube without crushing the whole of glass tube.
      [Solution]
      Immerse the lower edge of the waste fluorescent lamp (10) under the peeling liquid (30), and push the lower edge of the waste fluorescent lamp harder against the protrusion (34). The protrusion will penetrate the ferrule (14) in the lower edge of the waste fluorescent lamp and crush the base end section of the exhaust tube. Next, the peeling liquid will be absorbed and fulfilled inside the glass tube using the vacuum state maintained inside the glass tube. After the layers are peeled off, the protrusion tool (42) will penetrate the ferrule (14) in the upper edge of the waste fluorescent lamp and crush the base end section of the exhaust tube. And then move the waste fluorescent lamp upwards, the peeled layers will naturally be discharged with the peeling liquid from the crushed exhaust tube in the lower edge of the glass tube because an air will intake from the crushed exhaust tube in the upper edge of the glass tube.
    • [主题]回收废光荧光灯的方法,其可以从玻璃管内表面上形成的层剥离,而不破坏整个玻璃管。 [解决方案]将废光荧光灯10的下边缘浸入剥离液体30的下方,将废弃荧光灯的下边缘更靠近突起34推动。 突起将穿过废荧光灯的下边缘中的套圈(14)并且挤压排气管的基端部分。 接着,使用保持在玻璃管内部的真空状态,在玻璃管的内部吸收剥离液。 在剥离层之后,突起工具(42)将穿过废荧光灯的上边缘中的套圈(14)并且破坏排气管的基端部分。 然后将废光荧光灯向上移动,剥离的层自然会被玻璃管下边缘的破碎排气管的剥离液排出,因为空气将从玻璃的上边缘的破碎排气管中吸入 管。
    • 6. 发明公开
    • Device and method for removing mercury from mercury-contaminated material
    • 装置和方法用于去除汞的汞污染的材料
    • EP2425900A2
    • 2012-03-07
    • EP11179001.0
    • 2011-08-26
    • MRT System International AB
    • Nilsson, Magnus
    • B07B1/18B07B1/56B09B3/00C22B43/00H01J9/50
    • B07B1/18B07B1/22B07B1/56B09B3/00C22B7/001C22B43/00Y02P10/214
    • A device (10) for removing mercury from mercury-contaminated material, comprising a chamber (11) having an inlet (13) for mercury- contaminated material, and a sieve (12) arranged inside the chamber (11) for separating a larger material fraction of the mercury-contaminated material from a smaller material fraction thereof, wherein the chamber (11) is provided with a first outlet (14) for the larger material fraction and a second outlet (15) for the smaller material fraction. The device (10) comprises at least one heating element (18) to evaporate mercury on at least the larger material fraction inside the chamber (11), so that mercury on the larger material fraction is removed by heating. The chamber (11) is provided with a third outlet (19) for an outlet flow of vaporized mercury.
    • 腔室(11)内设置的,用于分离较大的材料的装置(10),用于从汞污染材料中除去汞,包括用于汞污染的材料的腔室(11),其具有在入口(13),和一个筛(12) 从其较小材料馏分汞污染的材料,worin腔室(11)设置有一个第一出口(14),用于较大的物料组分和较小的物料组分的第二出口(15)的级分。 的装置(10)包括至少一个加热元件(18),以蒸发至少该室(11)内的较大部分材料的汞,所以没有在较大的物料组分汞通过加热除去。 腔室(11)设置有第三出口(19),用于在气化汞的出口流。