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    • 32. 发明授权
    • Crust breaking device
    • 地壳破碎装置
    • US09080245B2
    • 2015-07-14
    • US13510741
    • 2010-10-28
    • Peter Palsson
    • Peter Palsson
    • C22B9/00B22D41/00C25C3/14
    • C25C3/14Y02P10/262
    • A crust breaking device for metal melts includes a pneumatic cylinder having a cylinder housing, a piston, which is axially displaceable within the cylinder housing, and a piston rod, which is fastened to the piston. The piston rod is guided by the cylinder housing and movable between a retracted final position and an extended final position. The device includes an electronic control unit and a valve arrangement, which can be actuated via the electronic control unit and is connected via control lines to front and rear pressure chambers inside the cylinder housing. The device further includes at least one metal plate that is fixedly arranged within the cylinder housing in order to define a final position of the piston or the piston rod. The metal plate and the piston are electrically connected to the control unit such that a contact of the piston with the metal plate closes a circuit.
    • 用于金属熔体的外壳破碎装置包括气缸,其具有气缸壳体,可在气缸壳体内轴向移动的活塞以及紧固于活塞的活塞杆。 活塞杆由气缸壳体引导并在缩回的最终位置和延伸的最终位置之间移动。 该装置包括电子控制单元和阀装置,其可以经由电子控制单元被致动并且经由控制线连接到气缸壳体内的前后压力室。 该装置还包括至少一个金属板,其固定地布置在气缸壳体内,以便限定活塞或活塞杆的最终位置。 金属板和活塞电连接到控制单元,使得活塞与金属板的接触闭合电路。
    • 35. 发明授权
    • Method for the continuous or discontinuous extraction of a metal or several metals from a slag that contains the metal or a compound of the metal
    • 从含有金属或金属化合物的炉渣中连续或不连续地提取金属或几种金属的方法
    • US08157884B2
    • 2012-04-17
    • US12309796
    • 2007-10-25
    • Rolf DegelJürgen Kunze
    • Rolf DegelJürgen Kunze
    • C22B4/00C22B7/02
    • C22B7/04C21D5/04C22B4/04C22B4/08C22B5/04C22B5/18C22B15/0054F27B3/045F27B3/085F27D2099/0023Y02P10/212Y02P10/262
    • The invention concerns a method for the continuous or discontinuous extraction of a metal or several metals from a slag that contains the metal or a compound of the metal, in which the liquefied metal-containing slag is heated in a primary or secondary smelting unit (1). To provide an improved method for extracting metals, especially copper, from slags, the invention provides that the metal-containing slag is heated in a primary or secondary smelting unit (1) designed as an alternating-current electric furnace, and the molten material is then fed from the primary or secondary smelting unit (1) into a furnace (2) designed as a direct-current electric furnace, in which the metal to be extracted is subjected to an electrolytic separation, where a reducing agent in the form of calcium silicide (CaSi), calcium carbide (CaC2), ferrosilicon (FeO), aluminum (Al), and/or reducing gases is added and/or injected into the primary or secondary smelting unit (1).
    • 本发明涉及一种用于从含有金属或金属化合物的炉渣中连续或不连续地提取金属或几种金属的方法,其中含液化金属的炉渣在初级或次级冶炼单元(1 )。 为了提供从炉渣中提取金属,特别是铜的改进方法,本发明提供了在设计为交流电炉的初级或次级冶炼单元(1)中加热金属渣,熔融材料为 然后从主要或次要冶炼单元(1)进料到设计为直流电炉的炉子(2)中,其中待提取的金属进行电解分离,其中以钙的形式存在还原剂 将硅化物(CaSi),碳化钙(CaC 2),硅铁(FeO),铝(Al)和/或还原气体添加和/或注入到初级或次级熔炼单元(1)中。
    • 40. 发明申请
    • FLUE GAS COOLING AND CLEANING SYSTEM
    • 燃气冷却和清洁系统
    • US20100101760A1
    • 2010-04-29
    • US12529355
    • 2008-03-12
    • Geir WeddeOle K. Bockman
    • Geir WeddeOle K. Bockman
    • F28D7/10F28D15/00F27D17/00F28F1/02
    • F28F9/182C22B7/02C22B21/0038C25C3/22F27D17/004F28D7/16F28F1/025Y02P10/212Y02P10/262
    • An improved flue gas cooler (10), or bank of coolers (10), handles flue gas G from aluminium reduction cells in an aluminium smelter plant. The or each flue gas cooler (10) has a gas inlet chamber (14), a gas outlet chamber (16), and a matrix of gas cooling tubes (18) extending between the inlet chamber and the outlet chamber. Each cooling tube (18) has a bell-shaped inlet end (19) comprising an aerodynamically curved gas-accelerating profile effective to facilitate streamlined flow of flue gas G into the tube. The improved flue gas cooler makes it possible to connect the flue gas cooler to receive hot raw flue gas G direct from the aluminium reduction cells without getting clogged by dust and sublimates present in the flue gas. Once cooled, the flue gas can be safely passed on to a flue gas cleaning plant of the dry scrubbing type. The improved flue gas coolers are advantageously part of a system for using heat energy from the flue gas, in which a closed circuit coolant circulation system circulates coolant through the flue gas cooler and a heat exchange arrangement (24). Heat energy extracted from the coolant by the heat exchange arrangement (24) may be used to increase the efficiency of further plant coupled to the heat exchange arrangement.
    • 改进的烟道气冷却器(10)或冷却器组(10)处理铝冶炼厂中的铝还原电池的烟气G。 烟道气或烟气冷却器(10)具有气体入口室(14),气体出口室(16)和在入口室和出口室之间延伸的气体冷却管(18)的基体。 每个冷却管(18)具有钟形入口端(19),其包括空气动力学弯曲的气体加速曲线,其有助于促进烟道气流G流入管中。 改进的烟气冷却器可以连接烟气冷却器,从铝还原池直接接收热的原料烟气G,而不会被烟气中存在的灰尘和升华物堵塞。 一旦冷却,烟气可以安全地传递到干洗洗涤类型的烟道气清洁设备。 改进的烟道气冷却器有利地是用于使用来自烟道气的热能的系统的一部分,其中闭路冷却剂循环系统使冷却剂循环通过烟道气冷却器和热交换装置(24)。 通过热交换装置(24)从冷却剂提取的热能可用于提高与热交换装置耦合的进一步设备的效率。