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    • 1. 发明申请
    • ELECTRICAL GENERATOR PARALLEL RING RESIN REMOVAL TOOLING
    • 发电机并联环形树脂拆卸工具
    • US20140059787A1
    • 2014-03-06
    • US14051278
    • 2013-10-10
    • AREVA NP Inc.
    • Bruce William SchaferJoseph Anthony Crockett
    • B08B9/047B08B9/043B08B9/045
    • B08B9/047B08B9/027B08B9/04B08B9/0436B08B9/045
    • A resin removal tooling system for electric generator parallel rings including: a non-rotating sheath; a shaft mounted in the non-rotating sheath; a cleaning ball attached to the shaft, the non-rotating sheath positioning the cleaning ball; a high speed motor coupled to the shaft for rotating the shaft; a variable power supply connected to the high speed motor; and a tachometer for measuring a rotational speed of the high speed motor and the cleaning ball. A process of cleaning resin out of an electrical generator parallel ring including the following steps: inserting a cleaning ball mounted on a shaft into the parallel ring; verifying a location of the cleaning ball; rotating the shaft; measuring a rotational speed of the cleaning ball with a tachometer; and removing resin with the cleaning ball.
    • 一种用于发电机平行环的树脂去除工具系统,包括:非旋转护套; 安装在非旋转护套中的轴; 安装在轴上的清洁球,非旋转鞘定位清洁球; 耦合到所述轴的用于旋转所述轴的高速电动机; 连接到高速电动机的可变电源; 以及用于测量高速电动机和清洁球的转速的转速计。 一种从发电机并联环中清除树脂的方法,包括以下步骤:将安装在轴上的清洁球插入平行环中; 验证清洁球的位置; 旋转轴; 用转速计测量清洁球的转速; 并用清洁球除去树脂。
    • 7. 发明授权
    • Method and system for recovering metal from metal-containing materials
    • 从含金属材料中回收金属的方法和系统
    • US07686865B2
    • 2010-03-30
    • US11795424
    • 2006-01-12
    • Chien M. WaiSydney S. Koegler
    • Chien M. WaiSydney S. Koegler
    • C22B60/02C22B60/04C22B3/26
    • C01G43/003B01D11/0203B01D11/0284B01D11/0288B01D11/0292C01P2006/80C22B3/0005C22B3/02C22B60/0239C22B60/026C22B60/04G21C19/46Y02P10/234Y02P20/544Y02W30/883
    • Embodiments of a method and a system for recovering a metal, such as uranium, from a metal-containing material are disclosed. The metal-containing material is exposed to an extractant containing a liquid or supercritical-fluid solvent and an acid-base complex including an oxidizing agent and a complexing agent. Batches of the metal-containing material are moved through a series of stations while the extractant is moved through the stations in the opposite direction. After the extraction step, the metal is separated from the solvent, the complexing agent and/or other metals by exposing the extract to a stripping agent in a countercurrent stripping column. The complexing agent and the solvent exit the column and are separated from each other by reducing the pressure. The recovered complexing agent is recharged with fresh oxidizing agent and recombined with fresh or recovered solvent to form a recovered extractant, which is distributed through the extraction stations.
    • 公开了一种用于从含金属的材料中回收诸如铀的金属的方法和系统的实施例。 含金属材料暴露于含有液体或超临界流体溶剂的萃取剂和包含氧化剂和络合剂的酸碱络合物。 含金属材料的批次通过一系列工位移动,同时将萃取剂沿相反方向移动通过工位。 在提取步骤之后,通过将提取物暴露于逆流汽提塔中的汽提剂将金属与溶剂,络合剂和/或其它金属分离。 络合剂和溶剂离开塔并通过降低压力彼此分离。 回收的络合剂用新鲜的氧化剂再充电并与新鲜或回收的溶剂重新组合以形成回收的萃取剂,其通过萃取站分配。