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    • 1. 发明授权
    • Solvent extraction of impurity metals from a valuable metal sulphate solution
    • 从有价值的金属硫酸盐溶液中溶剂萃取杂质金属
    • US07727496B2
    • 2010-06-01
    • US10168704
    • 2000-12-19
    • John O'CallaghanTony Chamberlain
    • John O'CallaghanTony Chamberlain
    • B01D11/00
    • C22B3/0066C22B23/043C22B23/0453C22B23/0484Y02P10/234
    • The present invention relates generally to a method of extracting cobalt and other impurity metals from a concentrated nickel sulphate solution by a solvent extraction process whereby a cationic solvent extractant is separately pre-equilibrated with a portion of a purified nickel sulphate solution in such a manner that it is loaded with nickel without precipitating insoluble nickel double salts. The nickel loaded extracted is then transferred to an impure cobalt nickel solution where the cobalt and certain other impurity metals exchange with nickel leaving a purified concentrated nickel sulphate solution suitable for hydrogen reduction or electrowinning. The cobalt loaded extractant is stripped with dilute sulphuric acid before being recycled while an aqueous cobalt stripped solution is further processed to recover cobalt.
    • 本发明一般涉及一种通过溶剂萃取方法从浓硫酸镍溶液中提取钴和其它杂质金属的方法,其中阳离子溶剂萃取剂与一部分纯化的硫酸镍溶液分开预平衡,使得 它装载有镍,而不会沉淀出不溶性的镍复合盐。 然后将镍负载的萃取物转移到不纯的钴镍溶液中,其中钴和某些其它杂质金属与镍交换,留下适合于氢还原或电解沉积的纯化的浓硫酸镍溶液。 将钴负载的萃取剂在再循环之前用稀硫酸汽提,同时进一步处理钴汽提溶液以回收钴。
    • 2. 发明授权
    • Buffered stacker
    • 缓冲堆垛机
    • US5503388A
    • 1996-04-02
    • US326124
    • 1994-10-19
    • Kenneth GuentherJohn HammaJohn O'CallaghanGeorge RabindranAnthony StoraceMichael Wisniewski
    • Kenneth GuentherJohn HammaJohn O'CallaghanGeorge RabindranAnthony StoraceMichael Wisniewski
    • B65H31/30B65H39/10
    • B65H31/3081B65H39/10B65H2301/42254B65H2301/42266B65H2511/152B65H2701/1916
    • A buffered stacking apparatus selectively diverts horizontally disposed documents from a main conveying path, then stacks and transports the documents to replaceable receiving receptacles. The apparatus has a primary horizontal conveyor belt with a lower reach defining a horizontal primary conveying path and at least one secondary conveyor belt having an upper reach which, when the secondary conveyor belt is in a horizontal position, is disposed in a lower juxtaposed relation to the lower reach of the primary conveying belt. The buffered stacking system also selectively effects pivotal movement of the secondary conveyor belt from the horizontal position to a second inclined position wherein the reach of the secondary belt is inclined to the lower reach of the primary conveyor belt. Documents being transported along the primary conveying path are diverted along the inclined reach when the secondary conveying belt is inclined. The documents diverted at the selected diverter station are transported by the inclined reach to a corresponding buffer assembly which horizontally stacks and aligns the documents. The buffer assembly includes a sweeping device which engages and selectively sweeps the stacked documents from the buffer assembly to the corresponding receiving receptacle disposed transversely adjacent the buffer assembly.
    • 缓冲堆放装置选择性地将水平放置的文件从主输送路径转向,然后将文件堆叠并运送到可更换的接收容器。 该装置具有主要的水平输送带,其具有下限,其限定水平主输送路径,以及至少一个次级输送带,其具有上段,当次级输送带处于水平位置时,该传送带以较低的并列关系 主输送带的下限。 缓冲堆叠系统还选择性地实现辅助输送带从水平位置到第二倾斜位置的枢转运动,其中次级带的到达倾斜于主输送带的下部。 当二次输送带倾斜时,沿着主输送路径输送的文件沿着倾斜的距离转向。 在选定的转移站转移的文件通过倾斜的距离传送到相应的缓冲组件,水平堆叠和对准文件。 缓冲器组件包括扫掠装置,其将堆叠的文件从缓冲器组件接合并选择性地扫掠到横向邻近缓冲器组件设置的对应的接收容器。