首页> 外国专利> Methods for separation of rich adherent particles containing non-magnetic mineral particles, and oxidation elements with these magnetic particles, especially confidence, such as Fe3O4

Methods for separation of rich adherent particles containing non-magnetic mineral particles, and oxidation elements with these magnetic particles, especially confidence, such as Fe3O4

机译:分离富含非磁性矿物质颗粒的富粘附颗粒以及带有这些磁性颗粒特别是可信度的氧化元素的方法,例如Fe3O4

摘要

As for the method of separating the rich adhesive particles with rich mineral particles, and the magnetic particles combined with these magnetic particles, especially Fe3O4, when one method is adopted to obtain the rich mineral and magnetic particles, it is combined by organic molecular chain, In this case, the polymer is in a suspension state with carrier liquid and is broken by using embedded energy. Such a kind of substance agent in the suspension can decompose the free molecular chain and play a role as an underwater organism, which can attack the molecular chain,On this basis, the oxidation element with confidence is separated from the shelving, during the magnetic separation process
机译:至于用富矿物质颗粒分离富粘附剂颗粒的方法,以及与这些磁性颗粒结合的磁性颗粒,特别是Fe3O4,当采用一种方法获得富矿物质和磁性颗粒时,是通过有机分子链结合的,在这种情况下,该聚合物与载液处于悬浮状态,并通过使用嵌入的能量使其破碎。悬浮液中的这种物质可以分解自由分子链,起到水下生物的作用,可以攻击分子链。在此基础上,在磁分离过程中,有信心地将氧化元素从搁架中分离出来。处理

著录项

  • 公开/公告号PE20120210A1

    专利类型

  • 公开/公告日2012-03-09

    原文格式PDF

  • 申请/专利权人 SIEMENS AKTIENGESELLSCHAFT;BASF SE;

    申请/专利号PE20160201100

  • 发明设计人 DANOV VLADIMIR;HARTMANN WERNER;

    申请日2009-09-01

  • 分类号B03C1/015;B03C1/30;B03C1/32;

  • 国家 PE

  • 入库时间 2022-08-21 17:23:24

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