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    • 81. 发明授权
    • Methods for removing heavy metals from water using chemical precipitation and field separation methods
    • 使用化学沉淀和野外分离方法从水中去除重金属的方法
    • US07255793B2
    • 2007-08-14
    • US11135644
    • 2005-05-24
    • Steven L. Cort
    • Steven L. Cort
    • C02F1/48C02F101/20
    • B03C1/30B03C1/015B03C1/03B03C1/286C02F1/24C02F1/38C02F1/488C02F1/5236C02F1/54C02F1/56C02F1/66C02F9/00C02F2101/20C02F2101/22C02F2103/001C02F2103/06C22B3/22C22B3/44Y02P10/234Y10S210/912Y10S210/913Y10S210/914
    • A two-step chemical precipitation process involving hydroxide precipitation and sulfide precipitation combined with “field separation ” technology such as magnetic separation, dissolved air flotation, vortex separation, or expanded plastics flotation, effectively removes chelated and non-chelated heavy metal precipitates and other fine particles from water. In the first-step, the non-chelated heavy metals are precipitated as hydroxides and removed from the water by a conventional liquid/solids separator such as an inclined plate clarifier to remove a large percentage of the dissolved heavy metals. The cleaned water is then treated in a second precipitation step to remove the residual heavy metals to meet discharge limits. In the second precipitation step, any metal precipitant more effective than hydroxide for metal precipitation can be used. The invention improves metal removal, lowers cost because fewer chemicals are used, produces less sludge, and reduces the discharge of toxic metals and metal precipitants to the environment. Magnetic separation is preferred for the separation of particles precipitated in the second stage. Similar methods can be employed for separation of other particulates from water. Particulates can also be removed by causing them to adhere to particles of expanded plastic, forming a floc lighter than water, so that the floc can be removed by flotation.
    • 一个包括氢氧化物沉淀和硫化物沉淀的两步化学沉淀过程结合磁选分离,溶解气浮,涡流分离或膨胀塑料浮选等“场分离”技术,有效去除螯合和非螯合重金属沉淀等细 来自水的颗粒。 在第一步中,非螯合重金属作为氢氧化物沉淀,并通过常规的液体/固体分离器如倾斜板式澄清器从水中除去,以除去大部分溶解的重金属。 然后将清洁的水在第二沉淀步骤中处理以除去残留的重金属以达到排放极限。 在第二沉淀步骤中,可以使用比氢氧化物更有效的金属沉淀剂用于金属沉淀。 本发明改善金属去除,降低成本,因为使用更少的化学品,产生更少的污泥,并且减少有毒金属和金属沉淀剂向环境的排放。 磁分离优选用于分离在第二阶段中沉淀的颗粒。 可以采用类似的方法将其它颗粒与水分离。 颗粒也可以通过使它们粘附到膨胀塑料颗粒上,形成比水更轻的絮体,从而可以通过浮选除去絮凝物。
    • 82. 发明申请
    • Magnetic tool cleaner
    • 磁性工具清洁剂
    • US20070132256A1
    • 2007-06-14
    • US11298125
    • 2005-12-09
    • Earl ParrisJohn Kay
    • Earl ParrisJohn Kay
    • B25J15/06
    • B25B9/00B03C1/0332B03C1/284B03C1/286B08B7/00B25B11/002
    • The invention generally involves an apparatus and method for cleaning metal debris from a tool. The tool may have magnetic properties. The magnetic cleaner comprises a magnetic element suitably sized to interface with a surface of a tool associated with metal debris. The apparatus is preferably configured to be operated with one hand and may comprise a protective housing that surrounds a magnetic element. The housing has a magnetic interface constructed of magnetically transparent material with the remainder of the housing optionally constructed from material that forms a magnetic barrier. The magnetic element may be movably associated with the housing allowing the magnetic element to be associated/disassociated with the housing magnetic interface. The apparatus may further comprise a resilient element that defines a bias force that tends to keep the magnetic element disassociated from the housing magnetic interface.
    • 本发明通常涉及用于从工具清洁金属碎屑的装置和方法。 该工具可能具有磁性。 磁性清洁器包括适合于与金属碎片相关联的工具的表面相接合的磁性元件。 该装置优选地被配置为用一只手操作并且可以包括围绕磁性元件的保护壳体。 壳体具有由磁性透明材料构成的磁性接口,其中壳体的其余部分由构成磁屏障的材料构成。 磁性元件可以与壳体可移动地相关联,允许磁性元件与壳体磁性界面相关联/分离。 该装置还可以包括弹性元件,该弹性元件限定倾向于使磁性元件与壳体磁性界面分离的偏压力。
    • 83. 发明申请
    • Apparatus, System and Method for Evaluating Fluid Systems
    • 用于评估流体系统的装置,系统和方法
    • US20070015292A1
    • 2007-01-18
    • US11458287
    • 2006-07-18
    • Barry RuddickChristopher Taggart
    • Barry RuddickChristopher Taggart
    • G01N33/551C12M1/34B03C1/02B01D35/06
    • B03C1/01B03C1/286
    • In one aspect, the invention relates to a system for evaluating a fluid system, which includes one or more batches of magnetically-responsive particles and one or more magnetic particle-collectors. In some embodiments, the magnetically-responsive particles have a composition that includes elements that are attracted by magnetic fields, but are not themselves magnetically-attractive. Each batch of magnetically-responsive particles can be released into the fluid system at a location upstream from the magnetic particle-collectors. The particles will follow fluid paths, experiencing effects, such as for example and without limitation, dispersion, diffusion and advection as they move through the fluid system. As particles reach the vicinity of the magnetic particle-collectors, the magnetically-responsive particles will be attracted into and held by the magnetic field and physical structure of the magnetic particle-collectors. The magnetically-responsive particles collected by each collector are then quantified and compared to the number of magnetically-responsive particles collected by other collectors, thereby providing a means for collecting information about the fluid system.
    • 一方面,本发明涉及一种用于评估流体系统的系统,该系统包括一批或多批磁响应颗粒和一个或多个磁性颗粒收集器。 在一些实施例中,磁响应颗粒具有包括被磁场吸引但不是磁吸引力的元素的组成。 每个批次的磁响应颗粒可以在磁性颗粒收集器上游的位置被释放到流体系统中。 颗粒将遵循流体路径,经历影响,例如但不限于它们移动通过流体系统时的分散,扩散和对流。 随着颗粒到达磁性颗粒收集器的附近,磁响应颗粒将被磁性颗粒收集器的磁场和物理结构吸引并保持。 然后对每个收集器收集的磁响应颗粒进行定量,并与其他收集器收集的磁响应颗粒的数量进行比较,从而提供收集关于流体系统的信息的手段。
    • 88. 发明申请
    • Magnetic fluid filter adapter
    • 磁性流体过滤器适配器
    • US20040245179A1
    • 2004-12-09
    • US10891933
    • 2004-07-15
    • Stewart D. Elsegood
    • C02F001/48
    • F01M11/03B01D27/00B01D35/06B01D35/306B03C1/286B03C1/288B03C2201/18B03C2201/30F01M2001/1042
    • A filter adapter for removing metallic particles from fluid. The adapter is cylindrical in shape and includes an attachment insert for mounting the adapter between a source in a fluid flow system and a conventional filter. The adapter has a ring shaped magnet held in the housing of the adapter by magnet holders, and a sealing gasket having multiple raised portions so as to provide multiple sealing surfaces to engage a sealing surface of a fluid source. The adapter has a plurality of perforations in the top and bottom for the flow of unfiltered fluid from the fluid source, through the adapter, and to the conventional filter. The attachment insert is hollow so as to allow filtered oil to flow back from the conventional filter to the fluid system the adapter is attached to.
    • 用于从流体中去除金属颗粒的过滤器适配器。 适配器是圆柱形的,并且包括用于将适配器安装在流体流动系统中的源和常规过滤器之间的附接插入件。 适配器具有通过磁体保持器保持在适配器的壳体中的环形磁体和具有多个凸起部分的密封垫圈,以便提供多个密封表面以接合流体源的密封表面。 适配器在顶部和底部具有多个穿孔,用于来自流体源的未过滤流体的流动,通过适配器和常规过滤器。 附件插入件是中空的,以便使过滤的油从常规过滤器流回到适配器附接到的流体系统。
    • 89. 发明授权
    • Magnetic particle separator and method
    • 磁粉分离器及方法
    • US06730217B2
    • 2004-05-04
    • US10113658
    • 2002-03-29
    • William R. SchaafRay R. Arel
    • William R. SchaafRay R. Arel
    • B01D3506
    • B03C1/286B03C2201/18
    • A tank [A] has a fluid inlet, a fluid outlet, and a closure [B] wherein the tank may be positioned in line as a pressure vessel. A magnetic core assembly includes elongated permanent magnets [C] and magnet covers or tubes [D] constructed of non-magnetic material for collecting magnetic particles from a liquid. The core assembly is carried in the tank and is removable after the separate closure is removed from the tank. The method contemplates separating the magnets from the tubes for removal of the magnetic particles from the magnetic core assembly externally of the tank and independently of the closure.
    • 罐[A]具有流体入口,流体出口和封闭件[B],其中罐可以作为压力容器排成直线。 磁芯组件包括由用于从液体收集磁性颗粒的非磁性材料构成的细长永磁体[C]和磁体盖或管[D]。 芯组件被装载在罐中,并且在从罐中移除单独的封闭件之后是可拆卸的。 该方法考虑将磁体与管分离,以从磁体外部的磁芯组件除去磁性颗粒并且独立于闭合件。
    • 90. 发明申请
    • Magnetic filter
    • 磁性过滤器
    • US20020139740A1
    • 2002-10-03
    • US09819429
    • 2001-03-28
    • Gunther E. Asterlin
    • B01D035/06
    • B03C1/284B03C1/0332B03C1/286B03C2201/18
    • A magnetic filter removes magnetic particles from fluid communicated through the filter. The filter includes elongated, circumferentially spaced magnetic elements which capture magnetic particles entrained in the fluid. The magnetic elements must be cleaned periodically to remove the particles from the elements by moving a scraper plate from one end of the housing to the other. At the end of travel of the scraper plate, the particles are scraped upon non-magnetic end portions (which may contain residual magnetism) of the magnetic elements, from which they are flushed by fluid communicated through the inlet port out through other ports provided on the housing.
    • 磁性过滤器从通过过滤器的流体中除去磁性颗粒。 过滤器包括细长的周向间隔开的磁性元件,其捕获夹带在流体中的磁性颗粒。 必须定期清洁磁性元件,以便通过将刮板从外壳的一端移动到另一端,以将元件从元件上移除。 在刮板行进结束时,将颗粒刮在磁性元件的非磁性端部(可能含有剩余磁性)上,这些磁性元件由通过入口端口通过设置在其上的其它端口流出​​的流体冲洗掉 住房。