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    • 83. 发明授权
    • Apparatus and method for treating slurries
    • US09610520B2
    • 2017-04-04
    • US14445910
    • 2014-07-29
    • CALX LIMITED
    • Lorne Dean OnstadCordell Simoneau
    • B01D21/02B01D21/00B01D21/24
    • B01D21/003B01D21/0045B01D21/0051B01D21/0066B01D21/2416B01D21/2461
    • There is provided a material treatment apparatus. The material treatment apparatus includes a first compartment. The first compartment includes an inlet for receiving supply of slurry material, and a first material conduction space for conducting flow of the supplied slurry material in a downwardly direction. A second compartment is also provided including a second material conduction space for receiving a first intermediate material of the supplied slurry material and conducting the first intermediate material in an upwardly direction. A baffle is provided for interfering with conducting of the supplied slurry material from the first material conduction space to the second material conduction space. A turbulent flow mitigation device is disposed within the first compartment and configured to, upon interaction with the supplied slurry material, to effect adjustment to the flow characteristics of the supplied slurry material to generate a downwardly flowing flow characteristic-adjusted slurry material, wherein the flow characteristics of the supplied slurry material are transformed from turbulent flow to laminar flow. The turbulent flow mitigation device is disposed, relative to the baffle, such that the baffle directs the downwardly flowing flow characteristic-adjusted slurry material to a space below the first baffle. The first material conducting space is fluidly coupled, below the baffle, to the second material conduction space, such that the first intermediate material fraction of the downwardly flowing flow characteristic-adjusted slurry material is conducted to the second material conduction space from below the baffle. A collection region is disposed below the first and second compartments for collecting a separated solids-comprising fraction that has separated, by gravity settling, from the supplied slurry material.
    • 84. 发明申请
    • METHOD AND APPARATUS FOR IN SITU CLEANING OF TUBE SETTLERS IN WATER CLARIFICATION
    • 用于水清洗中管道清洗装置的方法和装置
    • US20160101375A1
    • 2016-04-14
    • US14511881
    • 2014-10-10
    • HAMBLEY David MHambley Philip
    • HAMBLEY David MHambley Philip
    • B01D21/00
    • B01D21/0006B01D21/0051B01D21/28C02F1/5281C02F2001/007
    • Apparatus and method to remove sediment from tubes of a tube settler assembly used in water clarification. A series of tube laterals extends beneath the area of the tube settler assembly and allows air to escape from air exit holes in the tube laterals. An air supply provides air to the tube laterals. The air released from one tube lateral may be released by a second tube lateral at a time different from the time of air released by the first tube lateral. The air entrained in liquid rises and dislodges sediment in the tubes of the tube settler assembly. A flow deflector may be located below the structure supporting the tube settler assembly to deflect rising air into the tube settler assembly which would otherwise be blocked from air entry.
    • 从水净化中使用的管道沉降器组件的管道中除去沉淀物的装置和方法。 一系列管子在管沉降器组件的区域下方延伸,并允许空气从管道中的空气出口孔逸出。 空气供应器向管道侧提供空气。 从一个管侧向释放的空气可以在不同于第一管侧面释放的空气的时间的第二管侧向释放。 夹带在液体中的空气上升并且移除了沉降器组件的管中的沉积物。 导流器可以位于支撑管沉降器组件的结构的下方,以将上升的空气偏转到管沉降器组件中,否则该导流器组件将被阻止进入空气。
    • 85. 发明申请
    • INCLINED PLATES FOR CSO
    • CSO的简明版
    • US20140110348A1
    • 2014-04-24
    • US14062700
    • 2013-10-24
    • Fresh Creek Technologies, Inc.
    • Dennis R. MoranWalter C. TrnkaHans de Bruijn
    • E02B8/02E03F1/00
    • E03F1/00B01D21/0039B01D21/0045B01D21/0051B01D21/006B01D21/0087E02B5/085E03F5/16
    • This device serves to improve water quality under gravity flow conditions. The water quality treatment device traps floating debris with replaceable netting, it contains oil spills and settles sediment in self-cleaning settling cells above a collection bunker inside a chamber. The device directs the water below the inclined cells, through the inclined cells, or over the inclined cells, depending on the inflow intensity. All inflowing water enters the net cavity and the net is supported by the inclined cell assembly. The pollutant collection surfaces are overlapping each other and aligned with the water flow direction. A hinged baffle with orifices controls the flow rate through the inclined cells. The netting is replaceable when filled with debris through an access opening in the ceiling of the chamber. The sediment bunker is cleaned through access openings in the ceiling from the chamber inflow side and the exit side.
    • 该装置用于在重力流动条件下改善水质。 水质处理装置用可更换的网络捕集漂浮的碎屑,其中含有溢油并将沉淀物沉积在室内收集仓上方的自清洁沉降池中。 该装置根据流入强度将倾斜的细胞下方的水引导通过倾斜的细胞或倾斜的细胞。 所有流入的水进入净空腔,网由支架组成。 污染物收集表面彼此重叠并与水流方向对齐。 具有孔口的铰链挡板控制通过倾斜室的流速。 当通过室的天花板中的进入开口填充碎屑时,网可以更换。 通过从室流入侧和出口侧的天花板中的通道开口清洁沉积物沙坑。
    • 86. 发明授权
    • Separation passageway module, separation unit, and separation boat for suspension separation
    • 分离通道模块,分离单元和用于悬浮分离的分离舟
    • US07425260B2
    • 2008-09-16
    • US11458674
    • 2006-07-19
    • Kazuhiro FujisakiKuo-Lun Tung
    • Kazuhiro FujisakiKuo-Lun Tung
    • B01D21/02
    • B01D21/0051B01D21/0024B01D21/0045B01D21/0069B01D21/01B01D21/16B01D21/2444B01D21/307B01D21/32B01D21/34
    • The present invention discloses a separation passageway module comprising a plurality of inclined plates, at least one suction pipe, and a buoyancy regulator. The inclined plate passageways are comprised by a plurality of inclined parallel plates. The inclined plate passageways have an opening at either the lower end or the upper end. In the case of having an opening at the lower end, suspension flows into the passageways from the lower end to carry out settling separation and to thereby generate clear liquid at the upper end of the inclined plate passageways. On the other hand, in the case of having an opening at the upper end, suspension flows into the passageways from the upper end to carry out floating separation and to thereby generate clear liquid at the lower end of the inclined plate passageways. One end of the suction pipe is connected to the upper end or lower end of the inclined plate passageways for drawing the clear liquid. The buoyancy regulator adjusts the buoyant force of the separation passageway module so as to make the buoyant force and the gravity of the separation passageway module reach a specific relationship. Furthermore, the present invention discloses the structures of a suspension separation unit and a suspension separation boat.
    • 本发明公开了一种分离通道模块,包括多个倾斜板,至少一个吸入管和浮力调节器。 斜板通道由多个倾斜的平行板构成。 倾斜板通道在下端或上端处具有开口。 在下端具有开口的情况下,悬架从下端流入通道,​​进行沉降分离,从而在倾斜板通道的上端产生透明液体。 另一方面,在上端具有开口的情况下,悬架从上端流入通道,​​进行浮动分离,从而在倾斜板通道的下端产生透明液体。 抽吸管的一端连接到倾斜板通道的上端或下端,用于抽出透明液体。 浮力调节器调节分离通道模块的浮力,使分离通道模块的浮力和重力达到特定的关系。 此外,本发明公开了悬浮分离单元和悬浮分离舟的结构。
    • 87. 发明申请
    • Lamellar decanting module and block comprising plates that can be vertical
    • 层状倾析模块和块可以是垂直的
    • US20060261006A1
    • 2006-11-23
    • US10568877
    • 2004-08-16
    • Valery Ursel
    • Valery Ursel
    • B01D21/02
    • B01D21/0057B01D21/0003B01D21/0051
    • The invention relates to a lamellar decanting module comprising two interconnected plates, at least one of said plates being corrugated in such a way that the dips and peaks are inclined in relation to a first edge of said plate according to a non-zero degree angle and define inclined decanting tubes with the other plate. Said module is characterised in that the two plates (2, 3) have the same corrugated profile and are interconnected in connection regions defining a plane of symmetry (P) for the tubes (4) defined by said plates. A plurality of modules can be assembled in such a way as to form a block in which the plates are parallel to one of the faces.
    • 本发明涉及一种包括两个互连的板的层状倾析模块,所述板中的至少一个以波纹状使得所述凹陷和峰相对于所述板的第一边缘相对于非零度角倾斜,并且 用另一块板定义倾斜的倾斜管。 所述模块的特征在于,两个板(2,3)具有相同的波纹轮廓并且在限定由所述板限定的管(4)的对称平面(P)的连接区域中互连。 可以以这样的方式组装多个模块,以形成板,其中板平行于其中一个面。
    • 88. 发明授权
    • Apparatus for treating water or wastewater
    • 用于处理水或废水的设备
    • US06599418B2
    • 2003-07-29
    • US10189689
    • 2002-07-08
    • Jianmin Wang
    • Jianmin Wang
    • C02F124
    • C02F1/24B01D21/0042B01D21/0045B01D21/0051B01D21/0084B01D21/01B01D21/02B01D21/2405B01D21/2438B01D21/245B01D21/34B03D1/028B03D1/1412B03D1/1431B03D1/1481B03D1/24C02F2001/007C02F2209/42
    • An integrated apparatus that contains both the gravity settling mechanism and the dissolved-air floatation (DAF) mechanism in a compensating manner is provided. The said apparatus comprises a gravity settling chamber (34), a DAF chamber (42), a chamber connection channel (22), an air-dissolving device (38), a means for collecting treated water (24), and a water level control device (16). During treatment, heavy solid particles in water or wastewater can be quickly removed by gravity settling, while the remaining light solid particles and/or oil can be quickly removed by DAF. Thus, the apparatus of this invention is more effective and efficient compared with conventional clarifiers that employ only one clarification mechanism. Therefore, the apparatus of this invention is more compact and can achieve better effluent quality.
    • 提供了以补偿方式包含重力沉降机理和溶解气浮选(DAF)机构的综合装置。 所述设备包括重力沉降室(34),DAF室(42),室连接通道(22),空气溶解装置(38),用于收集处理水(24)的装置和水位 控制装置(16)。 在处理过程中,可以通过重力沉降快速除去水中或废水中的重质固体颗粒,而剩余的轻质固体颗粒和/或油可以通过DAF快速除去。 因此,与仅采用一种澄清机构的常规澄清器相比,本发明的装置更有效和高效。 因此,本发明的装置更紧凑并且可以实现更好的流出物质量。
    • 89. 发明授权
    • Plate-type separator
    • 板式分离机
    • US5595660A
    • 1997-01-21
    • US494243
    • 1995-06-23
    • Otto M. IlgJeffrey S. Dugan
    • Otto M. IlgJeffrey S. Dugan
    • B01D21/00B01D21/20
    • B01D21/0051B01D21/262
    • A plate-type fluid separator is used to separate a plurality of mutually immiscible components from a mixed fluid stream thereof. The separator contains at least one separator flow plate which has formed on a common facial surface thereof at least one separation chamber. Each separation chamber contains at least one inlet means; a channel assembly in fluid communication with the inlet means and composed of a main flow channel split at a downstream end thereof into a plurality of branching flow channels; and a plurality of outlet means in fluid communication with the branching flow channels. The main flow channel separates the stream passing therethrough into a plurality of substantially discrete fluid phases having different average density or viscosity values. Each branching flow channel receives a discrete phase and passes such phase to the outlet means.
    • 板型流体分离器用于将多个相互不混溶的组分与其混合流体流分离。 分离器包含至少一个分离器流动板,其在其共同的面部表面上形成有至少一个分离室。 每个分离室包含至少一个入口装置; 与入口装置流体连通并由在其下游端分解成多个分支流动通道的主流动通道构成的通道组件; 以及与分支流动通道流体连通的多个出口装置。 主流动通道将通过其的流分离成具有不同平均密度或粘度值的多个基本上离散的流体相。 每个分支流通道接收离散相,并将这样的相通过出口装置。
    • 90. 发明授权
    • Clarifier apparatus and methods with 3D arrays
    • 具有3D阵列的澄清装置和方法
    • US5116443A
    • 1992-05-26
    • US491687
    • 1990-03-09
    • Charles L. Meurer
    • Charles L. Meurer
    • B01D17/02B01D21/00
    • B01D21/0003B01D17/0211B01D21/0045B01D21/0051B01D21/0063B01D21/0072B01D21/0075B01D21/283B01D21/34Y10T156/1023
    • A clarifier basin is provided with upflow channels for removing solids from liquid that flows up the channels. The channels are defined by pairs of spaced sheets. Each sheet is provided with three-dimensional (3D) members, such as spherical bubbles or ellipsoids, that are in a two-dimensional array or regular pattern. The sheets are positioned closely adjacent to each other so that the 3D members on one sheet nest with the 3D members of the adjacent sheet to form interstices that collect the solids. The sheets are movable to enlarge the interstices so that air bubbles can flow up a selected channel and remove the solids for collection by a reservoir located above the selected channel. An air supply and the reservoir traverse the channels to remove the solids from the channels on a one-by-one basis. The sheets are formed of a plastic material with a series of protrusions extending from one side in a given pattern. Two sheets are arranged in opposed touching relationships with the protrusions aligned in opposite directions and thereafter are joined to create protrusions extending in both directions forming pockets therebetween.
    • 澄清池具有向上流动通道,用于从通道上流动的液体中除去固体。 通道由成对的隔开的片材限定。 每个片材具有二维阵列或规则图案的三维(3D)构件,例如球形气泡或椭圆体。 片材彼此紧密地定位,使得一个片材上的3D构件与相邻片材的3D构件嵌套以形成收集固体的间隙。 片材可移动以扩大间隙,使得气泡可以向上流动所选择的通道,并且通过位于所选通道上方的储存器移除固体以供收集。 空气供应器和储存器穿过通道以逐个地从通道中移除固体。 片材由具有从给定图案的一侧延伸的一系列突起的塑料材料形成。 两个片材以与相反方向对准的突起相对的接触关系布置,然后被连接以产生在两个方向上延伸的突起,在它们之间形成袋。