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    • 7. 发明申请
    • SEPARATORS
    • WO1993007946A1
    • 1993-04-29
    • PCT/GB1992001923
    • 1992-10-19
    • FOSTER, William, Warwick
    • B01D17/028
    • B01D17/0208B01D17/0211B01D21/0054B01D21/0087B01D21/02B01D21/2411B01D21/2427B01D21/265B01D2221/02B01D2221/12
    • A separator comprises an assembly of a first vessel (6) and an upwardly-oriented elongate unit (8) including a helical baffle (12) forming a spiral passage (14) in said unit (8). The first vessel (6) has a sump (11) and the unit (8) is in fluid communication with the first vessel (6). An inlet means is provided to convey a mixture to be separated into the assembly, and at least two outlet means are provided through which the separated components of the mixture are removable from the assembly, the mixture passing through the first vessel (6) and the passage (14) of the unit (8) with a disposable component being discharged and a required residual component being held in the first vessel (6).
    • 分离器包括第一容器(6)和向上定向的细长单元(8)的组件,其包括在所述单元(8)中形成螺旋通道(14)的螺旋形挡板(12)。 第一容器(6)具有贮槽(11),并且单元(8)与第一容器(6)流体连通。 提供入口装置以将要分离的混合物输送到组件中,并且提供至少两个出口装置,混合物的分离组分可通过该混合物从组件移除,混合物通过第一容器(6)和 (8)的通道(14),其中一次性部件被排出,并且所需的残留部件保持在第一容器(6)中。
    • 8. 发明申请
    • METHOD AND DEVICE FOR SEPARATING MATERIALS AND GUIDING DEVICE THEREFOR
    • 方法和装置分离的物质和用途的指南
    • WO99002237A1
    • 1999-01-21
    • PCT/EP1998/004201
    • 1998-07-07
    • B01D21/00B01D21/26B03B5/00B03B5/32B03B5/52B03B11/00E03F5/14
    • B03B11/00B01D21/0054B01D21/2411B01D21/2427B01D21/2444B01D21/2461B01D21/267B01D2221/04B03B5/00B03B5/32B03B5/52
    • The invention provides for a method and device for separating solid mineral grain materials, such as sand, from organic materials, suspended mateterials, easily or hardly soluble materials contained in a liquid-solid mix, for instance a mix from waste water purification plants. According to said method, the liquid-solid mix is tangentially introduced into a vessel (1), at an inlet port (13). Said liquid-solid mix flows towards an outlet port (16), in said vessel (1), at a sufficiently low rate so that when flowing said heavy components from liquid-solid mix, that is essentially solid mineral grain materials, settle forming a sediment bed (22). Said components forming sediment bed are removed and optionally dehydrated. The method according to the invention is characterized in that said liquid-solid mix is forcibly conveyed, in order to flow in a spiral fashion, between the inlet port (13) and the outlet port (16), at least through a partial deep area.
    • 本发明涉及一种方法和用于诸如污水处理厂的混合物中分离颗粒状矿物固体,如有机物质,悬浮物,轻和重 - 可溶性物质在液体 - 固体混合物砂的装置。 在该方法中,液体 - 固体混合物在引入(13)到容器(1)的点切向引入。 在如此低的速度,以在容器中的Ausleistelle(16)中流动的液体 - 固体混合物(1),该下落期间较重的混合物组分,基本上粒状矿物固体,液体 - 固体混合物以形成沉淀物床(22)。 沉积物床的下凹部分被排出和任选脱水。 本发明的方法的特征在于,液体 - 固体混合物是引入(13)的点之间与所述出口点(16)是正至少在部分的深度范围螺旋引导。
    • 10. 发明申请
    • WATER-POLLUTANT SEPARATION DEVICE, WATER-POLLUTANT SEPARATION AND FILTRATION DEVICE, ORNAMENTAL FISH TANK WATER-POLLUTANT SEPARATION AND FILTRATION SYSTEM, AND HIGH DENSITY CULTIVATION WATER-POLLUTANT SEPARATION, FILTRATION AND OXYGEN AERATION SYSTEM
    • 水分离装置,水 - 污染物分离和过滤装置,污水处理水分离和过滤系统以及高密度培养水 - 污染物分离,过滤和氧气系统
    • US20150257371A1
    • 2015-09-17
    • US14368232
    • 2012-12-27
    • Junbin CHANG
    • Junbin Chang
    • A01K63/04B01D35/02B01D29/56
    • A01K63/045A01K63/042B01D21/0054B01D21/2405B01D29/56B01D35/02
    • The present invention, relating to a water-pollutant separation device, on which a water-pollutant separation and filtration device, an ornamental fish tank water-pollutant separation and filtration system, and a high density cultivation water-pollutant separation, filtration and oxygen aeration system are based on, comprises a tank, a water inlet pipe and a water outlet pipe respectively communicated with the top of the separation tank, and a pollutant discharge pipe disposed at the bottom of the tank; the inner cavity of the tank is provided with a separation structure which is in an inverted barrel shape, having an upper closing cover and slightly smaller external dimensions than that of the tank which provides a gap between the separation structure and the bottom of the tank; a spoiler is installed onto the water inlet pipe after the water inlet pipe passes through the upper closing cover of the separation structure in the tank; the spoiler is sealed at the lower end, and is provided with a plurality of openings or slots on the side wall to generate a subcritical flow to spoil the water flow, the openings or slots being biased in the same direction. In the technical solution, a water-pollutant separation device is preferably added prior to fish tank filtration, and the multiple slots provided on the spoiler are suitable for splitting the flow of relatively large water flow, so that most pollutants in the water can be separated and discharged, thus reducing the accumulation of the pollutants on filtration material, and improving water quality and stability.
    • 本发明涉及水污染物分离装置,水污染物分离过滤装置,观赏鱼缸水污染物分离过滤系统和高密度栽培水污染物分离,过滤和氧气曝气的水污染物分离装置 系统基于包括分别与分离罐的顶部连通的罐,进水管和出水管,以及设置在罐底部的污染物排放管; 罐的内腔设置有分离结构,该分离结构为倒桶状,具有上封闭盖和稍小于罐的外部尺寸,其在分离结构和罐的底部之间提供间隙; 在进水管通过罐中分离结构的上封闭盖后,扰流板安装在进水管上; 扰流器在下端被密封,并且在侧壁上设置有多个开口或狭槽,以产生亚临界流,以破坏水流,开口或槽沿相同方向偏置。 在技​​术方案中,优选在鱼缸过滤之前添加水污染物分离装置,并且设置在扰流板上的多个槽适于分离相对大的水流的流动,使得大部分污染物可以被分离 排放,从而减少过滤材料污染物的积累,提高水质和稳定性。