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    • 1. 发明申请
    • DENSITY SEPARATION DEVICE
    • 密度分离装置
    • WO2011120536A1
    • 2011-10-06
    • PCT/EP2010/002036
    • 2010-03-31
    • FD-Process bvbaDEBAETS, KrisPACQUET, HervéHOORELBEKE, Rik
    • DEBAETS, KrisPACQUET, HervéHOORELBEKE, Rik
    • B03B5/42B03B11/00
    • B03B5/42B03B11/00B03B2011/004
    • The invention relates to a density separation device (1) comprising a rotatable barrel (2) and a combined feeding (3a) and discharging (3b) means in the form of a vibratory tray (3) running through the barrel from one open end (4) to the other open end (5). Said feeding means (3a) is provided with an opening (6) running at least partly along the length of the barrel through which the fed material can be dosed and spread into the rotatable barrel. Floating material is discharged by a constant overflow of liquid medium, while sunken material is uplifted by lifting means inside the rotating barrel onto the vibratory tray (3) and efficiently evacuated out of the barrel. The invention further relates to a method and to the use of such a device for separating solid material.
    • 本发明涉及一种密度分离装置(1),其包括可旋转筒(2)和组合进料(3a)和排出(3b)装置,其形式为振动盘(3),振动盘(3)从一个开口端 4)到另一个开口端(5)。 所述进料装置(3a)设置有至少部分地沿着筒的长度延伸的开口(6),所述进给材料可以通过所述开口被投放并扩展到可旋转桶中。 浮动材料通过液体介质的恒定溢出而排出,而凹下的材料通过旋转筒内的提升装置提升到振动盘(3)上并被有效地从筒中排出。 本发明还涉及这种用于分离固体材料的装置的方法和用途。
    • 2. 发明申请
    • VERFAHREN ZUR SINK-SCHWIMMSCHEIDUNG FEINKÖRNIGER MINERALISCHER ROHSTOFFE
    • 方法矿产资源SINK游泳离婚细晶粒
    • WO2002078850A2
    • 2002-10-10
    • PCT/IB2002/002016
    • 2002-03-01
    • ENERCO BVJERZEMBSKI, Heinrich, EmilBOT, Jan
    • JERZEMBSKI, Heinrich, EmilBOT, Jan
    • B03B5/42
    • B03B5/42B03B2011/004
    • Die Erfindung betrifft eine Vorrichtung zu Sink Schwimmscheidung mineralischer Rohstoffe, insbesondere Kohle, nach der Dichte mittels einer Flüssigkeit, insbesondere einer Schwertrübe. Die Vorrichtung besteht aus einem Scheidebehälter (1) mit einer darin drehbeweglich angeordneten Trommel (2) zum Austragen des Sinkgutes. Der Scheidebehälter weist Zuläufe (6; 10, 11) für die Flüssigkeit und das zu scheidende Rohgut sowie mindestens einen Ablauf (12, 13) für die Flüssigkeit und einen Überlauf (13) zum Abtrennen des Schwimmgutes auf. Die Zu- und Abläufe (10, 11; 12, 13) sind parallel zur Drehachse der Trommel (2) angeordnet. Es sind mindestens jeweils zwei Zu und Abläufe (10; 11; 12, 13) für die Flüssigkeit vorgesehen, die jeweils paarweise auf einer Höhe gegenüberliegend angeordnet sind. Mindestens ein ZU und ein Ablauf (10; 13) und der Überlauf (13) sind in der Höhe des Flüssigkeitsspiegels und mindestens ein Zu und Ablaufpaar (11, 12) kurz oberhalb von über den Umfang des Trommelmantels verteilten Sinkguttaschen (3) angeordnet. Weiter betrifft die Erfindung ein entsprechendes Verfahren zur Sink-Schwimmscheidung mineralischer Rohstoffe.
    • 本发明涉及一种设备,下沉的矿物原料的漂浮分离,尤其是煤,根据由液体的装置密度,特别是稠密介质。 该装置由分离容器(1)与在其中可旋转地布置滚筒(2)用于排出Sinkgutes的。 护套容器具有入口(6; 10,11),用于将液体和用于区分Rohgut和至少一个出口(12,13)用于将液体和用于在分离漂浮物溢出(13)。 入口和出口(10,11; 12,13)平行于所述滚筒(2)的旋转轴线。 有至少两个供给和漏极(10; 12,13; 11)设于液体,其分别在相对的高度成对布置。 至少一个ON和流(10; 13),并在液面的高度的溢流(13)和至少一个入口和出口对(11,12)的正上方分布在鼓壳体沉积口袋的圆周(3)。 本发明还涉及一种用于矿物原料的浮沉分离的相应方法。
    • 4. 发明申请
    • WATER SEPARATION SYSTEM, METHOD AND APPARATUS FOR CONSTRUCTION DEBRIS
    • 水分离系统,建筑设备的方法和装置
    • WO00044501A2
    • 2000-08-03
    • PCT/US2000/002571
    • 2000-02-01
    • B03B5/28B03B5/42B03B9/06B03B11/00B03B
    • B03B9/065B03B5/28B03B5/42B03B11/00B03B2005/405Y02W30/524Y02W30/58
    • A system for separating construction debris into low density debris (152) and high density debris (112). The construction debris is delivered into a rotating drum (73) having front and rear discharge openings (54 and 52, resp.). The lower portion of the drum is filled with water, and the debris is deposited onto the water, with the low density debris floating at the surface and the high density debris descending to the bottom of the drum. A plurality of high velocity water jets (136, 134) are positioned forwardly of the debris receiving location to create a turbulent high velocity water flow at an upper zone of the water in the drum to move the wood and other low density material toward a rear converging passageway (74) that leads into a rear discharge opening (52). The higher density material is carried by a scroll type conveyor (104) forwardly in the drum to a forward discharge location where rotating paddles lift the high density debris upwardly and hence move it into the front discharge opening (54). Rear and front water separation and discharge sections are provided in the form of a fursto-conical structure having through openings to separate the water from the low density and high density debris.
    • 将建筑碎片分解为低密度碎片(152)和高密度碎片(112)的系统。 施工碎片被输送到具有前排出口(54和52)的旋转滚筒(73)中。 滚筒的下部填充有水,并且碎片沉积在水上,低密度碎片漂浮在表面,高密度碎片下降到滚筒的底部。 多个高速水射流(136,134)位于碎片接收位置的前方,以在滚筒的水的上部区域产生湍流的高速水流,以将木材和其它低密度材料朝着后方移动 会聚通道(74),其通向后排出口(52)。 较高密度的材料由涡卷式输送机(104)在滚筒中向前运送到向前排放位置,其中旋转叶片向上提升高密度碎片,从而将其移动到前排出口(54)中。 后部和前部水分离和排出部分以具有通过开口的锥形结构的形式提供,以将水与低密度和高密度碎片分离。
    • 5. 发明申请
    • DENSITY SEPARATION DEVICE AND METHOD FOR THE SELECTIVE SEPARATION OF ABSORBENT AND NON-ABSORBENT MATERIAL PARTICLES
    • 密度分离装置和选择性分离吸收剂和非吸收材料颗粒的方法
    • WO2009103341A1
    • 2009-08-27
    • PCT/EP2008/052154
    • 2008-02-21
    • Solid Engineering bvbaDEBAETS, KrisPACQUET, HervéHOORELBEKE, Rik
    • DEBAETS, KrisPACQUET, HervéHOORELBEKE, Rik
    • B03B1/04B03B5/42B03B11/00B03C1/01
    • B03B5/42B03B1/04B03B11/00B03B2009/068B03C1/01B03C2201/18Y02W30/524Y02W30/526
    • The invention relates to a density separation device (1) for separating solid material particles in a float and a sink fraction by means of a liquid medium, the specific gravity of said liquid medium being between the specific gravity of the particles of the float fraction and the specific gravity of the particles of the sink fraction, wherein the device is provided with a first discharge zone (3) for evacuating the float fraction as well as the medium by means of rotation, a second discharge zone (4) for evacuating the sink fraction by means of rotation and using first discharging elements (7a), and a separation zone (2) comprising a first slanting part (5) and a second slanting part (6) adjacent to the first slanting part (5), wherein the second slanting (6) part is provided with one or more second discharging elements (7a,7b), and wherein this first and second slanting part (5, 6) are sloping towards each other, such that, by means of rotation, the sink fraction that sank on the first slanting part (5) moves towards the second slanting part (6), whereupon the sink fraction is taken along with the discharging elements (7a, 7b) of the second slanting part (6) and a second discharge zone (2) for discharging towards the second discharge opening (40). The invention relates furthermore to a method for the selective separation of absorbent and/or non - ab sorbent material particles by means of a magnetic or magnetizable suspension, wherein the method comprises the subsequent steps of treating the material particles with water until the absorbent material particles are saturated with water; bringing the mate rial particles in the magnetic or magnetizable suspension, and separating the material particles by means of magnets.
    • 本发明涉及一种用于通过液体介质分离浮体中的固体物质颗粒和水槽部分的浓度分离装置(1),所述液体介质的比重在浮选级分颗粒的比重和 所述水槽部分的颗粒的比重,其中所述装置设置有用于通过旋转抽真空部分以及所述介质的第一排放区域(3),用于排空所述水槽的第二排放区域(4) 通过旋转和使用第一排出元件(7a)的分级,以及包括与第一倾斜部分(5)相邻的第一倾斜部分(5)和第二倾斜部分(6)的分离区(2),其中第二 倾斜(6)部分设置有一个或多个第二排放元件(7a,7b),并且其中该第一和第二倾斜部分(5,6)朝向彼此倾斜,使得通过旋转,凹部分 沉没在冷杉上 第一倾斜部分(5)向第二倾斜部分(6)移动,于是第二倾斜部分(6)的排放元件(7a,7b)和第二排出区域(2) 朝向第二排出口(40)。 本发明还涉及通过磁性或可磁化悬浮液选择性分离吸收剂和/或非吸收剂材料颗粒的方法,其中该方法包括以下步骤:用水处理材料颗粒直到吸收材料颗粒 饱和的水; 将伴侣粒子带入磁性或可磁化的悬浮液中,并通过磁体分离材料颗粒。
    • 6. 发明申请
    • METHOD FOR SINK AND FLOAT SEPARATION OF FINE GRAINED MINERAL RAW MATERIALS
    • 浮游细粒矿物原料的方法
    • WO02078850A3
    • 2002-12-05
    • PCT/IB0202016
    • 2002-03-01
    • ENERCO BVJERZEMBSKI HEINRICH EMILBOT JAN
    • JERZEMBSKI HEINRICH EMILBOT JAN
    • B03B5/42
    • B03B5/42B03B2011/004
    • The invention relates to a device for the sink and float separation of mineral raw materials, particularly coal, according to density by means of a liquid, particularly a dense medium. The device comprises a separating container (1) with a cylinder (2) arranged in a rotatable manner therein for extracting the sunken items. The separating container comprises inlets (6; 10, 11) for the liquid and for the raw material which is to be separated, in addition to at least one outlet (12, 13) for the liquid, and one overflow (13) for separating the floating items. The inlets and outlets (10, 11; 12, 13) are arranged in a parallel position with respect to the axis of rotation of the cylinder (2). According to the invention, at least two respective inlets and outlets (10; 11; 12, 13) are provided for the liquid, being arranged, respectively, opposite each other in pairs on a specific height. At least one inlet and one outlet (10; 13) and the overflow (13) are arranged on the same levels as the liquid and at least one pair of inlets and outlets (11, 12) are disposed directly above the pockets of the sunken items (3) which are distributed over the periphery of the outer surface of the drum. The invention also relates to a corresponding method for the sink and float separation of mineral raw materials.
    • 本发明涉及一种设备,下沉的矿物原料的漂浮分离,尤其是煤,根据由液体的装置密度,特别是稠密介质。 该装置由分离容器(1)组成,其中可旋转地布置有用于排出碎屑的滚筒(2)。 护套容器具有入口(6; 10,11),用于将液体和用于区分Rohgut和至少一个出口(12,13)用于将液体和用于在分离漂浮物溢出(13)。 入口和出口(10,11,12,13)平行于滚筒(2)的旋转轴线布置。 为液体提供至少两个入口和出口(10,11,12,13),这些入口和出口分别在高度上彼此相对地布置。 至少一个ON和流(10; 13),并在液面的高度的溢流(13)和至少一个入口和出口对(11,12)的正上方分布在鼓壳体沉积口袋的圆周(3)。 此外,本发明涉及一种用于矿物资源下沉的相应方法。
    • 7. 发明申请
    • DENSITY SEPARATION SYSTEM, METHOD, AND APPARATUS FOR CONSTRUCTION DEBRIS
    • 密度分离系统,方法和装置设计
    • WO0044501A9
    • 2002-03-28
    • PCT/US0002571
    • 2000-02-01
    • KRAUSE MFG INCKRAUSE HERBERT K
    • KRAUSE HERBERT K
    • B03B5/28B03B5/42B03B9/06B03B11/00B03B5/52
    • B03B9/065B03B5/28B03B5/42B03B11/00B03B2005/405Y02W30/524Y02W30/58
    • A system for separating construction debris into low density debris (152) and high density debris (112). The construction debris is delivered into a rotating drum (73) having front and rear discharge openings (54 and 52, resp.). The lower portion of the drum is filled with water, and the debris is deposited onto the water, with the low density debris floating at the surface and the high density debris descending to the bottom of the drum. A plurality of high velocity water jets (136, 134) are positioned forwardly of the debris receiving location to create a turbulent high velocity water flow at an upper zone of the water in the drum to move the wood and other low density material toward a rear converging passageway (74) that leads into a rear discharge opening (52). The higher density material is carried by a scroll type conveyor (104) forwardly in the drum to a forward discharge location where rotating paddles lift the high density debris upwardly and hence move it into the front discharge opening (54). Rear and front water separation and discharge sections are provided in the form of a fursto-conical structure having through openings to separate the water from the low density and high density debris.
    • 将建筑碎片分解为低密度碎片(152)和高密度碎片(112)的系统。 施工碎片被输送到具有前排出口(54和52)的旋转滚筒(73)中。 鼓的下部填充有水,并且碎片沉积在水上,低密度碎片漂浮在表面上,高密度碎屑下降到鼓的底部。 多个高速水射流(136,134)位于碎片接收位置的前方,以在滚筒中的水的上部区域处产生湍流的高速水流,以使木材和其它低密度材料向后移动 会聚通道(74),其通向后排出口(52)。 较高密度的材料由涡卷式输送机(104)在滚筒中向前运送到向前排放位置,在该向前排放位置,旋转叶片向上提升高密度碎片,从而将其移动到前排出口(54)中。 后部和前部水分离和排出部分以具有通孔的透明锥形结构的形式提供,以将水与低密度和高密度碎片分离。
    • 8. 发明申请
    • DENSITY SEPARATION SYSTEM, METHOD, AND APPARATUS FOR CONSTRUCTION DEBRIS
    • 密度分离系统,方法和装置设计
    • WO0044501A3
    • 2000-12-21
    • PCT/US0002571
    • 2000-02-01
    • KRAUSE MFG INCKRAUSE HERBERT K
    • KRAUSE HERBERT K
    • B03B5/28B03B5/42B03B9/06B03B11/00
    • B03B9/065B03B5/28B03B5/42B03B11/00B03B2005/405Y02W30/524Y02W30/58
    • A system for separating construction debris into low density debris (152) and high density debris (112). The construction debris is delivered into a rotating drum (73) having front and rear discharge openings (54 and 52, resp.). The lower portion of the drum is filled with water, and the debris is deposited onto the water, with the low density debris floating at the surface and the high density debris descending to the bottom of the drum. A plurality of high velocity water jets (136, 134) are positioned forwardly of the debris receiving location to create a turbulent high velocity water flow at an upper zone of the water in the drum to move the wood and other low density material toward a rear converging passageway (74) that leads into a rear discharge opening (52). The higher density material is carried by a scroll type conveyor (104) forwardly in the drum to a forward discharge location where rotating paddles lift the high density debris upwardly and hence move it into the front discharge opening (54). Rear and front water separation and discharge sections are provided in the form of a fursto-conical structure having through openings to separate the water from the low density and high density debris.
    • 将建筑碎片分解为低密度碎片(152)和高密度碎片(112)的系统。 施工碎片被输送到具有前排出口(54和52)的旋转滚筒(73)中。 鼓的下部填充有水,并且碎片沉积在水上,低密度碎片漂浮在表面上,高密度碎屑下降到鼓的底部。 多个高速水射流(136,134)位于碎片接收位置的前方,以在滚筒中的水的上部区域处产生湍流的高速水流,以使木材和其它低密度材料向后移动 会聚通道(74),其通向后排出口(52)。 较高密度的材料由涡卷式输送机(104)在滚筒中向前运送到向前排放位置,在该向前排放位置,旋转叶片向上提升高密度碎片,从而将其移动到前排出口(54)中。 后部和前部水分离和排出部分以具有通孔的透明锥形结构的形式提供,以将水与低密度和高密度碎片分离。