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    • 35. 发明申请
    • FLOTATION MACHINE
    • 浮选机
    • US20120325730A1
    • 2012-12-27
    • US13577224
    • 2011-02-22
    • Aleksi PeltolaAntti Rinne
    • Aleksi PeltolaAntti Rinne
    • B03D1/14
    • B01F3/04539B01F3/04617B01F13/0827B01F13/0836B01F2003/04546B01F2003/04652B01F2003/04687B03D1/1412B03D1/16B03D1/20C02F1/24C02F2201/002
    • An air distribution and mixing device is arranged in the vicinity of the bottom of a flotation cell for distributing air to the slurry for forming froth and mixing the slurry in the flotation cell. A rotor part of the air distribution and mixing device has air distribution apertures and is attached to the lower end of a drive shaft extending vertically in the flotation cell. The drive shaft has a hollow interior, which constitutes a flow channel for conducting flotation air to the air distribution holes of the rotor part. An electric motor for rotating the drive shaft is supported by a separate supporting framework, which is on top of the flotation cell. The electric motor is a permanent magnet motor that comprises having a vertical rotor shaft, the lower end of which is in permanent contact directly with the upper end of the drive shaft.
    • 空气分配和混合装置布置在浮选槽底部附近,用于将空气分配到用于形成泡沫的浆料中并将浆料混合在浮选槽中。 空气分配和混合装置的转子部分具有空气分配孔,并且附接到在浮选槽中垂直延伸的驱动轴的下端。 驱动轴具有中空的内部,其构成用于将浮选空气引导到转子部分的空气分配孔的流动通道。 用于旋转驱动轴的电动机由在浮选槽顶部的单独的支撑框架支撑。 电动机是永磁电动机,其包括具有垂直转子轴,其下端直接与驱动轴的上端接触。
    • 39. 发明授权
    • Method for treating water
    • 处理水的方法
    • US4280911A
    • 1981-07-28
    • US161151
    • 1980-06-19
    • Daniel J. DurdaJohn T. Quigley
    • Daniel J. DurdaJohn T. Quigley
    • B01F3/04B01F7/00B01F7/02C02F3/20C02F7/00C02F3/02C02F1/74
    • B01F3/04539B01F3/04595C02F3/207C02F7/00B01F2003/04652B01F2003/04716B01F2003/04879B01F7/0015B01F7/021Y02W10/15
    • A method for treating water is disclosed. The method is applicable for the treatment of waste water within lagoons and ponds wherein the treatment of the waste water is accomplished mainly through aeration. The method comprises steps of: aerating a bounded body of water with a plurality of propeller-type aerators, each aerator having a hollow tube with opposite ends, a longitudinal axis extending between the ends, and a propeller adjacent one of the ends; placing each of the aerators in the bounded body of water with the propeller and tube end adjacent thereto below the top surface of the water and with the longitudinal axis of each aerator disposed at an angle below the horizontal; driving the aerators to create individual circulating flow patterns around each of the aerators; mixing the water by arranging the aerators in a disposition to link the individual flow patterns created by adjacent aerators to one another to form a larger closed overall flow pattern; injecting oxygen from ambient air through the tube into the body of water adjacent the propeller at a rate greater than one pound of oxygen per horsepower/hour; and inducing by means of the propellers of the aerators the closed overall flow pattern at an average linear velocity in a generally horizontal direction through a cross section to flow at the rate of at least 0.25 feet per second.
    • 公开了一种处理水的方法。 该方法适用于泻湖和池塘内的废水处理,其中废水的处理主要是通过曝气完成的。 该方法包括以下步骤:用多个螺旋桨式曝气器对有界体水进行曝气,每个曝气器具有一个具有相对端的中空管,一个在两端之间延伸的纵向轴线和一个相邻端部之间的螺旋桨; 将每个曝气器放置在有界的水体中,螺旋桨和管端相邻于其顶部表面,并且每个曝气器的纵向轴线以与水平面成一定角度设置; 驱动曝气器在每个曝气器周围产生单独的循环流动图案; 通过将曝气器布置成将相邻曝气器产生的各个流动图彼此连接以形成更大的封闭的整体流动模式来混合水; 从环境空气通过管将氧气以每马力/小时的大于1磅氧的速率喷射到与螺旋桨相邻的水体中; 并且借助于曝气器的螺旋桨,通过横截面以平均线速度在大致水平方向上诱导通气器的螺旋桨以至少0.25英尺/秒的速率流动。