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    • 2. 发明公开
    • MICRO-BUBBLE GENERATOR AND MICRO-BUBBLE GENERATION DEVICE
    • MIKROBLASENERZEUGUNGSVORRICHTUNG
    • EP2492004A1
    • 2012-08-29
    • EP10824784.2
    • 2010-10-04
    • Nakamoto, Yoshinori
    • HATO, Yoko
    • B01F5/00B01F3/04B01F5/02A01G31/00
    • A01K63/042B01F3/0451B01F5/0068B01F2003/04858
    • An object is to provide a micro-bubble generator, etc., capable of efficiently generating bubbles having a particle size of a nanometer order. One aspect of the present invention is a micro-bubble generator provided with a swirl chamber, a fluid introduction opening connected to the swirl chamber, the fluid introduction opening for introducing fluid along a line tangent to an inner surface of the swirl chamber, and a discharge tube for guiding the fluid in the direction substantially perpendicular to the direction in which the fluid is introduced. The discharge tube penetrates a wall surface of the swirl chamber and protrudes to an interior of the swirl chamber. According to the present configuration, by isolating a path of the introduced fluid, a loss of kinetic energy of a swirl flow of the fluid can be reduced. Thus, the micro-bubble generator capable of reducing the size of the generated micro-bubbles can be obtained.
    • 目的在于提供能够有效地生成具有纳米级粒径的气泡的微气泡发生器等。 本发明的一个方面是一种微气泡发生器,其具有涡流室,连接到涡流室的流体引入开口,用于沿着与涡流室内表面相切的线引入流体的流体引入开口,以及 排出管,用于沿着与引入流体的方向大致垂直的方向引导流体。 放电管穿透涡流室的壁面并突出到涡流室的内部。 根据本结构,通过分离导入流体的路径,可以减少流体的涡流的动能损失。 因此,可以获得能够减小产生的微气泡的尺寸的微气泡发生器。
    • 7. 发明公开
    • AGGREGATION REACTION SYSTEM
    • AGGREGATIONSREAKTIONSSYSTEM
    • EP1561501A1
    • 2005-08-10
    • EP03770085.3
    • 2003-10-31
    • KURITA WATER INDUSTRIES LTD.
    • TAKEUCHI, Tadao
    • B01D21/01B01F3/08B01F5/08C02F1/52C02F1/56C02F11/14
    • B01F5/0654B01D21/01B01F5/0068B01F5/0473B01F5/0646B01F7/00908B01F7/16B01F2005/002B01F2005/0045C02F1/5281
    • A coagulation-flocculation apparatus for conducting coagulation-flocculation treatment by adding a coagulant or flocculant to suspension such as sludge is capable of diffusing the flocculant into the suspension uniformly so as to exhibit flocculation function of the flocculant effectively, thereby enhancing the flocculation efficiency, shortening the processing time, and allowing reduction in size of the apparatus. The flocculation apparatus has transfer piping 12 for transferring suspension, small-diameter piping 13 of which diameter is smaller than that of the transfer piping 12 and which is connected to the transfer piping 12, a flocculant supplying device disposed on the small-diameter piping 13 or the transfer piping 12 on the upstream side thereof, and a temporary retention section 11 for flocculation having an inlet and an outlet for water, the small-diameter piping 13 being connected to the inlet. The cross-sectional area of flow path at at least a part of the temporary retention section 11 in the direction from the inlet toward the outlet is larger than the cross-sectional area of the transfer piping 12.
    • 通过将凝结剂或絮凝剂添加到诸如污泥的悬浮液中进行凝结 - 絮凝处理的凝结 - 絮凝装置能够均匀地将絮凝剂均匀地扩散到悬浮液中,以有效地显示絮凝剂的絮凝功能,从而提高絮凝效率,缩短 处理时间,并且允许减小装置的尺寸。 絮凝装置具有用于转移悬浮液的输送管道12,其直径小于输送管道12的小直径管道13并连接到输送管道12,设置在小直径管道13上的絮凝剂供给装置 或其上游侧的输送管道12以及具有水入口和出口的用于絮凝的临时保持部分11,小直径管道13连接到入口。 临时保持部11的从入口朝向出口的方向的至少一部分上的流路的截面积大于输送配管12的截面积。
    • 8. 发明公开
    • An electroplating machine
    • EP1541720A2
    • 2005-06-15
    • EP05075546.1
    • 1998-05-20
    • PROCESS AUTOMATION INTERNATIONAL LIMITEDShipley Company LLC
    • Henington, PaulLi, Kwok WahNg, Kwok WingLee, Chi ChungHuang, Pin ChunLee, Fang HaoMarsh, Marlin VanceColangelo, Carl John
    • C25D17/28H05K3/24C25D17/00B65G49/04
    • B01F5/0068B01F15/0272C25D5/08C25D17/00C25D17/12C25D17/28C25D21/14H05K3/241
    • An electroplating machine is disclosed as including an electrode positioning apparatus, an electrolyte delivery apparatus, an apparatus for covering a roller, an apparatus for dissolving copper oxide powder in an electrolyte passing through the apparatus, and an apparatus allowing the variation of the distance between two rollers. The electrode positioning apparatus has a first open end and a second end joined by two sets of connecting members, in which the connecting members in each set are parallel to one another and equally spaced from the adjacent member. The electrolyte delivery apparatus includes a pipe connected to a source of electrolyte and a nozzle through which the electrolyte is deliverable to an electrode mounted on the electrode positioning apparatus. The nozzle includes an elongate gap and the electrolyte exits the nozzle continuously along the entire length of the elongate gap. The electrode positioning and the electrolyte delivery apparatus are slidably engageable with each other. The covering apparatus is elongate in shape and includes a cavity for accommodating a majority part of the outside surface of a roller. The apparatus for dissolving copper oxide powder in an electrolyte includes an upper chamber and a lower chamber, in which electrolyte low in copper ion concentration enters the upper chamber through its lower part, and exits the upper chamber through its upper part. A vortex is formed in a porous pot in the upper chamber to facilitate dissolution of copper oxide powder in the electrolyte. As to the apparatus allowing the variation of the distance between an upper roller and a lower roller, such includes a primary part attachable to a wall of the electroplating machine, and a second part movable relative to the primary part. In response to entry of a PCB into the area between the two rollers, the upper roller is caused to move vertically upward, which also causes the secondary part to move vertically upward.
    • 10. 发明公开
    • Dissolving device and method for dissolving a particulate solid in a supercritical or almost critical fluid, and dyeing device
    • 装置和用于在超临界或几乎临界的流体中的颗粒溶解的方法,及染色装置
    • EP1152081A1
    • 2001-11-07
    • EP01201453.6
    • 2001-04-20
    • Stork Brabant B.V.
    • Woerlee, Geert Feye
    • D06B23/20B01F5/00
    • B01F5/0068B01F1/0022B01F1/0038B01F5/0415B01F5/106B01F2003/0064D06B23/205
    • According to the invention, a dissolving device for dissolving a particulate solid in a supercritical or almost critical fluid comprises a circulation loop, in which there is a feed (14) for feeding a feed stream of the supercritical or almost critical fluid, a cyclone (7), which is in communication with the feed (14) and has a principal discharge (9) for discharging a principal discharge stream of a solution of the particulate solid in the supercritical or almost critical fluid and has an auxiliary discharge (11) for discharging an auxiliary stream of the supercritical or almost critical fluid with solid particles dispersed therein, the auxiliary discharge (11) being in communication with the said feed (14). A dissolving device of this type has a low pressure drop and a high dissolving rate compared to the prior art. The invention also relates to a dyeing device which is provided with a dissolving device according to the invention, and to a method which uses the latter.
    • 。根据本发明,用于溶解微粒固体在超临界或准临界流体的溶解装置包括一个循环回路,其中有用于供给超临界或准临界流体,旋风分离器的进料物流的进料(14)( 7)所有这是在与所述进料(14),并且具有用于排出所述颗粒的超临界或准临界流体中的固体的溶液的主排出物流的主放电(9),并具有与辅助放电(11),用于 其中分散有固体颗粒的超临界或准临界流体的辅助物流的排放排出,在与所述进料(14)连通所述辅助(11)。 这种类型的溶解装置具有低的压降和相比于现有技术的高溶解速率。 因此,该发明涉及一种染色装置所有这些设置有溶解装置gemäß到本发明,并且于使用后者的方法。