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    • 95. 发明申请
    • In-Liquid Plasma Electrode, In-Liquid Plasma Generating Apparatus and In-Liquid Plasma Generating Method
    • 液体中等离子体电极,液体中等离子体发生装置和液体中等离子体发生方法
    • US20090109141A1
    • 2009-04-30
    • US11792174
    • 2005-12-02
    • Hitotoshi MuraseToshihisa ShimoHiroaki TakashimaHiromichi ToyotaShinfuku NomuraTsunehiro Maehara
    • Hitotoshi MuraseToshihisa ShimoHiroaki TakashimaHiromichi ToyotaShinfuku NomuraTsunehiro Maehara
    • G09G3/28
    • B01J19/088B01J2219/0809B01J2219/0835B01J2219/0877H05H1/46H05H1/48H05H2001/466
    • An in-liquid plasma electrode 1 according to the present invention is an in-liquid plasma electrode for generating plasma in a liquid L and has a conductive member 11 having an electric discharge end surface 111 in contact with the liquid L, and an insulating member 16 covering an outer periphery of the conductive member 11 at least except the electric discharge end surface 111. Preferably, d and x satisfy −2d≦x≦2d, where d is a length of a minor axis of the cross section when a conductive end portion 110 of the conductive member 11 having the electric discharge end surface 11 has a roughly circular cross section, or d is a length of a short side of the cross section when the conductive end portion 110 has a roughly rectangular cross section, and x is a distance from a reference plane 161 to a plane containing the electric discharge end surface 111 when the reference plane 161 is an end surface 161 of the insulating member 16 in roughly parallel with the electric discharge end surface 111. Owing to this construction, it is possible to provide an in-liquid plasma electrode which can simply generate plasma in a wide variety of liquids including a conductive liquid such as water and alcohol, and furthermore an in-liquid plasma generating apparatus having this electrode, and an in-liquid plasma generating method using this electrode.
    • 根据本发明的液晶内等离子体电极1是用于在液体L中产生等离子体的液晶内等离子体电极,并且具有导电构件11,导电构件11具有与液体L接触的放电端面111,绝缘构件 除了放电端面111之外,至少覆盖导电构件11的外周。优选地,d和x满足-2d <= x <= 2d,其中d是横截面的短轴的长度,当a 具有放电端面11的导电构件11的导电端部110具有大致圆形的横截面,或d是当导电端部110具有大致矩形截面时的横截面的短边的长度,以及 当参考平面161是绝缘构件16的与放电端表面大致平行的端面161时,x是从参考平面161到包含放电端面111的平面的距离 由于这种结构,可以提供一种液体等离子体电极,其可以简单地在包括诸如水和醇的导电液体的各种液体中产生等离子体,此外还提供了一种液体内等离子体产生装置,其具有 该电极和使用该电极的液体内等离子体生成方法。
    • 98. 发明申请
    • High-Throughput Continuous-Flow Ultrasound Reactor
    • 高通量连续流超声反应器
    • US20080067055A1
    • 2008-03-20
    • US11597043
    • 2005-04-05
    • Rudolf Gunnerman
    • Rudolf Gunnerman
    • B32B5/02A61B17/20C01B13/00
    • C10G32/02B01J19/10B01J2219/0869B01J2219/0871B01J2219/0877B01J2219/0888B01J2219/0892B06B3/00
    • Liquids are treated by ultrasound in a flow-through reaction vessel with an elongate ultrasonic horn mounted to the vessel with one end of the horn extending into the vessel interior. The liquid flow path inside the vessel is such that the entering liquid strikes the end of the horn at a direction normal to the end, then flows across the surface of the end before leaving the vessel. The end surface of the horn is positioned in close proximity to the entry port to provide a relatively high surface-to-volume ratio in the immediate vicinity of the horn end. In a further improvement, the horn is joined to an ultrasonic transducer through a booster block that provides an acoustic gain to the ultrasonic vibrations, and the booster block is plated with a reflective metal to lessen any loss of ultrasonic energy being transmitted to the horn.
    • 液体通过超声处理在具有安装到容器上的细长超声波喇叭的流通反应容器中,喇叭的一端延伸到容器内部。 容器内的液体流动路径使得进入的液体在垂直于端部的方向上撞击喇叭的端部,然后在离开容器之前流过端部的表面。 喇叭的端面位于入口附近,以在喇叭端附近提供相对较高的表面积与体积比。 在进一步的改进中,喇叭通过增强块连接到超声波换能器,该增强块为超声波振动提供声增益,并且增强块被镀有反射金属,以减少被传递到喇叭的超声能量的任何损失。