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    • 5. 发明申请
    • MICRODEVICE AND FLUID MIXING METHOD
    • MICRODEVICE和FLUID MIXING方法
    • US20090086572A1
    • 2009-04-02
    • US12237443
    • 2008-09-25
    • Yoshiyuki MiyoshiTakayuki Fujiwara
    • Yoshiyuki MiyoshiTakayuki Fujiwara
    • B01J19/00B01F15/02
    • B01F13/0059B01F5/0057B01J19/0093B01J2219/00788B01J2219/0086B01J2219/00889B01J2219/00891
    • In a microdevice in which a plurality of fluids respectively passing through a separate introduction channel are merged in a merging section in a micro space to mix the fluids and the mixed fluids are discharged from the merging section via a discharge channel, a tip section of each of the introduction channels comprises a tapered contraction section so as to contract a flow of fluid, the introduction channels are disposed so that central axes of the introduction channels do not intersect at one point each other, and the merging section is formed of a space surrounded with edges of the contraction sections of respective introduction channels. Thereby, reacting fluids can be mixed rapidly each other, and contamination of air bubbles into the whole fluid can be suppressed by narrowing a dead space of a discharge channel immediately after the merging section.
    • 在微型装置中,分别穿过单独的引入通道的多个流体在微空间中的合流部分中合流以混合流体和混合流体,经由排出通道从合流部排出,每个 所述引入通道包括锥形收缩部分以使流体流动收缩,所述引入通道被布置成使得所述引入通道的中心轴线在相互不同的一点处不相交,并且所述合并部分由围绕的空间形成 具有各个引入通道的收缩部分的边缘。 由此,能够将流体的反应迅速地混合,通过缩小合流部之后的排出流路的死区,能够抑制气泡向整个流体的污染。
    • 8. 发明授权
    • Method for producing fine metal hydroxide particles
    • 金属氢氧化物微粒的制造方法
    • US08716174B2
    • 2014-05-06
    • US13051422
    • 2011-03-18
    • Yoshiyuki Miyoshi
    • Yoshiyuki Miyoshi
    • B01J21/10
    • C01F5/22C01B13/366C01P2004/03C01P2004/52C01P2004/62C07F7/1804
    • There is provided a production method in which highly transparent fine metal hydroxide particles having a small particle size and excellent in monodispersibility can be easily produced without requiring grinding. The method for producing fine metal hydroxide particles at least includes: a reaction step of mixing an aqueous solution of a metal salt, for example, a magnesium salt, with an aqueous solution of a hydroxide salt to precipitate metal hydroxide particles in an uncrystallized state; a purification step of removing by-product salt from a mixed solution containing the precipitated metal hydroxide particles in an uncrystallized state; a surface treatment step of treating the metal hydroxide particles in an uncrystallized state obtained through the purification step with a surface-treatment agent on the surface thereof; and a heating step of crystallizing the surface-treated metal hydroxide particles in an uncrystallized state by hydrothermal treatment.
    • 提供了一种制造方法,其中可以容易地生产具有小粒径和优异的单分散性的高度透明的细金属氢氧化物颗粒,而不需要研磨。 金属氢氧化物微粒的制造方法至少包括:将金属盐(例如镁盐)的水溶液与氢氧化物盐的水溶液混合的反应步骤,以沉淀未结晶状态的金属氢氧化物粒子; 从含有沉淀的金属氢氧化物颗粒的未结晶状态的混合溶液中除去副产物盐的纯化步骤; 表面处理步骤,通过表面处理剂处理通过纯化步骤获得的未结晶状态的金属氢氧化物颗粒; 以及通过水热处理使表面处理的金属氢氧化物颗粒在未结晶状态下结晶的加热步骤。