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    • 1. 发明申请
    • FUEL SUPPLYING APPARATUS FOR GAS ENGINE
    • 燃油发动机燃油供应装置
    • US20090308352A1
    • 2009-12-17
    • US12479892
    • 2009-06-08
    • Hiroaki KojimaMasanori FujinumaToru Taniguchi
    • Hiroaki KojimaMasanori FujinumaToru Taniguchi
    • F02M69/54
    • F02M31/18F02M21/0239F02M21/047F02M21/06Y02T10/126Y02T10/32
    • A fuel supplying apparatus is configured to supply a gas engine with gas fuel in such a manner that tar separated from the gas fuel is guided to the engine. The apparatus includes a primary regulator and a secondary regulator formed integrally with the primary regulator. The primary regulator communicates with the secondary regulator through a gas passage. The secondary regulator is disposed below the primary regulator. The secondary regulator has a gas inlet for taking in the gas fuel and the tar that have passed from the primary regulator through the gas passage. The secondary regulator has an orifice disposed below the gas inlet for discharging the gas fuel and the tar. The tar separated from the gas fuel flows from the primary regulator through the gas passage and the gas inlet into the secondary regulator and discharged out of the orifice into the engine.
    • 燃料供给装置被构造成以与从气体燃料分离的焦油被引导到发动机的方式向燃气发动机供给气体燃料。 该装置包括与主调节器一体形成的主调节器和次级调节器。 主调节器通过气体通道与次级调节器连通。 次级调节器设置在主调节器的下方。 次级调节器具有用于吸入气体燃料和从主调节器通过气体通道的焦油的气体入口。 次级调节器具有设置在气体入口下方的孔口,用于排出气体燃料和焦油。 与气体燃料分离的焦油从主调节器通过气体通道流入并进入二次调节器,并从孔中排出到发动机中。
    • 4. 发明授权
    • Manufacturing apparatus and method for fine hollow particles
    • 细中空颗粒的制造装置和方法
    • US5424336A
    • 1995-06-13
    • US996044
    • 1992-12-23
    • Toru Taniguchi
    • Toru Taniguchi
    • B01J13/02B01J13/18B01J14/00C08J9/28C08J9/32
    • B01J13/02B01J13/18
    • In manufacturing hollow particles, gas is supplied from a gas cylinder to a first tank under pressure for solution in a raw material liquid in the first tank for the particles. The resulting raw material liquid is supplied to a second tank where the liquid is stirred with a dispersing medium under pressure, thereby forming a compressed emulsion in the second tank. As the compressed emulsion is discharged to the outside, it is released from the compressed state so that the gas dissolved in corpuscles of the raw material liquid in the emulsion will come out as bubbles. Thus since the corpuscles in the emulsion become hollow particles, an emulsion containing fine hollow particles of the raw material liquid as nuclei is obtained. Therefore it is possible to obtain a large quantity of fine hollow particles with ease.
    • 在制造中空颗粒时,气体从气瓶向压力下的第一罐供给溶液,用于第一第一罐中的原料液。 所得到的原料液体被供给到第二罐,其中液体在分压介质中在压力下搅拌,从而在第二罐中形成压缩乳液。 当压缩乳液排出到外部时,其从压缩状态释放,使得溶解在乳液中的原料液体的微粒中的气体将作为气泡出来。 因此,由于乳液中的小粒变成中空粒子,因此获得含有作为原子核的原料液体的微细中空粒子的乳液。 因此,可以容易地获得大量的细小的中空颗粒。