Mesofluidic Reactor With Pulsing Ultrasound Frequency
    1.
    发明申请
    Mesofluidic Reactor With Pulsing Ultrasound Frequency 有权
    脉冲超声频率的中流控电抗器

    公开(公告)号:US20170021328A1

    公开(公告)日:2017-01-26

    申请号:US15301311

    申请日:2015-03-31

    Applicant: Cominnex Zrt

    Abstract: A mesofluidic reactor performs a chemical reaction of a starting material. A liquid phase starting material is introduced into a spraying head equipped with an ultrasound generating piezoelectric crystal unit. An inert/reagent gas feeds into the spraying head, connected to a reactor tube arranged within a thermally insulated multi-zone heating unit. For solid phase, an inert/reagent gas is introduced into a solids container connected to a spraying head equipped with an ultrasound generating piezoelectric crystal unit. The spraying head connects to a reactor tube arranged within a thermally insulated multi-zone heating unit. In either case, a reactor tube outlet connects to a cooled product trap to collect conversed substances. The spraying head generates a particle size distribution with nano and micro sized particles for the liquid phase and nano, micro or larger particles for the solid phase. The inert/reagent gas is preheated over the piezoelectric crystal unit's surface.

    Abstract translation: 中间流体反应器进行起始材料的化学反应。 将液相原料引入配备有超声波产生压电晶体单元的喷头中。 惰性/反应物气体进入喷雾头,连接到布置在绝热多区加热单元内的反应管。 对于固相,将惰性/反应物气体引入连接到配备有超声产生压电晶体单元的喷射头的固体容器中。 喷头连接到布置在绝热多区加热单元内的反应管。 在任一情况下,反应器管出口连接到冷却的产品捕集器以收集交谈的物质。 喷头产生用于液相的纳米和微粒尺寸的颗粒尺寸分布,以及用于固相的纳米,微米或更大的颗粒。 惰性/反应气体在压电晶体单元的表面上被预热。

    Mesofluidic reactor with pulsing ultrasound frequency

    公开(公告)号:US09901897B2

    公开(公告)日:2018-02-27

    申请号:US15301311

    申请日:2015-03-31

    Applicant: Cominnex Zrt

    Abstract: A mesofluidic reactor performs a chemical reaction of a starting material. A liquid phase starting material is introduced into a spraying head equipped with an ultrasound generating piezoelectric crystal unit. An inert/reagent gas feeds into the spraying head, connected to a reactor tube arranged within a thermally insulated multi-zone heating unit. For solid phase, an inert/reagent gas is introduced into a solids container connected to a spraying head equipped with an ultrasound generating piezoelectric crystal unit. The spraying head connects to a reactor tube arranged within a thermally insulated multi-zone heating unit. In either case, a reactor tube outlet connects to a cooled product trap to collect conversed substances. The spraying head generates a particle size distribution with nano and micro sized particles for the liquid phase and nano, micro or larger particles for the solid phase. The inert/reagent gas is preheated over the piezoelectric crystal unit's surface.

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