Turbomachine type chemical reactor
    322.
    发明授权

    公开(公告)号:US11123702B2

    公开(公告)日:2021-09-21

    申请号:US17272747

    申请日:2019-09-16

    Abstract: A turbomachine type chemical reactor for processing a process fluid is presented. The turbomachine type chemical reactor includes at least one impeller section and a stationary diffuser section arranged downstream. The impeller section accelerates the process fluid to a supersonic flow. A shock wave is generated in the stationary diffuser section that instantaneously increases static temperature of the process fluid downstream the shock wave for processing the process fluid. Static pressure of the process fluid is simultaneously increased across the shock wave. The turbomachine type chemical reactor significantly reduces residence time of the process fluid in the chemical reactor and improves efficiency of the chemical reactor.

    Method to produce light-emitting nano-particles of diamond
    327.
    发明授权
    Method to produce light-emitting nano-particles of diamond 有权
    制造金刚石发光纳米颗粒的方法

    公开(公告)号:US08574536B2

    公开(公告)日:2013-11-05

    申请号:US12597984

    申请日:2008-05-07

    Abstract: Method to produce diamonds containing Nitrogen-Vacancy centers from diamonds grown by a high pressure and high temperature process and containing isolated substitutional nitrogen, comprising: —Irradiating (12) said diamonds by an electron beam such that the irradiation dose is comprised between 1017 and 1019 electrons per square centimeter; —annealing (14) the irradiated diamonds in vacuum or in a inert atmosphere at a temperature above 700° C. and for at least 1 hour; characterized in that said electron beam has an acceleration energy above 7 MeV.

    Abstract translation: 通过高压和高温过程生长并含有分离的取代氮的金刚石生产含有氮 - 空位中心的金刚石的方法,包括: - 通过电子束辐射(12)所述金刚石,使得照射剂量在1017和1019之间 电子每平方厘米; 在真空中或在惰性气氛中,在高于700℃的温度下放置(14)照射的金刚石并至少持续1小时; 其特征在于,所述电子束具有高于7MeV的加速能量。

    Method of producing graphite-carbon composite electrodes for supercapacitors

    公开(公告)号:US08497225B2

    公开(公告)日:2013-07-30

    申请号:US11895588

    申请日:2007-08-27

    Abstract: A method of producing a composite electrode having a specific surface area of at least 100 m2/gm for use in an electrochemical capacitor. The method comprises (a) providing exfoliated graphite flakes that are substantially interconnected to form a porous, conductive graphite network comprising pores; and (b) incorporating an electrochemically active material into at least a pore of the graphite network to form the composite electrode. The exfoliated graphite flakes are preferably obtained from the intercalation and exfoliation of a laminar graphite material selected from natural graphite, spheroidal graphite, synthetic graphite, highly oriented pyrolytic graphite, meso-carbon micro-bead, carbon/graphite fiber, carbon/graphite whisker, carbon/graphite nano-fiber, carbon nano-tube, or a combination thereof. A supercapacitor featuring such a composite electrode exhibits an exceptionally high capacitance value and low equivalent series resistance.

    BLAST TREATMENT METHOD AND BLAST TREATMENT DEVICE
    329.
    发明申请
    BLAST TREATMENT METHOD AND BLAST TREATMENT DEVICE 有权
    BLAST处理方法和BLAST处理装置

    公开(公告)号:US20120031258A1

    公开(公告)日:2012-02-09

    申请号:US13262245

    申请日:2010-03-24

    CPC classification number: F42D5/04 F42B33/06 F42D3/00

    Abstract: A blast treatment method for blasting a treatment subject having an outer shell and a chemical agent charged into an interior of the outer shell includes the steps of: disposing an explosive on the outer side of the outer shell such that a difference occurs in a detonation pressure of the explosive, that acts on the outer shell from an outer side, between one side and another side of a predetermined cutting position of the outer shell and the outer shell is cut by a shearing force generated as a result of the difference in the detonation pressure; and detonating the explosive, wherein, in the step of detonating the explosive, the chemical agent is exposed by cutting the outer shell in the cutting position through detonation of the explosive, and the chemical agent is decomposed using the detonation.

    Abstract translation: 用于对具有外壳和装入外壳内部的化学剂的处理对象进行爆破处理的方法包括以下步骤:在外壳的外侧设置爆炸物,使得在爆震压力下发生差异 从壳体外侧的外壳起作用于外壳的预定切割位置的一侧与另一侧外壳之间的爆炸物由于爆炸的差异而产生的剪切力被切断 压力; 并引爆爆炸物,其中在引爆爆炸物的步骤中,通过爆炸物的爆炸将切割位置的外壳切割而使化学试剂暴露,并且使用爆炸分解化学试剂。

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