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    • 3. 发明公开
    • Mixing-assisted oxidative desulfurziation method of diesel fuel and device thereof
    • Mischungsunterstütztesoxidatives Entschwefelungsverfahren von Dieselbrennstoff und Vorrichtungdafür
    • EP2410038A2
    • 2012-01-25
    • EP11161598.5
    • 2011-04-08
    • Tung, Lin HsinWei, Wan MengChun, Lu Ming
    • Tung, Lin HsinWei, Wan MengChun, Lu Ming
    • C10G27/04C10G27/12C10G27/14
    • C10G27/04C10G21/00C10G21/28C10G27/12C10G27/14C10G2300/1055C10G2300/202C10G2300/4081C10G2300/44
    • Mixing-assisted oxidative desulfurization method of diesel fuel and the continuous desulfurization device thereof is disclosed herein. Because of the dangers of sulfur content in gasoline and other petroleum products, many governments have required the sulfur content of these petroleum products to be reduced so as to safeguard public safety and health. Desulfurization of fossil fuels is provided by the combination of fossil fuels with an aqueous mixture of ozone or hydrogen peroxide and a Tetraoctylphosphonium salt phase transfer catalyst, and the mixture is then reactive mixed to form oxidize sulfur compounds in the fuel. The polar oxidized sulfones species are removed via another mixing step. The desulfurization device (10) can be in the form of a portable device which provides for continuous mixing-assisted desulfurization for the selective removal of sulfur containing compounds from fossil fuels such as diesel fuel or other hydrocarbons.
    • 本文公开了柴油机的混合辅助氧化脱硫方法及其连续脱硫装置。 由于汽油等石油产品硫含量的危害,许多国家政府都要求减少这些石油产品的硫含量,以保障公众的安全和健康。 化石燃料的脱硫是通过化石燃料与臭氧或过氧化氢的水性混合物和四辛基鏻盐相转移催化剂的组合提供的,然后将混合物反应混合以在燃料中形成氧化硫化合物。 通过另一个混合步骤除去极性氧化砜物质。 脱硫装置(10)可以是便携式装置的形式,其提供连续混合辅助脱硫以从诸如柴油燃料或其它烃类的化石燃料中选择性除去含硫化合物。
    • 8. 发明公开
    • Compressor apparatus
    • Verdichtungsgerät
    • EP1288503A1
    • 2003-03-05
    • EP01307041.2
    • 2001-08-17
    • Lu, Ming-Te
    • Lu, Ming-Te
    • F04D27/00F04B41/02F04B49/00
    • F04B49/00F04B41/02F04D27/02
    • A compressor apparatus includes a compressor (100) with an intake pipe (102) and a discharge pipe (103), a plurality of branch pipes (104) that extend from and that are in fluid communication with the discharge pipe (103), and a plurality of chambers (131, 231, 331, 431, 531, 631) that are in fluid communication with the branch pipes (104), respectively. Each of the chambers (131, 231, 331, 431, 531, 631) is in fluid communication with the intake pipe (102) via a return flow pipe unit (20). A plurality of pressure sensors (141, 241) are disposed respectively at the chambers (131, 231, 331, 431, 531, 631), and are set respectively at different discharge pressures. When the fluid pressure in one of the chambers (131, 231, 331, 431, 531, 631) reaches the corresponding discharge pressure, the fluid flows from the one of the chambers (131, 231, 331, 431, 531, 631) into the intake pipe (102) via the corresponding return flow pipe unit (20) so as to return to the compressor (100) for performing further compression of the fluid. Each of the branch pipes (104) and the return flow pipe units (20) is equipped with a control valve unit (121, 211, 232) that is controlled by a control unit (7) so that the fluid can flow through the chambers (131, 231, 331, 431, 531, 631) in a sequence that increases in the magnitude of the discharge pressures.
    • 一种压缩机装置,包括具有进气管(102)和排出管(103)的压缩机(100),从排出管(103)延伸并与排出管(103)流体连通的多个分支管(104),以及 分别与分支管道(104)流体连通的多个腔室(131,231,331,431,531,631)。 每个室(131,231,331,431,531,631)经由回流管单元(20)与进气管(102)流体连通。 多个压力传感器(141,241)分别设置在室(131,231,331,431,531,631)处,分别设置在不同的排出压力。 当一个室(131,231,331,431,531,631)中的流体压力达到相应的排出压力时,流体从一个室(131,231,331,431,531,631)流出, 经由相应的回流管单元(20)进入进气管(102),以便返回到压缩机(100)以进一步压缩流体。 分支管道(104)和回流管道单元(20)中的每一个配备有由控制单元(7)控制的控制阀单元(121,211,232),使得流体可以流过室 (131,231,331,431,531,631),其排放压力的大小增加。
    • 9. 发明专利
    • Electromagnetic wave transceiving apparatus
    • AU2021240652A1
    • 2022-04-21
    • AU2021240652
    • 2021-03-15
    • YASUKAWA MASAAKILU MINGNG YAT TUNG
    • YASUKAWA MASAAKILU MINGNG YAT-TUNG
    • H01Q1/24
    • Disclosed is an electromagnetic wave transceiving apparatus, comprising a measuring and control unit, an electromagnetic exciter, a dielectric adjustment unit and a positioning unit, wherein when the electromagnetic wave transceiving apparatus is connected to a surface of an external dielectric body, the electromagnetic exciter, the dielectric adjustment unit and the surface of the connected external dielectric body constitute a resonator with a specific electromagnetic spectrum. In consideration of the influence of an external dielectric body connected to the electromagnetic wave transceiving apparatus, when the electromagnetic wave transceiving apparatus is connected to a surface of the external dielectric body, the electromagnetic exciter, the dielectric adjustment unit and the connected external dielectric body can adjust the electromagnetic exciter and the dielectric adjustment unit by means of the measuring and control unit to form a harmonic oscillator with a required frequency, and the transmission and receiving efficiency of an electromagnetic wave signal is not affected by a dielectric material that is in contact with the electromagnetic wave transceiving apparatus.