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    • 1. 发明申请
    • Plasma treatment apparatus and method
    • 等离子体处理装置及方法
    • US20070163499A1
    • 2007-07-19
    • US10555542
    • 2004-04-30
    • Niall FinnLadislav KvizJurg SchutzAnthony Farmer
    • Niall FinnLadislav KvizJurg SchutzAnthony Farmer
    • H05H1/26B01J19/08C23C16/00
    • B01J19/088B01J2219/0813B01J2219/0815B01J2219/0818B01J2219/083B01J2219/0833B01J2219/0879B01J2219/0898D06M10/025D06M2101/12H05H1/2406H05H2001/2431
    • A plasma treated gas permeable material is produced by applying an alternating voltage between spaced electrodes, at least one of which is covered with a dielectric barrier and at least one of which comprises a plurality of discrete electrode segments, to generate plasma microdischarges between the spaced electrodes. A gas permeable material is passed between or adjacent to the spaced electrodes. A gas is moved between the electrode segments into and through the space between the electrodes and through the gas permeable material. The gas flows over plasma generation surfaces of the respective electrode segments and is moved at a rate whereby the gas flow between the spaced electrodes is turbulent and so randomises the plasma microdischarges and disperses plasma products that would otherwise give rise to burning instabilities in the gas permeable material, whereby the randomized plasma microdischarges provide a generally uniform plasma treatment of the gas permeable material. Also disclosed is an apparatus for laying out the process.
    • 通过在间隔的电极之间施加交流电压来产生等离子体处理的气体可渗透材料,其中至少一个电极被介电阻挡层覆盖,并且其中至少一个包括多个离散的电极段,以在间隔开的电极之间产生等离子体微放电 。 气体可渗透材料在间隔开的电极之间或邻近间隔通过。 气体在电极段之间移动并穿过电极之间的空间并通过透气材料。 气体在相应电极段的等离子体产生表面上流动,并且以这样的速率移动,由此在间隔开的电极之间的气体流动是湍流的,因此使等离子体微放电随机化并且分散等离子体产物,否则会导致燃气不透气性 材料,由此随机等离子体微放电提供对气体可透过材料的大致均匀的等离子体处理。 还公开了一种用于布置该过程的装置。
    • 2. 发明申请
    • PLASMA TREATMENT APPARATUS AND METHOD
    • 等离子体处理装置和方法
    • US20110180387A1
    • 2011-07-28
    • US13018149
    • 2011-01-31
    • Niall FINNLadislav KvizJurg SchutzAnthony Farmer
    • Niall FINNLadislav KvizJurg SchutzAnthony Farmer
    • H05F3/00B01J19/08
    • B01J19/088B01J2219/0813B01J2219/0815B01J2219/0818B01J2219/083B01J2219/0833B01J2219/0879B01J2219/0898D06M10/025D06M2101/12H05H1/2406H05H2001/2431
    • A plasma treated gas permeable material is produced by applying an alternating voltage between spaced electrodes, at least one of which is covered with a dielectric barrier and at least one of which comprises a plurality of discrete electrode segments, to generate plasma microdischarges between the spaced electrodes. A gas permeable material is passed between or adjacent to the spaced electrodes. A gas is moved between the electrode segments into and through the space between the electrodes and through the gas permeable material. The gas flows over plasma generation surfaces of the respective electrode segments and is moved at a rate whereby the gas flow between the spaced electrodes is turbulent and so randomises the plasma microdischarges and disperses plasma products that would otherwise give rise to burning instabilities in the gas permeable material, whereby the randomized plasma microdischarges provide a generally uniform plasma treatment of the gas permeable material. Also disclosed is an apparatus for laying out the process.
    • 通过在间隔的电极之间施加交流电压来产生等离子体处理的气体可渗透材料,其中至少一个电极覆盖有介电阻挡层,并且其中至少一个包括多个离散电极段,以在间隔开的电极之间产生等离子体微放电 。 气体可渗透材料在间隔开的电极之间或邻近间隔通过。 气体在电极段之间移动并穿过电极之间的空间并通过透气材料。 气体在相应电极段的等离子体产生表面上流动,并且以这样的速率移动,由此在间隔开的电极之间的气体流动是湍流的,因此使等离子体微放电随机化并且分散等离子体产物,否则会导致燃气不透气性 材料,由此随机等离子体微放电提供对气体可透过材料的大致均匀的等离子体处理。 还公开了一种用于布置该过程的装置。
    • 3. 发明授权
    • Plasma treatment apparatus and method
    • 等离子体处理装置及方法
    • US08309033B2
    • 2012-11-13
    • US13018149
    • 2011-01-31
    • Niall FinnLadislav KvizJurg SchutzAnthony Farmer
    • Niall FinnLadislav KvizJurg SchutzAnthony Farmer
    • B01J19/08
    • B01J19/088B01J2219/0813B01J2219/0815B01J2219/0818B01J2219/083B01J2219/0833B01J2219/0879B01J2219/0898D06M10/025D06M2101/12H05H1/2406H05H2001/2431
    • A plasma treated gas permeable material is produced by applying an alternating voltage between spaced electrodes, at least one of which is covered with a dielectric barrier and at least one of which comprises a plurality of discrete electrode segments, to generate plasma microdischarges between the spaced electrodes. A gas permeable material is passed between or adjacent to the spaced electrodes. A gas is moved between the electrode segments into and through the space between the electrodes and through the gas permeable material. The gas flows over plasma generation surfaces of the respective electrode segments and is moved at a rate whereby the gas flow between the spaced electrodes is turbulent and so randomises the plasma microdischarges and disperses plasma products that would otherwise give rise to burning instabilities in the gas permeable material, whereby the randomized plasma microdischarges provide a generally uniform plasma treatment of the gas permeable material. Also disclosed is an apparatus for laying out the process.
    • 通过在间隔的电极之间施加交流电压来产生等离子体处理的气体可渗透材料,其中至少一个电极被介电阻挡层覆盖,并且其中至少一个包括多个离散的电极段,以在间隔开的电极之间产生等离子体微放电 。 气体可渗透材料在间隔开的电极之间或邻近间隔通过。 气体在电极段之间移动并穿过电极之间的空间并通过透气材料。 气体在相应电极段的等离子体产生表面上流动,并且以这样的速率移动,由此在间隔开的电极之间的气体流动是湍流的,因此使等离子体微放电随机化并且分散等离子体产物,否则会导致燃气不透气性 材料,由此随机等离子体微放电提供对气体可透过材料的大致均匀的等离子体处理。 还公开了一种用于布置该过程的装置。