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    • 3. 发明公开
    • TRANSPORTATION OF MEDICAL INSTRUMENTS
    • 运输VIC MEDISINISCHEN INSTRUMENTEN
    • EP3145713A1
    • 2017-03-29
    • EP15727711.2
    • 2015-05-15
    • Tristel PLC
    • SWINNEY, PaulSHABANOVA, JulijaJANSEN, Esther
    • B32B7/12A61B1/00A61J1/10G09F3/04
    • A61B1/00144A61B50/30A61B50/36A61B2050/002A61B2050/0065A61B2050/314A61L2202/181B65D33/004
    • A device (2) for the transportation and temporary storage of a medical instrument such as an endoscope (4) comprises: an instrument bag (6) formed of a plastics material substantially impermeable to bodily fluids, the bag having an opening (8) for receiving the instrument; an inner label (10) which has a first portion (12) adhered to an external surface of the bag adjacent to the opening (8) and has a second portion (14) which is disposed beyond the opening 98) and which has a lower surface which is adhesive and covered by a removable backing and an outer label (16) which overlies the inner label (10) and which has a first portion (18) which has a lower surface adhered to at least one of an external surface of the bag (6) and an upper surface of the inner label (10), and a second portion (20) which is disposed beyond the opening (8) and which has a lower surface at least part of which is adhesive and covered by a removable backing (24).
    • 用于运输和临时存放诸如内窥镜(4)的医疗器械的装置(2)包括:由基本上不可渗透到体液的塑料材料形成的器械袋(6),所述袋具有用于 接收仪器; 内部标签(10),其具有附接到所述袋的与所述开口(8)相邻的外表面的第一部分(12),并且具有设置在所述开口98之外的第二部分(14)),并且具有较低的 表面,其是粘合剂并且被可移除的背衬覆盖,并且外标签(16)覆盖在内标签(10)上,并且具有第一部分(18),第一部分(18)具有粘附到至少一个外表面 袋(6)和内标签(10)的上表面,以及设置在开口(8)之外的第二部分(20),并且具有下表面,其至少一部分是粘合剂并被可移除的 背部(24)。
    • 4. 发明授权
    • CHLORINE DIOXIDE GENERATION
    • 生产二氧化氯
    • EP1644051B1
    • 2008-01-02
    • EP04743535.9
    • 2004-07-23
    • Tristel PLC
    • HAWKER, Michael, JohnALLEN, Timothy DerekSWINNEY, Paul
    • A61L2/18A61L2/26A61L2/00C01B11/02C11D3/00
    • A61L2/18A61L2/24C01B11/023C01B11/024
    • A method of producing a stream of aqueous chlorine dioxide sterilizing fluid suitable for use in sterilizing medical and dental equipment or for wound irrigation or skin asepsis is described. Steps are: pumping fluid portions of a first reagent and a second reagent into the proximal end of an elongate reaction chamber (24) to form a reaction mixture, the reagents being selected to react together to form aqueous chlorine dioxide; providing a stream of water around or adjacent to the distal end of the reaction chamber (24); continuing to pump fluid portions of said reagents so as to cause the reagent mixture to travel through the reaction chamber and then into the stream of water to form a stream of aqueous chlorine dioxide sterilizing fluid; wherein the pumping rates and the internal dimensions of the elongate reaction chamber (24) are selected so that the reaction to form chlorine dioxide is substantially complete when the reagent mixture exits the reaction chamber (24); and continuing pumping fluid portions of said reagents until a desired quantity of said sterilizing fluid has been produced; wherein the pumping of each reagent is carried out by means of a diaphragm pump (90, 92) or a piston pump via a pressure-control valve (32, 34) so that each fluid portion is pumped at substantially constant pressure.
    • 9. 发明公开
    • CHLORINE DIOXIDE GENERATION
    • 生产二氧化氯
    • EP1644051A1
    • 2006-04-12
    • EP04743535.9
    • 2004-07-23
    • Tristel PLC
    • HAWKER, Michael, JohnALLEN, Timothy DerekSWINNEY, Paul
    • A61L2/18A61L2/26A61L2/00C01B11/02C11D3/00
    • A61L2/18A61L2/24C01B11/023C01B11/024
    • A method of producing a stream of aqueous chlorine dioxide sterilizing fluid suitable for use in sterilizing medical and dental equipment or for wound irrigation or skin asepsis is described. Steps are: pumping fluid portions of a first reagent and a second reagent into the proximal end of an elongate reaction chamber (24) to form a reaction mixture, the reagents being selected to react together to form aqueous chlorine dioxide; providing a stream of water around or adjacent to the distal end of the reaction chamber (24); continuing to pump fluid portions of said reagents so as to cause the reagent mixture to travel through the reaction chamber and then into the stream of water to form a stream of aqueous chlorine dioxide sterilizing fluid; wherein the pumping rates and the internal dimensions of the elongate reaction chamber (24) are selected so that the reaction to form chlorine dioxide is substantially complete when the reagent mixture exits the reaction chamber (24); and continuing pumping fluid portions of said reagents until a desired quantity of said sterilizing fluid has been produced; wherein the pumping of each reagent is carried out by means of a diaphragm pump (90, 92) or a piston pump via a pressure-control valve (32, 34) so that each fluid portion is pumped at substantially constant pressure.