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    • 1. 发明公开
    • DECONTAMINATION SYSTEM
    • DEKONTAMINATIONSSYSTEM
    • EP3138583A1
    • 2017-03-08
    • EP14891060.7
    • 2014-04-30
    • Airex Co., Ltd.
    • KAWASAKI, KojiKAKUDA, DaisukeMASUDOME, Jun
    • A61L2/20B01J7/02C12M1/12F24F6/12
    • A61L2/22A61L2/208A61L2202/25C12M37/00F24F3/16F24F2003/1675
    • [Problem]
      Provided is a decontamination system which does not require large scale equipment such as large diameter ducts or anti-condensation heaters, while enabling, with respect to a plurality of rooms targeted to be decontaminated, pipelining of which distance is long for each room, the decontamination system being capable of supplying an accurate amount of decontamination gas for each room.
      [Solving Means]
      Compressed air-generating means and decontamination solution-supplying means are included, mixed gas-liquid adjusters and gas generators are respectively provided in each room targeted to be decontaminated, and a conveyance distance of gas-liquid supplying pipes which communicate with the mixed gas-liquid adjusters and the gas generators is longer than a conveyance distance of decontamination solution supplying pipes which communicate with decontamination solution-supplying means and the mixed gas-liquid adjusters.
    • [问题]提供了一种净化系统,其不需要诸如大直径管道或防冷凝加热器的大规模设备,而对于要净化的多个房间,对于每个房间的距离长的流水线 ,净化系统能够为每个房间提供精确量的去污气体。 [解决方案]包括压缩空气发生装置和净化溶液供应装置,分别在每个待净化的房间中设置混合气液调节器和气体发生器,以及与 混合气液调节器和气体发生器比与净化溶液供给装置和混合气液调节器连通的去污溶液供给管的输送距离长。
    • 4. 发明公开
    • ELECTRON BEAM IRRADIATION DEVICE
    • 电子束辐照装置
    • EP3305329A1
    • 2018-04-11
    • EP16799796.4
    • 2016-05-10
    • Airex Co., Ltd.
    • KAWASAKI, KojiKAKUDA, DaisukeMASUDOME, Jun
    • A61L2/08A61L2/20G21K5/04G21K5/10A61L101/22
    • A61L2/087A61L2/08A61L2/20A61L2202/14A61L2202/23B65B55/08G21K5/04G21K5/10
    • An electron beam irradiation device which can uniformly project electron beams to the entire outer surface of a container by using a small-sized low-energy electron accelerator, can maintain reliability and safety of a sterilization effect high by making sterilization levels of portions to the same and can keep a cost of the electron accelerator and an initial cost and a maintenance cost of the device low by prolonging a usage limit (service life) is provided. When each of the side surface portions of the container is irradiated with the electron beams by supporting a bottom surface portion of the container by a supporting portion, a position of the container is moved by the supporting portion so that a distance between each of the side surface portions of the container and an irradiation window of the electron accelerator is made substantially equal. Subsequently, when an upper surface portion and a bottom surface portion of the container are irradiated with the electron beams by holding the side surface portion of the container by a holding portion, the position of the container is moved by the holding portion so that the distances between the upper surface portion and the bottom surface portion of the container and the irradiation windows of the electron accelerators become substantially equal.
    • 通过使用小型低能量电子加速器将电子束均匀地投射到容器的整个外表面的电子束照射装置能够通过使部分的杀菌水平相同来保持高杀菌效果的可靠性和安全性 并且可以通过延长使用极限(使用寿命)来保持电子加速器的成本并且降低装置的初始成本和维护成本。 当通过支撑部分支撑容器的底表面部分而用电子束照射容器的每个侧表面部分时,通过支撑部分移动容器的位置,使得每个侧面 容器的表面部分和电子加速器的照射窗口基本相等。 随后,当通过用保持部分保持容器的侧表面部分而用电子束照射容器的上表面部分和底表面部分时,容器的位置通过保持部分移动,使得距离 在容器的上表面部分和底表面部分之间以及电子加速器的照射窗口变得基本相等。
    • 10. 发明公开
    • PASS BOX
    • EP3970759A1
    • 2022-03-23
    • EP20805026.0
    • 2020-03-18
    • Airex Co., Ltd.
    • KAWASAKI, KojiKAKUDA, DaisukeMASUDOME, JunKITANO, TsukasaGUO, Zhiqiang
    • A61L2/18
    • The present invention provides a pass box capable of accomplishing a decontamination effect by concentrating a mist for decontamination on the surface of an article to be conveyed to grade A environment, and of achieving more efficient decontamination works by reducing the duration of aeration operations.
      The pass box includes a first chamber for decontaminating external surfaces of the article with a decontamination agent, a second chamber for removing the decontamination agent that is residual on the external surfaces of the decontaminated article, a decontamination agent supply device, a decontamination agent control device, a moving device for moving the article, and an air supply and exhaust device for supplying and exhausting clean air. The decontamination agent supply device converts a chemical for decontamination into a mist for decontamination, and supplies the same to the inside of the first chamber that accommodates the article. The decontamination agent control device includes vibration boards disposed adjacent to internal wall surfaces of the first chamber, and the vibration boards ultrasonically vibtrate to generate sound flows from board surfaces by an ultrasound in the vertical direction, and the mist for decontamination supplied is pressed by acoustic radiation pressure to concentrate on the external surfaces of the article.