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    • 4. 发明专利
    • Method for determining sulfide ion and apparatus for measuring concentration of hydrogen sulfide in gas flow
    • 用于测定硫化氢的方法和用于测量气体流中氢化硫浓度的装置
    • JP2011180017A
    • 2011-09-15
    • JP2010045429
    • 2010-03-02
    • Japan Cooperation Center PetroleumUnited Arab Emirates Univアラブ首長国連邦大学財団法人 国際石油交流センター
    • MARZOUK SAYEDMOHAMED AL-MARZOUQI
    • G01N25/42
    • G01N30/00G01N33/00
    • PROBLEM TO BE SOLVED: To provide an inexpensive and highly reliable hydrogen sulfide concentration measuring apparatus continuously measuring hydrogen sulfide in a gas flow.
      SOLUTION: The hydrogen sulfide concentration measuring apparatus 100 is equipped with: an absorption solution 1 absorbing a hydrogen sulfide gas as sulfide ions; a hollow fiber membrane contactor 4 for bringing the gas flow 7 into contact with the flow of the absorption solution 1 via a membrane and making at least part of the hydrogen sulfide gas in the gas flow absorbed in the absorption solution 1 as sulfide ions; a pump 3A for a first channel for supplying the absorption solution 1 for the hollow fiber membrane contactor 4; an oxidizing agent 2 to be in exothermic reaction with sulfide ions; a pump 3B for a second channel for supplying the oxidizing agent 2 for the absorption solution 1; a first temperature measuring device 5 for measuring the temperature of the absorption solution 1 prior to the exothermic reaction between sulfide ions absorbed by the absorption solution 1 and the oxidizing agent 2; and a second temperature measuring device 6 for measuring the temperature of the absorption solution 1 after the exothermic reaction between sulfide ions absorbed by the absorption solution 1 and the oxidizing agent 2.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种廉价且高可靠性的硫化氢浓度测量装置,其连续测量气流中的硫化氢。 解决方案:硫化氢浓度测量装置100装备有:作为硫化物离子吸收硫化氢气体的吸收溶液1; 中空纤维膜接触器4,用于使气流7经由膜与吸收溶液1的流动接触,并使作为硫化物离子吸收在吸收溶液1中的气流中的至少一部分硫化氢气体; 用于供给中空纤维膜接触器4的吸收溶液1的第一通道的泵3A; 氧化剂2与硫化物离子发生放热反应; 用于供给用于吸收溶液1的氧化剂2的第二通道的泵3B; 用于测量由吸收溶液1吸收的硫化物离子与氧化剂2之间的放热反应之前的吸收溶液1的温度的第一温度测量装置5; 以及第二温度测量装置6,用于测量由吸收溶液1吸收的硫化物离子与氧化剂2之间的放热反应之后的吸收溶液1的温度。版权所有:(C)2011,JPO&INPIT
    • 6. 发明专利
    • Gaseous/solid matters separator
    • 气体/固体分离器
    • JP2008302269A
    • 2008-12-18
    • JP2007149654
    • 2007-06-05
    • Japan Cooperation Center PetroleumNippon Oil Corp新日本石油株式会社財団法人 国際石油交流センター
    • FUJIYAMA YUICHIROOKUHARA TOSHIAKIUCHIURA AKIRAYOSHIHARA TOYO
    • B01D45/06B01D45/08B01D45/16C10G11/18
    • PROBLEM TO BE SOLVED: To provide a gaseous/solid matters separator which can improve the separation efficiency of a solid mater particle and a gas far beyond that of a conventional gaseous/solid matters separator.
      SOLUTION: This gaseous/solid matters separator 100 comprises an inner cylinder 10 which extends vertically, with the lower end blocked by a bottom plate 11 and the upper end opened, and a sleeve 2 which concentrically covers the inner cylinder 10 from outside, with a gas vent 3 formed at the top, communicating with the outside. In addition, a plurality of guide blades 5 which project outwardly and extend in the axial direction of the inner cylinder 10, and a plurality of openings 4 which are each positioned correspondingly to the guide blades 5, are arranged on the side of the lower end of the inner cylinder 10. Each guide blade 5 is fitted obliquely in the peripheral direction of the inner cylinder 10, covering those, corresponding to the guide blades 5, of the openings 4. Besides, the opening width W1 of the upper side part 4a of the openings 4, is set to be larger than the opening width W2 of the lower side part 4b of the opening 4.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种可以提高固体颗粒和远远超过常规气/固分离器的气体的分离效率的气/固物质分离器。 解决方案:该气/固物分离器100包括内筒10,该内筒10垂直延伸,下端被底板11阻塞,上端打开,套筒2从外侧同心地覆盖内筒10 具有形成在顶部的与外部连通的排气口3。 另外,沿着内筒10的轴向向外突出并且延伸的多个引导叶片5和与引导叶片5对应的多个开口4配置在下端侧 每个引导叶片5沿着内筒10的周向方向倾斜地安装,覆盖与开口4相对应的导向叶片5.此外,上侧部分4a的开口宽度W1 开口4的开口宽度W2设定为大于开口4的下侧部4b的开口宽度W2。(C)2009,JPO&INPIT
    • 7. 发明专利
    • Gaseous/solid matters separator
    • 气体/固体分离器
    • JP2008302268A
    • 2008-12-18
    • JP2007149625
    • 2007-06-05
    • Japan Cooperation Center PetroleumNippon Oil Corp新日本石油株式会社財団法人 国際石油交流センター
    • FUJIYAMA YUICHIROOKUHARA TOSHIAKIUCHIURA AKIRAYOSHIHARA TOYO
    • B01D45/06B01D45/08B01D45/16
    • PROBLEM TO BE SOLVED: To provide a gaseous/solid matters separator capable of improving the separation efficiency of a solid matter particle and a gas far beyond that of a conventional gaseous/solid matters separator.
      SOLUTION: This gaseous/solid matters separator 100 comprises an inner cylinder 10 which extends vertically, with the lower end blocked by a bottom plate 11 and the upper end opened, and a sleeve 2 which concentrically covers the inner cylinder 10 from outside, with a gas vent 3 formed at the top communicating with the outside. In addition, a plurality of guide blades 5 which project outwardly and extend in the axial direction of the inner cylinder 10 and a plurality of openings 4 which are each positioned correspondingly to the guide blades 5 and extend in the axial direction of the inner cylinder 10, are arranged on the side of the lower end of the inner cylinder 10. Each guide blade 5 is obliquely fitted in the peripheral direction of the inner cylinder 10, covering those, corresponding to the guide blades 5, of the openings 4. Besides, in the center part of the bottom plate 11, communication holes 11a communicating with the inner cylinder 10 and the sleeve 2, are formed.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供能够提高固体物质和气体的分离效率远远高于常规气/固分离器的气体/固体物质分离器。 解决方案:该气/固物分离器100包括内筒10,该内筒10垂直延伸,下端被底板11阻塞,上端打开,套筒2从外侧同心地覆盖内筒10 具有形成在顶部的与外部连通的排气口3。 另外,沿着内筒10的轴向向外突出并且延伸的多个引导叶片5和多个开口4,每个开口4对应于引导叶片5并沿着内筒10的轴向延伸 布置在内筒10的下端侧。每个引导叶片5沿内筒10的周向倾斜地配合,覆盖与开口4相对应的导向叶片5。另外, 在底板11的中央部形成有与内筒10和套筒2连通的连通孔11a。 版权所有(C)2009,JPO&INPIT