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    • 2. 发明专利
    • SUPERCONDUCTING MAGNETIC SEPARATOR
    • JPH10312A
    • 1998-01-06
    • JP15696196
    • 1996-06-18
    • TOSHIBA CORP
    • ONISHI YOSHIMICHIKIMURA SHINICHIHANAWA SHINICHIKATSUKI KENJIIWASAKI KEIKO
    • B01D35/06H01F6/00
    • PROBLEM TO BE SOLVED: To lower operating cost and to lessen energy loss on backwashing. SOLUTION: This device is provided with a superconducting electromagnet 2 excited by a DC current-flow fed from a DC power source, a magnetic filter 3 installed in a magnetic space of the superconducting electromagnet 2 and also packed with a filter raw material and magnetized by a magnetic field generated by the superconducting electromagnet 2 and a washer 4 for washing the magnetic filter 3, and is constituted so that by a magnetic inclination generated in the magnetic filter 3, particles to be removed may be caught. In this case, there are provided a permanent current switch 6 installed in parallel with the superconducting electromagnet 2 and closed when an exciting current to the superconducting electromagnet 2 by the DC power source 1 rises to a prescribed value and a first switch installed in mid-way of a DC circuit from the DC power source 1 to the permanent current switch 6 and opened when the exciting current to the superconducting electromagnet 2 by the DC power source 1 rises to the prescribed value to drive the superconducting electromagnet 2 by a permanent current mode using the permanent current switch 6.
    • 4. 发明专利
    • MAGNETICALLY SEPARATING DEVICE
    • JPH11114326A
    • 1999-04-27
    • JP28720597
    • 1997-10-20
    • NISHISHIBA DENKI KKTOSHIBA CORP
    • TANABE MAKOTOHANAWA SHINICHIKIMURA SHINICHIYAMAMORI TAKEOTOCHIO SHINICHIRO
    • B01D35/16B01D35/06
    • PROBLEM TO BE SOLVED: To simplify a device and to make the device compact by rotating a magnetic filter in such a manner that the filter alternately passes through an effective magnetic field and ineffective magnetic field, that magnetic solid suspended substances are adsorbed by a filament in the effective magnetic field and that the magnetic solid suspended substances are removed in the ineffective magnetic field. SOLUTION: A raw water 40 containing magnetic solid suspended substances is introduced by a raw water supply pump 42 through a raw water inlet 36 to a separator container 30. The raw water 40 enters the effective magnetic field generated by an electromagnet 35, where the magnetic solid suspended substances in the raw water 40 are trapped by filaments 32. The water 40 as treated water 46 is discharged through a treated water discharging part 37. The magnetic solid suspended substances trapped by the filaments are carried by rotation of the filament 32 to an ineffective magnetic field region, where the filaments 32 are vibrated by projections 67 to remove the solid suspended substances with a reverse washing water. The removed magnetic solid suspended substances with the reverse washing water are sent from a reverse washing water discharging part 39 through a reverse washing water returning pipe 61 and reserved in a reverse washing waste water tank 52.
    • 7. 发明专利
    • MAGNETIC SEPARATING APPARATUS
    • JPH09327635A
    • 1997-12-22
    • JP14728496
    • 1996-06-10
    • TOSHIBA CORP
    • HANAWA SHINICHI
    • B01D35/06B03C1/00B03C1/02
    • PROBLEM TO BE SOLVED: To prevent a filter section from being saturated and clogged in a short time and reduce frequency of required cleaning and make it possible to effectively remove weak magnetic suspended particles by connecting in a communicating manner a downstream side of a branched pipe to a treating cylinder having a filter section consisting of a ferromagnetic member and disposed in a ferromagnetic field space. SOLUTION: Ferromagnetic particles 9 such as an iron oxide, magnetic block and the like, which are heavily included in a suspension 7 are removed in advance by a magnetic field gradient formed in a first treating cylinder 5, and primarily a comparatively small amount of weak magnetic particles 26 are separated and removed by a filter section 22. Therefore, the filter section 22 is not saturated or clogged in a short time. Because the filter section 22 primarily separates and removes weak magnetic particles, the weak magnetic particles can be very effectively separated and removed. Frequency of cleaning the filter section 22 is reduced and a variety of suspending particles can be economically separated and removed and performance of separating and removing is improved.
    • 8. 发明专利
    • Method for thermal cracking treatment and thermal cracking system
    • 热裂解处理和热裂解系统的方法
    • JP2004231856A
    • 2004-08-19
    • JP2003023724
    • 2003-01-31
    • Toshiba Corp株式会社東芝
    • SAKANO MINAIMAI KIYOSHINAKAJIMA MAKOTOHANAWA SHINICHINOMA TAKESHI
    • B09B3/00C10J3/00
    • Y02E50/30
    • PROBLEM TO BE SOLVED: To provide a thermal cracking method and thermal cracking system effective for suppressing the formation of minor components in a reformed gas without giving influence on the main components of the gas by controlling the ratio of oxygen with a flame-retardant oxidizing agent in the reforming of a gas by low-oxygen combustion.
      SOLUTION: A gas is reformed by the low-oxygen combustion in a gas reformer 15 to obtain the reformed gas 24 composed mainly of low-molecular combustible gases. In the above method, the ratio of oxygen atom is increased by the addition of a flame-retardant oxidizing agent such as steam 20 to effectively suppress the formation of minor harmful substances in the reformed gas 24.
      COPYRIGHT: (C)2004,JPO&NCIPI
    • 要解决的问题:提供一种有效抑制重整气体中次要组分形成的热裂解方法和热裂解系统,而不会通过控制氧气与阻燃剂的比例对气体的主要组分产生影响, 通过低氧燃烧在气体重整中的阻燃氧化剂。 解决方案:气体通过气体重整器15中的低氧燃烧而重整,以获得主要由低分子可燃气体组成的重整气体24。 在上述方法中,通过添加诸如蒸汽20的阻燃氧化剂来增加氧原子的比例,以有效地抑制重整气体24中的微小有害物质的形成。版权所有(C)2004 ,JPO&NCIPI