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    • 131. 发明专利
    • 製鉄スラグの分離方法
    • 分离铁制品的方法
    • JP2015027672A
    • 2015-02-12
    • JP2014184146
    • 2014-09-10
    • Jfeスチール株式会社Jfe Steel Corp
    • ISHIDA TADAHIRANISHINA YOSHIAKIENOEDA SEIJI
    • B09B5/00B07B7/00B07B7/01B07B7/08B07B9/00B07B11/02B09B3/00C21C5/28C21C7/00
    • Y02P10/212
    • 【課題】製鉄プロセス(特に、溶銑予備処理や転炉工程)で発生する製鉄スラグの再資源化を図るために、製鉄スラグを鉄分と非鉄分に効率よく分離することができる製鉄スラグの分離方法を提供する。【解決手段】製鉄スラグを鉄分と非鉄分に分離するに際して、(S1)製鉄スラグを微粒化する微粒化工程と、(S2)微粒化された製鉄スラグを気流搬送・攪拌する気流搬送(攪拌)工程と、(S3)気流攪拌された製鉄スラグを比重分離によって鉄分(重量側)と非鉄分(軽量側)に分離する比重分離工程とを備えている。【選択図】図1
    • 要解决的问题:提供一种分离铁制渣的方法,其能够有效地将铁制造渣分离成铁含量和非铁含量,以便回收在铁制造过程中产生的铁制造炉渣(特别是铁水 初步处理和转炉过程)。解决方案:将铁制渣分离成铁含量和非铁含量的方法,包括:粉碎铁制渣的粉碎工序(S1) 用于进行粉碎铁制造炉渣的气流输送/搅拌的气流输送(搅拌)处理(S2) 和比较重分离处理(S3),用于根据比重分离将进行气流搅拌的铁制造渣分离成铁含量(重量侧)和非铁含量(重量轻重量)。
    • 138. 发明专利
    • AIR FLOW TYPE CLASSIFIER
    • JPH10323623A
    • 1998-12-08
    • JP15313397
    • 1997-05-28
    • RICOH KK
    • MAKINO NOBUYASUUEHARA KENICHISATO SATOYUKI
    • G03G9/087B07B7/08B07B11/02B07B11/06
    • PROBLEM TO BE SOLVED: To stabilize a revolving flow in a classification chamber including flow rate control of secondary air flow flowing in from a peripheral part of the classification chamber, and ambient improvement by a method wherein a casing covering a secondary air distribution feed opening is provided, and a flow rate control function of a secondary air flow is provided to a secondary air feed opening. SOLUTION: A louver 12 wherein a passage is of a wing shape is provided as a part of a secondary air feed opening for making secondary air flow in onto an outer peripheral part of a lower part peripheral wall of a classification chamber, which is so constituted as to disperse powder material, and accelerate a revolving speed. A casing 13 is provided on an outer periphery of the louver 12 being an inflow opening for secondary air flowing in from the peripheral part of the classification chamber. Further, a secondary air intake 14 is provided at one position or a plurality of the secondary air intakes 14 are provided to one end of the casing 13. The air intake 14 together with the louver 12 constitutes the secondary air inflow opening. An amount of secondary air even though a clearance of the louver 12 is not highly precisely adjusted, can be controlled with the casing 13, and a stable classification state can be always maintained.