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    • 3. 发明公开
    • METHOD OF REMOVING/CONCENTRATING METAL-FOG-FORMING METAL PRESENT IN MOLTEN SALT, APPARATUS THEREFOR, AND PROCESS AND APPARATUS FOR PRODUCING Ti OR Ti ALLOY BY USE OF THEM
    • 方法用于消除或 METALLNEBELBILDENDEM金属熔融盐中浓度及其装置和钛或钛合金的制造方法和设备对利用信息
    • EP1995353A1
    • 2008-11-26
    • EP07738118.4
    • 2007-03-09
    • OSAKA Titanium Technologies Co., Ltd.
    • OGASAWARA, TadashiYAMAGUCHI, Makoto
    • C25C3/02C01F11/32C22B5/04C22B26/20C22B34/12C25B7/00C25C7/06
    • C22B34/129C22B26/20C22B34/1272C25C3/02C25C3/28
    • The present invention provides a method by which a metal-fog-forming metal dissolved in one portion of "a molten salt mixture consisted of one or more of metal-fog-forming metal containing molten salts" (generally, a molten salt) can be removed and transferred to another portion of the molten salt to increase the concentration thereof. The method can hence be utilized as one of means for treating molten salts in various industrial fields in which metal-fog-forming metal-containing molten salts such as Ca or Na are handled. In particular, when the method is utilized in producing Ti by Ca reduction, the Ca dissolved in the molten salt to be fed to an electrolytic cell can be rapidly removed (recovered) and the Ca formation efficiency during the electrolysis of the molten salt can be enhanced. Consequently, Ca formation and TiCl 4 reduction in the electrolysis of the molten salt can be efficiently carried out and a stable operation on a commercial scale is possible. Thus, the method can be efficiently utilized in producing Ti or a Ti alloy by Ca reduction.
    • 本发明提供了通过将金属雾形成金属在“熔融盐混合物由一种或多种的金属雾形成金属包含熔融盐”(基因集会,熔融盐)可以是一种部分溶解的方法 取出并转移到熔融盐的另一部分,以增加其浓度。 该方法可因此用作装置中的一个用于在其中各种工业领域中处理熔融盐的金属雾形成含金属的熔盐:如Ca或Na的处理方式。 特别是,当该方法在通过Ca还原制造Ti的利用,在熔融盐中溶解的钙要被馈送到在电解槽可以迅速地去除(回收)和熔融盐的电解过程中的Ca形成效率可 增强。 因此,钙的形成和在熔融盐的电解的TiCl 4还原可有效地进行和稳定的操作以商业规模是可能的。 因此,该方法可以有效地生产Ti或由Ca还原Ti合金使用。
    • 6. 发明公开
    • LIGHTING EQUIPMENT EXCELLING IN AIR PURIFICATION
    • BELEUCHTUNGSEINRICHTUNG MIT HERVORRAGENDER LUFTREINIGUNG
    • EP2028417A1
    • 2009-02-25
    • EP07745052.6
    • 2007-06-12
    • OSAKA Titanium Technologies Co., Ltd.
    • OGASAWARA, TadashiMATSUO, ToshiakiSHIMOSAKI, ShinjiAZUMA, KazuomiMITANI, Yoji
    • F21V33/00A61L9/00A61L9/01B01J35/02F21V3/04F21Y103/00
    • A61L9/205A61L9/18A61L2209/12B01J35/004G09F13/00
    • A full spectrum light emitting lamp and one or more translucent base bodies surrounding the lamp are disposed in the lighting apparatus, the one or more translucent bas bodies having a photocatalytic reaction layer which bears a photocatalyst made of a titanium dioxide thin film therein, or the one or more translucent base bodies having the photocatalytic reaction layer which bears the photocatalyst made of the titanium dioxide thin film therein and having infrared light-absorbing functions, and a space through which air can flow is formed between the lamp and the translucent base body. Therefore, an ultraviolet light, a visible light and an infrared light can effectively be utilized according to characteristics such as an air purifying function of the ultraviolet light, a lighting function of the visible light, and a heating function of the infrared light to thereby save optical energy emitted from the lamp. Further, forced convection is generated in the air flow space by a heating effect of the infrared light emitted from the lamp in addition to a heating effect of the optical energy emitted from the lamp, so that the air can sufficiently be ventilated to promote an air purifying effect.
    • 全光源发光灯和围绕灯的一个或多个半透明基体设置在照明装置中,所述一个或多个半透明基体具有光催化反应层,所述光催化反应层承载由二氧化钛薄膜制成的光催化剂,或 一个或多个具有光催化反应层的半透明基体,其承载由其中的二氧化钛薄膜制成的光催化剂并且具有红外光吸收功能,并且在灯和半透明基体之间形成空气可以流过的空间。 因此,可以根据紫外线的空气净化功能,可见光的发光功能,红外光的加热功能等特性有效地利用紫外线,可见光和红外线,从而节省 从灯发出的光能。 此外,除了从灯发出的光能的加热效应之外,通过从灯发出的红外线的加热效应,在空气流动空间中产生强制对流,使得空气可以充分通风以促进空气 净化效果。
    • 8. 发明公开
    • PROCESS FOR PRODUCING Ti AND APPARATUS THEREFOR
    • VERFAHREN ZUR HERSTELLUNG VON TI VORRICHTUNGDAFÜR
    • EP1944383A1
    • 2008-07-16
    • EP06782859.0
    • 2006-08-22
    • OSAKA Titanium Technologies Co., Ltd.
    • OGASAWARA, TadashiYAMAGUCHI, MakotoUENISHI, ToruHORI, MasahikoTAKEMURA, KazuoDAKESHITA, Katsunori
    • C22B34/12C22B5/04C25C7/00
    • C25C3/28C22B34/1272C22B34/129C22B34/1295C25C3/02C25C7/005C25C7/06
    • A process for producing Ti, comprising a reduction step of reacting TiCl 4 with Ca in a CaCl 2 -containing molten salt having the Ca dissolved therein to thereby form Ti particles, a separation step of separating the Ti particles formed in said molten salt from said molten salt and an electrolysis step of electrolyzing the molten salt so as to increase the Ca concentration, wherein the molten salt increased in Ca concentration in the electrolysis step is introduced into a regulating cell to thereby render the Ca concentration of the molten salt constant and thereafter the molten salt is used for the reduction of TiCl 4 in the reduction step. In the present invention, the Ca concentration of the molten salt to be fed to the corresponding reduction vessel can be inhibited from fluctuating and, at the same time, can maintain high concentration levels. Further, a large volume of the molten salt can be treated continuously. Therefore, the reduction reaction of TiCl 4 can be efficiently performed, and the process can be effectively utilized in the production of Ti by Ca reduction as a production process for realizing Ti production on an industrial scale.
    • 一种生产Ti的方法,包括在溶解有Ca的含CaCl 2的熔融盐中使TiCl 4与Ca反应从而形成Ti颗粒的还原步骤,将形成在所述熔融盐中的Ti颗粒与所述 熔融盐和电解电解步骤,以提高Ca浓度,其中将电解步骤中Ca浓度升高的熔融盐引入调节池中,从而使熔融盐的Ca浓度恒定,其后 在还原步骤中,熔融盐用于还原TiCl 4。 在本发明中,可以抑制供给到相应的还原容器的熔融盐的Ca浓度的波动,同时可以保持高浓度水平。 此外,可以连续地处理大量的熔融盐。 因此,可以有效地进行TiCl 4的还原反应,并且通过Ca还原可以有效地利用Ti的制造,作为实现工业规模的Ti生产的制造方法。
    • 9. 发明公开
    • METHOD FOR ELECTROLYSIS OF MOLTEN SALT, ELECTROLYTIC CELL, AND PROCESS FOR PRODUCING Ti USING SAID METHOD
    • 方法熔化RIVER电解,电解电池及其制造方法TI通过这种方法
    • EP1942210A1
    • 2008-07-09
    • EP06796611.9
    • 2006-08-22
    • OSAKA Titanium Technologies Co., Ltd.
    • OGASAWARA, TadashiYAMAGUCHI, MakotoUENISHI, ToruHORI, MasahikoTAKEMURA, KazuoDAKESHITA, Katsunori
    • C25C3/02C22B34/12
    • C22B34/129C22B5/04C22B34/1268C25C3/02C25C7/005
    • The present invention provides a method for electrolyzing molten salt that can enhance the concentration of metal-fog forming metal in the molten salt by carrying out the electrolysis under conditions that the molten salt containing the chloride of metal-fog forming metal is supplied from one end of an electrolytic cell to a space between an anode and a cathode in a continuous or intermittent manner to provide a flow rate in one direction to the molten salt in the vicinity of the surface of the cathode and thus to allow the molten salt to flow in one direction in the vicinity of the surface of the cathode. According to the present invention, while high current efficiency is maintained, only the molten salt enriched with metal-fog forming metal such as Ca can be effectively taken out. Further, this method can easily be carried out by using the electrolytic cell according to the present invention. Furthermore, the application of the method for electrolyzing molten salt according to the present invention to the production of Ti by Ca reduction can realize the production of metallic Ti with high efficiency. Thus, the method for electrolyzing molten salt, the electrolytic cell, and the process for producing Ti, each according to the present invention, can be effectively utilized in the production of Ti by Ca reduction.
    • 本发明提供了一种用于电解熔融盐也可以通过的条件下进行电解确实提高金属雾形成金属的浓度在熔融盐的熔融盐包含金属的雾形成金属的氯化物是从一端侧供应 电解池之间在阳极和以连续或间歇的方式的阴极的空间,在阴极表面附近,以提供在一个方向上的流速的熔融盐,从而使熔融盐中流动的 在阴极表面附近一个方向。 。根据本发明,在高的电流效率被保持,只与金属雾形成金属浓熔融盐:如Ca可以被有效地取出。 此外,该方法可以很容易地通过使用电解池gemäß到本发明开展。 进一步,用于电解熔融盐gemäß到本发明通过Ca还原生产的Ti可以实现具有高效率生产金属Ti的方法的应用。 因此,用于电解熔融盐,电解池的方法,和用于生产的Ti,每个gemäß在本发明的方法,可以有效地通过Ca还原生产的Ti利用。