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    • 3. 发明申请
    • POROUS INORGANIC OXIDE SUPPORT AND HYDROTREATING CATALYST OF CATALYTIC CRACKING GASOLINE USING THE SAME
    • 使用相同的催化裂化汽油的多孔无机氧化物支持和加氢催化剂
    • US20090258780A1
    • 2009-10-15
    • US11885414
    • 2006-02-28
    • Makoto TobaYuji YoshimuraNobuyuki MatsubayashiTakashi Matsui
    • Makoto TobaYuji YoshimuraNobuyuki MatsubayashiTakashi Matsui
    • B01J27/19B01J27/22B01J21/04
    • B01J23/882B01J23/88B01J27/22B01J31/0201B01J35/002B01J37/0203C10G2300/104C10G2400/02
    • A porous inorganic oxide support comprising an oxygen-containing carbonaceous material supported thereon, preferably a porous inorganic oxide support wherein the oxygen-containing carbonaceous material is a carbide of an oxygen-containing organic compound, wherein the ratio of the supported carbon amount with respect to the mass of the support for preparing the catalyst is from 0.05 to 0.2, the atomic ratio of the supported hydrogen amount with respect to the supported carbon amount is from 0.4 to 1.0, and the atomic ratio of the supported oxygen amount with respect to the supported carbon amount is from 0.1 to 0.6; and a hydrotreating catalyst of catalytic cracking gasoline which comprises the support and a catalyst containing a Group 8 metal of the periodic table, molybdenum (Mo), phosphorus and sulfur which is supported on the support are useful as a desulfurization catalyst of, for example, catalytic cracking gasoline at a hyperdesulfurized level, because of having functions of suppressing the hydrogenation activity of olefins and minimizing the decrease in the octane number even under reaction conditions with a high desulfurization ratio.
    • 一种多孔无机氧化物载体,其包含负载在其上的含氧碳质材料,优选多孔无机氧化物载体,其中所述含氧碳质材料是含氧有机化合物的碳化物,其中所述负载碳量相对于 用于制备催化剂的载体的质量为0.05至0.2,负载氢量相对于负载碳量的原子比为0.4至1.0,并且负载氧量相对于负载的碳原子比 碳量为0.1〜0.6; 和催化裂化汽油的加氢处理催化剂,其包含载体和含有周期表第8族金属的催化剂,负载在载体上的钼(Mo),磷和硫,可用作例如脱硫催化剂, 催化裂化汽油处于高脱硫水平,因为即使在高脱硫比的反应条件下也具有抑制烯烃的氢化活性和最小化辛烷值降低的作用。
    • 4. 发明授权
    • Porous inorganic oxide support and hydrotreating catalyst of catalytic cracking gasoline using the same
    • 多孔无机氧化物载体和催化裂化汽油加氢处理催化剂使用相同
    • US07795168B2
    • 2010-09-14
    • US11885414
    • 2006-02-28
    • Makoto TobaYuji YoshimuraNobuyuki MatsubayashiTakashi Matsui
    • Makoto TobaYuji YoshimuraNobuyuki MatsubayashiTakashi Matsui
    • B01J27/20
    • B01J23/882B01J23/88B01J27/22B01J31/0201B01J35/002B01J37/0203C10G2300/104C10G2400/02
    • A porous inorganic oxide support comprising an oxygen-containing carbonaceous material supported thereon, preferably a porous inorganic oxide support wherein the oxygen-containing carbonaceous material is a carbide of an oxygen-containing organic compound, wherein the ratio of the supported carbon amount with respect to the mass of the support for preparing the catalyst is from 0.05 to 0.2, the atomic ratio of the supported hydrogen amount with respect to the supported carbon amount is from 0.4 to 1.0, and the atomic ratio of the supported oxygen amount with respect to the supported carbon amount is from 0.1 to 0.6; and a hydrotreating catalyst of catalytic cracking gasoline which comprises the support and a catalyst containing a Group 8 metal of the periodic table, molybdenum (Mo), phosphorus and sulfur which is supported on the support are useful as a desulfurization catalyst of, for example, catalytic cracking gasoline at a hyperdesulfurized level, because of having functions of suppressing the hydrogenation activity of olefins and minimizing the decrease in the octane number even under reaction conditions with a high desulfurization ratio.
    • 一种多孔无机氧化物载体,其包含负载在其上的含氧碳质材料,优选多孔无机氧化物载体,其中所述含氧碳质材料是含氧有机化合物的碳化物,其中所述负载碳量相对于 用于制备催化剂的载体的质量为0.05至0.2,负载氢量相对于负载碳量的原子比为0.4至1.0,并且负载氧量相对于负载的碳原子比 碳量为0.1〜0.6; 和催化裂化汽油的加氢处理催化剂,其包含载体和含有周期表第8族金属的催化剂,负载在载体上的钼(Mo),磷和硫,可用作例如脱硫催化剂, 催化裂化汽油处于高脱硫水平,因为即使在高脱硫比的反应条件下也具有抑制烯烃的氢化活性和最小化辛烷值降低的作用。
    • 6. 发明授权
    • Image-forming method, magnetic toner, and process unit
    • 图像形成方法,磁性调色剂和处理单元
    • US08841054B2
    • 2014-09-23
    • US12254393
    • 2008-10-20
    • Tadashi DojoMichihisa MagomeEriko YanaseTakashi MatsuiTomohisa SanoAkira SakakibaraShuichi Hiroko
    • Tadashi DojoMichihisa MagomeEriko YanaseTakashi MatsuiTomohisa SanoAkira SakakibaraShuichi Hiroko
    • G03G15/08G03G9/083G03G9/08
    • G03G9/083G03G9/0827G03G15/0813
    • An image-forming method is provided which can provide stable image density irrespective of use environments and does not cause image defects such as fogging, tailing, or transfer voids, even when being applied to a developing sleeve with a reduced diameter. In the image-forming method, a latent image bearing member and a toner bearing member bearing a magnetic toner on its surface and having inside a unit for generating a magnetic field are placed with a predetermined interval, and an alternating field is applied between the latent image bearing member and the toner bearing member, and an electrostatic latent image borne by the latent image bearing member is developed with the magnetic toner. The toner bearing member has a specific diameter, and the magnetic toner has a specific circularity and a specific compressibility. The total energy of the toner measured with a powder flowability measuring apparatus satisfies a specific value.
    • 即使施加到直径减小的显影套筒上,也可以不管使用环境如何,都能够提供稳定的图像浓度的图像形成方法,并且不会引起图像缺陷,如起雾,拖尾或转印空隙。 在图像形成方法中,以预定间隔放置潜像承载部件和在其表面上具有磁性调色剂并且具有用于产生磁场的单元内的调色剂承载部件,并且在潜在的 图像承载部件和调色剂承载部件以及由潜像承载部件承载的静电潜像用磁性调色剂显影。 调色剂承载构件具有特定直径,并且磁性调色剂具有特定的圆形度和特定的可压缩性。 用粉末流动性测量装置测量的调色剂的总能量满足特定值。