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    • 2. 发明授权
    • Hydroprocessing catalyst and use thereof
    • 加氢处理催化剂及其用途
    • US5888380A
    • 1999-03-30
    • US530037
    • 1995-09-19
    • Katsuhisa FujitaTetsuro KamoMasafumi ShimowakeYoshimasa Inoue
    • Katsuhisa FujitaTetsuro KamoMasafumi ShimowakeYoshimasa Inoue
    • B01J21/04B01J23/85B01J23/88B01J35/10C10G45/08C10G17/00
    • B01J23/85B01J21/04B01J35/10C10G45/08B01J35/1042B01J35/1061B01J35/108
    • A catalyst composition suitable for effecting simultaneous hydrodesulphurisation and hydrodemetallisation of sulphur and metals containing feedstocks which shows a high hydrodesulphurisation activity, a high hydrodemetallisation activity, and a long life is disclosed.The catalyst includes: a) a support, at least 90 wt. % of which includes alumina, which alumina has an R value of from 0.08 to 0.30, the R value being defined as the ratio between the integrated intensity of the X-ray diffraction peak at 2 .theta.=32.degree. and the integrated intensity of the X-ray diffraction peak at 2 .theta.=46.degree., b) from 2 to 8 wt. % of a Group VIB metal component, calculated as metal, c) from 0.5 to 2.5 wt. % of a Group VIII metal component, calculated as metal; and d) a pore size distribution as determined by nitrogen adsorption satisfying the following requirements: (i) a pore volume of from 0.5 to 1.0 ml/g, (ii) an average pore diameter of from 18 to 30 nm, and (iii) of the pore volume of pores with a diameter below 60 nm at least 40% is present in pores within a range of the average pore diameter .+-.5 nm.A process for use of this catalyst and for its preparation is also disclosed.
    • 公开了一种催化剂组合物,其适用于同时进行加氢脱硫和加氢脱金属化的硫和金属含有原料,其表现出高加氢脱硫活性,高加氢脱金属活性和长寿命。 该催化剂包括:a)载体,至少90wt。 其中的%包括氧化铝,氧化铝的R值为0.08至0.30,R值定义为2θ= 32°时的X射线衍射峰的积分强度与X的积分强度之比 在2θ= 46°时的射线衍射峰,b)2至8wt。 VIB族金属组分的%,以金属计算,c)0.5-2.5wt。 第VIII族金属组分的%,以金属计算; 和(d)通过氮吸附测定的孔径分布满足以下要求:(i)孔体积为0.5至1.0ml / g,(ii)平均孔径为18至30nm,和(iii) 孔直径在60nm以下的孔体积至少为40%,孔平均孔径为+/- 5nm。 还公开了使用该催化剂及其制备方法。
    • 3. 发明申请
    • PRINTING DEVICE AND PAPER CONVEYANCE METHOD THEREOF
    • 打印设备和纸张传送方法
    • US20120048077A1
    • 2012-03-01
    • US13053465
    • 2011-03-22
    • Yoshimasa Inoue
    • Yoshimasa Inoue
    • B26D7/27B26D7/01B65H20/00
    • B26D5/32B26D5/34Y10T83/04Y10T83/6569
    • According to one embodiment, a printing device includes a conveyance mechanism configured to convey a printing medium along a conveying path, and a detection device provided on the conveying path and configured to detect a position of the printing medium therealong. The printing device further includes a control device configured to select one of first and second conveyance modes in response to a predetermined condition, the control device being further configured to control the conveyance mechanism so as to convey the printing medium along the conveying path based on the selected conveyance mode. In the second conveyance mode, the printing medium is conveyed along the conveying path while being detected by the detection device, at a conveyance speed slower than that of the first conveyance mode.
    • 根据一个实施例,一种打印装置包括:运送机构,其构造成沿着传送路径传送打印介质;以及检测装置,其设置在所述传送路径上,并被配置为检测所述打印介质的位置。 打印装置还包括控制装置,其被配置为响应于预定条件选择第一和第二传送模式之一,所述控制装置还被配置为控制传送机构,以便基于传送路径沿着传送路径传送打印介质 选择传送模式。 在第二传送模式中,打印介质沿检测装置检测到的传送路径以比第一传送模式慢的传送速度传送。
    • 6. 发明授权
    • Paper sheet sensor adjusting method
    • 纸张传感器调节方式
    • US08179410B2
    • 2012-05-15
    • US12714775
    • 2010-03-01
    • Yoshimasa Inoue
    • Yoshimasa Inoue
    • G06K7/00B65H7/14B41J11/42
    • B65H7/14B65H2553/412B65H2557/61
    • In a state where a sheet exists, an current I is gradually increased. When an voltage V reaches a light receiving level Vx, the current I at the time is stored as I1. The voltage V immediately before the voltage V reaches the light receiving level Vx is stored as V1. In a state where no sheet exists, the current I is gradually decreased from the above I1. When the voltage V reaches a non-light receiving level Vy, the current I at the time is stored as I2. The voltage V immediately before the voltage V reaches the non-light receiving level Vy is stored as V2. Then, the current I at the time of normal operation is set within a range between I1 and I2. A reference voltage Vs is set within a range between V1 and V2.
    • 在片材存在的状态下,电流I逐渐增加。 当电压V达到光接收电平Vx时,此时的电流I被存储为I1。 紧接在电压V达到光接收电平Vx之前的电压V被存储为V1。 在没有片材的状态下,电流I从上述I1逐渐减小。 当电压V达到非光接收电平Vy时,此时的电流I被存储为I2。 紧接在电压V之前的电压V达到非光接收电平Vy被存储为V2。 然后,将正常工作时的电流I设定在I1和I2之间的范围内。 参考电压Vs设定在V1和V2之间的范围内。
    • 10. 发明申请
    • PAPER SHEET SENSOR ADJUSTING METHOD
    • 纸张传感器调整方法
    • US20100238253A1
    • 2010-09-23
    • US12714775
    • 2010-03-01
    • Yoshimasa Inoue
    • Yoshimasa Inoue
    • B41J2/315G01J1/32
    • B65H7/14B65H2553/412B65H2557/61
    • In a state where a sheet exists, an current I is gradually increased. When an voltage V reaches a light receiving level Vx, the current I at the time is stored as I1. The voltage V immediately before the voltage V reaches the light receiving level Vx is stored as V1. In a state where no sheet exists, the current I is gradually decreased from the above I1. When the voltage V reaches a non-light receiving level Vy, the current I at the time is stored as I2. The voltage V immediately before the voltage V reaches the non-light receiving level Vy is stored as V2. Then, the current I at the time of normal operation is set within a range between I1 and I2. A reference voltage Vs is set within a range between V1 and V2.
    • 在片材存在的状态下,电流I逐渐增加。 当电压V达到光接收电平Vx时,此时的电流I被存储为I1。 紧接在电压V达到光接收电平Vx之前的电压V被存储为V1。 在没有片材的状态下,电流I从上述I1逐渐减小。 当电压V达到非光接收电平Vy时,此时的电流I被存储为I2。 紧接在电压V之前的电压V达到非光接收电平Vy被存储为V2。 然后,将正常工作时的电流I设定在I1和I2之间的范围内。 参考电压Vs设定在V1和V2之间的范围内。