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    • 1. 发明申请
    • Multiple stage separator vessel
    • 多级分离器
    • US20070202027A1
    • 2007-08-30
    • US11315851
    • 2005-12-22
    • Patrick WalkerDaniel MyersJeffrey SextonJohn Hill
    • Patrick WalkerDaniel MyersJeffrey SextonJohn Hill
    • B01D53/00
    • C10G11/18B01J8/0055B04C3/04
    • A novel multiple stage separator (MSS) vessel is disclosed wherein the vessel includes at least first and second stages or decks of separation cyclones, the stages arranged for operation in series. Each stage or deck includes an upper and lower tube sheet on which a plurality of cyclones are installed, solid particles in the gas stream being separated from the stream and dispensed between the tube sheets as the stream passes through each stage. The vessel has an inlet to receive a gas stream containing the particulates, and the flow travels typically downwardly, first passing through the first stage, then passing through at least a second stage. When implemented downstream of a fluid catalytic cracking (FCC) unit, the MSS has been found to remove a surprisingly increased amount of particulates over a conventional third stage separator (TSS), which contains a single stage separator.
    • 公开了一种新型的多级分离器(MSS)容器,其中所述容器至少包括第一级和第二级或分离式旋风分离器,所述级布置成串联操作。 每个阶段或甲板包括一个上部和下部管板,多个旋风分离器安装在该上部和下部管板上,气流中的固体颗粒与气流分离,并且随着流经过每个阶段而分配在管板之间。 容器具有容纳含有微粒的气流的入口,并且流动通常向下行进,首先通过第一阶段,然后通过至少第二阶段。 当在流化催化裂化(FCC)装置的下游实施时,发现MSS在含有单级分离器的常规第三级分离器(TSS)中除去惊人地增加的颗粒数量。
    • 7. 发明申请
    • System and method for setup of toner concentration target for a toner concentration sensor
    • 用于设置调色剂浓度传感器的调色剂浓度目标的系统和方法
    • US20060153581A1
    • 2006-07-13
    • US11032935
    • 2005-01-11
    • Song-Feng MoWendy AptonJennifer WagnerStephen RandallPatricio MedinaPatrick WalkerRichard Aman
    • Song-Feng MoWendy AptonJennifer WagnerStephen RandallPatricio MedinaPatrick WalkerRichard Aman
    • G03G15/00
    • G03G15/5041
    • A method by which the target of a toner concentration (TC) sensor can be set up based on the equivalent developability concept without using an expensive patch generator. First, use a black toner area coverage (BTAC) sensor to measure the relative reflectance (RR) of a 100% area coverage developed patch (ROS generated) at a series of development levels (Vem or Vdev) to generate a pseudo development curve and estimate VdO in real-time (VdO is the Vdev level that starts to develop toner onto the photoreceptor belt.) Then, add a nominal delta Vdev to VdO to get the development level (Vdev) needed to generate 100% area coverage gray patch. Finally, using a BTAC sensor to measure the RR level of a 100% area coverage (AC) gray patch, move the target of the TC sensor, and converge the sensor's reading to the sensor's target continuously until the RR level of the gray patch hits the RR target (predefined) within the tolerance range. Thus, the target of the TC sensor is set for the xerographic system automatically.
    • 可以在不使用昂贵的贴片发生器的情况下,基于等效显影性概念设置调色剂浓度(TC)传感器的目标的方法。 首先,使用黑色调色剂区域覆盖(BTAC)传感器来测量在一系列开发水平(V SUB)或V(V)下的100%区域覆盖开发贴片(ROS生成)的相对反射率(RR) )以生成伪显影曲线并且实时地估计V OUT(V OUT)是V >水平,开始在感光带上显影调色剂。)然后,向V DO 添加额定的ΔV以获得显影水平(V < / SUB>)需要生成100%的区域覆盖灰度补丁。 最后,使用BTAC传感器测量100%区域覆盖(AC)灰色块的RR电平,移动TC传感器的目标,并将传感器的读数连续收敛到传感器的目标位置,直到灰色片段的RR电平达到 RR目标(预定义)在公差范围内。 因此,TC传感器的目标将自动设置为静电复印系统。