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    • 1. 发明授权
    • Heating and drying apparatus for particulate material
    • 用于颗粒材料的加热和干燥装置
    • US07188436B2
    • 2007-03-13
    • US11125411
    • 2005-05-09
    • Charles L. StockPeder K. LangsetmoGregory J. KimballDavid L. Phillips
    • Charles L. StockPeder K. LangsetmoGregory J. KimballDavid L. Phillips
    • F26B17/12
    • F26B17/124
    • A continuous gravity flow apparatus for heating and/or drying of particulate material is vertically disposed and is provided with an inlet at the top and an outlet at the bottom. The apparatus includes a flow passage for the particulate material which is defined between an outer housing and an inner housing. Each of the outer and inner housing defines perforated wall sections allowing for the flow of hot gas through the wall of one housing, into contact with the particulate material, and then out through the wall of the other housing. Manifolds are associated with the outer and inner housings to provide for uniform flow of the gas through the material. The perforated wall sections are positioned and designed to enhance particle-to-particle movement of the material to thereby avoid particle sticking and bridging problems.
    • 垂直设置用于加热和/或干燥颗粒材料的连续重力流动装置,并且在顶部设有入口和在底部的出口。 该装置包括用于颗粒材料的流动通道,其限定在外壳体和内壳体之间。 外壳体和内壳体中的每一个限定穿孔壁部分,允许热气体流过一个壳体的壁,与颗粒材料接触,然后穿过另一个壳体的壁。 歧管与外壳体和内壳体相关联,以提供均匀的气体流过材料。 穿孔壁部分被定位和设计以增强材料的颗粒到粒子的移动,从而避免颗粒粘附和桥接问题。
    • 3. 发明授权
    • Pulse combustion drying system
    • 脉冲燃烧干燥系统
    • US5252061A
    • 1993-10-12
    • US882048
    • 1992-05-13
    • Richard W. OzerHanford Lockwood, Jr.Gregory J. KimballIlya Pikus
    • Richard W. OzerHanford Lockwood, Jr.Gregory J. KimballIlya Pikus
    • F23C15/00F26B23/02F27D99/00F27D7/00
    • F23C15/00F26B23/026F27D99/0033F27D2099/0043
    • A system for material drying comprising a pulse combustor and an associated combustion chamber whereby a pulsating flow of hot gases are generated. A tail pipe is connected to the outlet of the combustion chamber for receiving the pulsating flow of hot gases and a material introduction chamber is connected at the outlet of the tail pipe. A drying chamber is connected at the outlet of the material introduction chamber. The hot pulse combustion exhaust gases are cooled to control the temperature of the gases issuing from the outlet of the tail pipe and entering the material introduction chamber. This control is accomplished with a cool air stream issuing into the pulse combustion mixing chamber along with the hot gases from the pulse combustion tail pipe for mixing with and cooling of the hot gases. A separate diluent air stream may be employed for contact with material issuing from the introduction chamber and passing into the drying chamber. This separate diluent air stream will urge material already present in the drying chamber away from the entry location of new material into the drying chamber. The tail pipe may be provided with an inlet end of restricted dimension to act as a venturi with respect to the pulsating stream of hot gases entering the tail pipe from the combustion chamber thereby increasing the sound levels measured at the pulse combustion discharge.
    • 一种用于材料干燥的系统,包括脉冲燃烧器和相关联的燃烧室,由此产生脉动的热气流。 尾管连接到燃烧室的出口,用于接收热气的脉动流,并且在尾管的出口连接材料引入室。 干燥室连接在材料引入室的出口处。 热脉冲燃烧废气被冷却以控制从尾管的出口排出并进入材料引入室的气体的温度。 该控制是通过与来自脉冲燃烧尾管的热气体一起发射到脉冲燃烧混合室中的冷空气流来与热气体混合和冷却来实现的。 可以使用单独的稀释剂空气流与从引入室发出的物质接触并进入干燥室。 这种分开的稀释空气流将促使已经存在于干燥室中的材料远离新材料的进入位置进入干燥室。 尾管可以设置有限制尺寸的入口端,以相对于从燃烧室进入尾管的热气体的脉动流充当文丘里管,从而增加在脉冲燃烧放电时测量的声级。
    • 4. 发明授权
    • System and method for the treatment of oil sands
    • 油砂处理系统和方法
    • US09375725B2
    • 2016-06-28
    • US13310226
    • 2011-12-02
    • Gregory J. KimballJoseph Merwyn BonemDavid Lonnie Phillips
    • Gregory J. KimballJoseph Merwyn BonemDavid Lonnie Phillips
    • C10G1/04B03B9/02B01D21/26
    • B03B9/02B01D21/262B01D21/267C10G1/045C10G2300/4081C10G2300/44C10G2300/805
    • Extraction of bitumen from oil sands may generate oil sands tailings mixed with a liquid. Systems may be used to separate the liquid from the tailings so the tailings can be disposed or otherwise reclaimed. In some examples, a system includes a primary separation vessel configured to receive oil sands tailings mixed with water and to separate the oil sands tailings into a plurality of layers, where at least one of the plurality of layers includes a mature fines tailing material. The system may include an apparatus configured to receive the mature fines tailing material from the primary separation vessel and to mechanically separate a portion of the water in the mature fine tailings material. The system may also include an apparatus configured to receive a concentrated oil sands tailings material and to thermally evaporate water from the concentrated oil sands tailings materials, thereby producing trafficable dried oil sands tailings.
    • 从油砂中提取沥青可能会产生与液体混合的油砂尾矿。 系统可用于将液体与尾矿分离,以便尾矿可以被排放或以其他方式回收。 在一些实例中,系统包括主分离容器,其构造成接收与水混合的油砂尾矿并将油砂尾矿分离成多个层,其中多个层中的至少一个层包括成熟的细粒拖尾材料。 该系统可以包括被配置为从初级分离容器接收成熟的细粉拖尾材料并且机械地分离成熟的细尾矿材料中的一部分水的装置。 该系统还可以包括被配置为接收浓缩油砂尾矿材料并且从浓缩的油砂尾矿材料热蒸发水的装置,由此产生可运输的干油砂尾矿。
    • 7. 发明申请
    • GRAVITY FLOW PROCESSOR FOR PARTICULATE MATERIALS
    • 用于颗粒材料的重力流动处理器
    • US20090059714A1
    • 2009-03-05
    • US11850529
    • 2007-09-05
    • Ilya PikusPeter M. KoenigGregory J. KimballRonald Halland
    • Ilya PikusPeter M. KoenigGregory J. KimballRonald Halland
    • B01F13/02B01F7/18F26B3/16
    • B01F13/0216B01F7/00633B01F7/18F26B17/1483
    • The present invention relates to purge vessel apparatuses and methods for processing particulate material composed of powder particles. Some such purge vessel apparatuses include a housing having first and second opposite ends and an inner surface defining a material path from the first end to the second end. Some such purge vessel apparatuses also include a gas exposure mechanism that is adapted to expose particulate material on the material path to a processing gas. Some such purge vessel apparatuses further include an agitating mechanism adapted to disrupt and/or inhibit formation of gas channels and/or to disrupt and/or inhibit formation of material flow channels by agitating particulate material on the material path, thereby exposing substantially all of the powder particles to the processing gas, while substantially maintaining mass flow. Several illustrative purge vessel apparatuses and method are disclosed for processing particulate material composed of powder particles.
    • 本发明涉及清洗容器装置和用于处理由粉末颗粒组成的颗粒材料的方法。 一些这样的净化容器设备包括具有第一和第二相对端的壳体和限定从第一端到第二端的材料路径的内表面。 一些这样的清洗容器设备还包括适于将材料路径上的颗粒材料暴露于处理气体的气体曝露机构。 一些这样的吹扫容器设备还包括搅拌机构,其适于通过搅拌材料路径上的颗粒材料来破坏和/或抑制气体通道的形成和/或破坏和/或抑制材料流动通道的形成,由此基本上暴露出所有的 粉末颗粒到处理气体,同时基本上保持质量流量。 公开了用于处理由粉末颗粒组成的颗粒材料的几个说明性清洗容器装置和方法。
    • 9. 发明申请
    • SYSTEM AND METHOD FOR THE TREATMENT OF OIL SANDS
    • 用于处理油砂的系统和方法
    • US20120138511A1
    • 2012-06-07
    • US13310226
    • 2011-12-02
    • Gregory J. KimballJoseph Merwyn BonemDavid Lonnie Phillips
    • Gregory J. KimballJoseph Merwyn BonemDavid Lonnie Phillips
    • C10G1/04B03B9/02
    • B03B9/02B01D21/262B01D21/267C10G1/045C10G2300/4081C10G2300/44C10G2300/805
    • Extraction of bitumen from oil sands may generate oil sands tailings mixed with a liquid. Systems may be used to separate the liquid from the tailings so the tailings can be disposed or otherwise reclaimed. In some examples, a system includes a primary separation vessel configured to receive oil sands tailings mixed with water and to separate the oil sands tailings into a plurality of layers, where at least one of the plurality of layers includes a mature fines tailing material. The system may include an apparatus configured to receive the mature fines tailing material from the primary separation vessel and to mechanically separate a portion of the water in the mature fine tailings material. The system may also include an apparatus configured to receive a concentrated oil sands tailings material and to thermally evaporate water from the concentrated oil sands tailings materials, thereby producing trafficable dried oil sands tailings.
    • 从油砂中提取沥青可能会产生与液体混合的油砂尾矿。 系统可用于将液体与尾矿分离,以便尾矿可以被排放或以其他方式回收。 在一些实例中,系统包括主分离容器,其构造成接收与水混合的油砂尾矿并将油砂尾矿分离成多个层,其中多个层中的至少一个层包括成熟的细粒拖尾材料。 该系统可以包括被配置为从初级分离容器接收成熟的细粉拖尾材料并且机械地分离成熟的细尾矿材料中的一部分水的装置。 该系统还可以包括被配置为接收浓缩油砂尾矿材料并且从浓缩的油砂尾矿材料热蒸发水的装置,由此产生可运输的干油砂尾矿。