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    • 5. 发明申请
    • METHOD AND SYSTEM FOR DYNAMICALLY CHARGING A COKE OVEN
    • 用于动态充电焦炉的方法和系统
    • WO2017117282A1
    • 2017-07-06
    • PCT/US2016/068996
    • 2016-12-28
    • SUNCOKE TECHNOLOGY AND DEVELOPMENT LLC
    • QUANCI, John FrancisCHOI, Chun WaiBALL, Mark Anthony
    • C10B31/00C10B39/12C10B47/46C10B45/00B30B1/00
    • C10B41/005C10B31/08
    • Systems and methods of dynamically charging coal in coke ovens related to the operation and output of coke plants including methods of automatically charging a coke oven using a charging ram in communication with a control system to increase the coke output and coke quality from coke plants. In some embodiments, the control system is capable of moving the charging ram in a horizontal first direction, a horizontal second direction and a vertical third direction while charging coal into the oven. In some embodiments, the coal charging system also includes a scanning system configured to scan an oven floor to generate an oven floor profile and/or oven capacity. The scanning system used in combination with the control system allows for dynamic leveling of the charging ram throughout the charging process. In some embodiments, the charging ram includes stiffener plates and support members to increase the mechanical strength of the charging ram and decrease the sag of the charging ram at a distal end.
    • 与焦炭装置的操作和输出相关的焦炉中的动态装煤的系统和方法,包括使用与控制系统通信的充电柱自动给炼焦炉充电以增加焦炭输出的方法 和来自焦炭厂的焦炭质量。 在一些实施例中,控制系统能够在将煤充入炉内的同时沿水平第一方向,水平第二方向和垂直第三方向移动充电冲杆。 在一些实施例中,煤充电系统还包括扫描系统,该扫描系统被配置为扫描烤箱底板以生成烤箱底板轮廓和/或烤箱容量。 与控制系统结合使用的扫描系统可在整个充电过程中动态调整充电柱。 在一些实施例中,充电柱塞包括加强板和支撑构件,以增加充电柱塞的机械强度并减小充电柱塞在远端处的下垂。
    • 9. 发明申请
    • METHODS AND SYSTEMS FOR IMPROVED QUENCH TOWER DESIGN
    • 改进塔顶设计的方法和系统
    • WO2014144149A1
    • 2014-09-18
    • PCT/US2014/028437
    • 2014-03-14
    • SUNCOKE TECHNOLOGY AND DEVELOPMENT, LLC
    • CHOI, Chun WaiKAPOOR, RajatQUANCI, John Francis
    • C10B39/08C10B39/12
    • C10B39/08C10B39/00C10B39/04C10B41/00
    • The present technology describes methods and systems for an improved quench tower. Some embodiments improve the quench tower's ability to recover particulate matter, steam, and emissions that escape from the base of the quench tower. Some embodiments improve the draft and draft distribution of the quench tower. Some embodiments include one or more sheds to enlarge the physical or effective perimeter of the quench tower to reduce the amount of particulate matter, emissions, and steam loss during the quenching process. Some embodiments include an improved quench baffle formed of a plurality of single-turn or multi-turn chevrons adapted to prevent particulate matter from escaping the quench tower. Some embodiments include an improved quench baffle spray nozzle used to wet the baffles, suppress dust, and/or clean baffles. Some embodiments include a quench nozzle that can fire in discrete stages during the quenching process.
    • 本技术描述了用于改进的淬火塔的方法和系统。 一些实施方案提高了淬火塔回收从骤冷塔底部逸出的颗粒物,蒸汽和排放物的能力。 一些实施例改善了骤冷塔的吃水和吃水分布。 一些实施方案包括一个或多个棚以扩大骤冷塔的物理或有效周长以减少在淬火过程中的颗粒物质的量,排放量和蒸汽损失。 一些实施例包括由多个单匝或多匝人字形成的改进的骤冷挡板,其适于防止颗粒物质逸出骤冷塔。 一些实施例包括用于润湿挡板的改进的骤冷挡板喷嘴,抑制灰尘和/或清洁挡板。 一些实施方案包括淬火喷嘴,该淬火喷嘴可以在淬火过程中以分立的阶段燃烧。