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    • 4. 发明授权
    • Method for producing cement with separation of CO2
    • 生产水泥分离CO2的方法
    • US09079796B2
    • 2015-07-14
    • US14080210
    • 2013-11-14
    • KHD Humboldt Wedag
    • Robert Mathai
    • F27B15/00C04B7/43C04B7/36F27B7/20F27D17/00
    • C04B7/367C04B7/432F27B7/2016F27D17/004F27D17/008Y02P40/18
    • A plant for producing cement clinker from calcium carbonate-containing raw meal. A preheating stage preheats the raw meal, which preheating stage is heated by exhaust gases from a following sintering stage. A stage is provided for deacidification and sintering of the raw meal. A cooling stage for the sintered meal is of at least two-stage design and has a gas separation stage for separating exhaust gases from the deacidification and sintering stage which is routed in a first gas circuit from the cement clinker cooling gas. A gas/gas heat exchanger is arranged downstream of the preheating stage in the gas flow direction, through which heat exchanger heat from the combined exhaust gases which leave the preheating stage is transferred into a gas, extracted from the gas for cooling the cement clinker, routed in a second gas circuit, for drying the raw meal in a preceding grinding stage.
    • 一种含碳酸钙的生料水泥熟料的生产设备。 预热阶段预热生料,预热阶段由后续烧结阶段的废气加热。 提供了一个阶段,用于生食的脱酸和烧结。 用于烧结粉末的冷却阶段至少是两级设计,并且具有用于将排气与脱酸和烧结阶段分离的气体分离阶段,其在第一气体回路中从水泥熟料冷却气体排出。 气体/气体热交换器在气流方向上布置在预热段的下游,通过该热交换器从离开预热段的组合废气中加热的热交换器被转移到气体中,从气体中提取以冷却水泥熟料, 在第二气体回路中路由,用于在前一研磨阶段干燥生料。
    • 5. 发明授权
    • System and method for the calcination of minerals
    • 矿物煅烧的系统和方法
    • US08807993B2
    • 2014-08-19
    • US12295468
    • 2007-04-02
    • Mark Geoffrey SceatsPatricia Richardson
    • Mark Geoffrey SceatsConnor James Horley
    • F27B15/00
    • C22B1/10B01J6/004B01J8/082B01J8/087B01J2208/00292B01J2208/0053C01B13/18C01F5/08C01F11/06C04B2/12F27B1/00F27B17/00F27D13/00F27D17/004Y02P40/42
    • A system and method for the calcination of minerals. The system comprises a vertically disposed reactor segment configured to impart horizontal forces on particles passing through the reactor segment in a vertical direction; an injector unit for receiving granular feedstock, the injector unit being disposed at a top portion of the reactor segment, whereby granules of the feedstock move through the reactor segment in a granular flow under at least one of a group consisting of a force of steam, gravitational force and a centrifugal force; a reactor heat exchange unit thermally coupled to a wall of the reactor segment for providing heat to the flowing granules inside the reactor segment through heat transfer through the wall of the reactor segment; one or more inlets formed in the reactor segment for introducing a superheated gas into the reactor segment to create conditions of a gas-solid multiphase system; and one or more exhaust openings formed in the retort segment such that gas products are at least partially flushed from the reactor segment under the flow of the superheated gas from the inlets to the exhaust openings.
    • 矿物煅烧的系统和方法。 该系统包括垂直设置的反应器段,构造成在水平方向上通过反应器段的颗粒上施加水平力; 用于接收颗粒原料的注射器单元,所述注射器单元设置在所述反应器段的顶部,由此所述原料的颗粒在颗粒流中在至少一个蒸汽力作用下移动通过反应器段, 重力和离心力; 热反应器热交换单元,其热耦合到所述反应器段的壁上,用于通过经由所述反应器段的壁的热传递来向所述反应器段内的流动颗粒提供热量; 在反应器段中形成一个或多个入口,用于将过热气体引入反应器段以产生气固多相系统的条件; 以及形成在蒸馏段中的一个或多个排气口,使得在过热气体从入口到排气口的流动下,气体产物至少部分地从反应器段冲洗。