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    • 74. 发明授权
    • Installation and process for calcining a mineral load containing a carbonate in order to produce a hydraulic binder
    • 用于煅烧含有碳酸盐的矿物载体以便生产水硬性粘合剂的安装和工艺
    • US07549859B2
    • 2009-06-23
    • US11577573
    • 2005-09-22
    • Jacques Dupuis
    • Jacques Dupuis
    • F27B15/02
    • F27B15/10C04B2/106C04B7/434C04B7/44F27B15/14Y02P40/121Y02P40/42
    • The invention relates to an installation comprising a combustion chamber (15) provided with means (53) which are used to introduce the mineral load and are connected to a pre-heater (27), combustion means (55) for maintaining the chamber (15) at a temperature of between 700° C. and 900° C., means (57) for introducing a treatment gas having a controlled carbon dioxide content in order to oppose the dissociation of the carbonate in the chamber (15), and means (61) for removing the calcinated mineral load guided into a cooler (31). The chamber (15) comprises means (51) for forming a fluidised bed. The means (57) for introducing treatment gases are supplied at least partially by a line (91) or deriving part of the combustion flue gases of the chamber (15) emitted by means for discharging (21) said flue gases into the atmosphere. The invention can be used for the production of a cement-type hydraulic binder.
    • 本发明涉及一种包括燃烧室(15)的装置,该燃烧室具有用于引入矿物载荷的装置(53),并连接到预热器(27),燃烧装置(55),用于维持腔室 ),在700℃和900℃之间的温度下,用于引入具有受控二氧化碳含量的处理气体以反对在室(15)中的碳酸盐解离的装置(57) 61),用于去除引导到冷却器(31)中的煅烧矿物质负载。 腔室(15)包括用于形成流化床的装置(51)。 用于引入处理气体的装置(57)至少部分地由通过用于将所述烟道气排放到大气中的装置(15)排出的室(15)的燃烧烟道气的管线(91)或导出部分提供。 本发明可用于生产水泥型水泥粘合剂。
    • 77. 发明申请
    • Casting sand heating apparatus
    • 铸砂加热装置
    • US20060099542A1
    • 2006-05-11
    • US10517091
    • 2004-01-09
    • Xudong Zhu
    • Xudong Zhu
    • F27B15/00
    • B22C5/06B22C5/08F27B15/08F27B15/14F27D21/0014
    • This invention relates to a casting sand heating apparatus. The purpose of this invention is to provide a casting sand heating apparatus which can heat sand up to 300° C. or higher with high energy efficiency, lower capital investment and lower operating costs. This apparatus is comprised of a furnace body, sand inlet, smoke discharge and dust removing port, hearth and sand outlet. The sand inlet is arranged at the top of the furnace body, the combustion mouth is arranged in the lower part of the furnace body. Additionally, the heat exchange apparatus is arranged in the middle part of the furnace body. This invention can be used for the heating and baking of fresh and used casting sand.
    • 铸砂加热装置技术领域本发明涉及一种铸砂加热装置。 本发明的目的是提供一种能够以高能量,低资本投资和较低的运行成本加热至300℃以上的铸砂加热装置。 该设备包括炉体,砂入口,排烟口和除尘口,炉床和出砂口。 砂入口布置在炉体的顶部,燃烧口布置在炉体的下部。 此外,热交换装置设置在炉体的中部。 本发明可用于新鲜和使用的铸砂的加热和烘烤。
    • 80. 发明授权
    • Treatment of solids in fluidized bed burner
    • 流化床燃烧器中固体的处理
    • US5006062A
    • 1991-04-09
    • US96935
    • 1987-09-14
    • Bernard S. LeePaul B. TarmanDharam V. Punwani
    • Bernard S. LeePaul B. TarmanDharam V. Punwani
    • B01J8/18B01J8/24F27B15/08F27B15/14
    • B01J8/24B01J8/1836F27B15/08F27B15/14B01J2208/00504B01J2208/0053B01J2208/00761
    • A process for thermal treatment of solid particles in a fluidized bed wherein the solid particles by thermal treatment form a lighter weight fraction and a heavier weight fraction, relative to the total contents of the bed. The process is characterized by use of a selective heavier particle discharge conduit in the sloping bed support and maintenance of a discrete fluid fueled flame in close proximity to and above the opening to the heavier particle discharge conduit. This forms a higher temperature zone in and surrounding the flame, at least about 100.degree. F. higher than the remainder bed temperature. Circulation of solid particles through the flame and its surrounding higher temperature region is promoted both by directing of fluidization gas jets in the fluidized bed support and by the jetting action of the upwardly flowing heavier particle discharge gas.
    • 一种用于热处理流化床中的固体颗粒的方法,其中通过热处理的固体颗粒相对于床的总含量形成较轻的重量分数和较重的重量分数。 该方法的特征在于在倾斜床中使用选择性较重的颗粒排放导管,支撑和维持离开较重颗粒排放导管的开口附近和之上的离散流体燃料火焰。 这在火焰内部和周围形成较高的温度区域,比其余的床温度高至少约100°F。 通过在流化床载体中引导流化气体喷射和通过向上流动的较重颗粒排放气体的喷射作用促进固体颗粒通过火焰及其周围的较高温度区域的循环。