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    • 2. 发明申请
    • METHODS AND SYSTEMS FOR ENHANCING SOLID FUEL PROPERTIES
    • 提高固体燃料性能的方法和系统
    • US20070295590A1
    • 2007-12-27
    • US11695554
    • 2007-04-02
    • Jerry WeinbergNeil GintherJed AtenRu WangJ. Drozd
    • Jerry WeinbergNeil GintherJed AtenRu WangJ. Drozd
    • C10B57/02
    • F23K1/00C10L5/361C10L5/363C10L9/00C10L9/08F23K2900/01001
    • In embodiments of the present invention improved capabilities are described for a method of cleaning a solid fuel that may provide a starting solid fuel sample data relating to one or more characteristics of a solid fuel to be treated by a solid fuel treatment facility; may provide a desired solid fuel characteristic; may compare the starting solid fuel sample data relating to one or more characteristics to the desired solid fuel characteristic to determine a solid fuel composition delta; may determine an operational treatment parameter for the operation of the solid fuel treatment facility to clean the solid fuel based at least in part on the solid fuel composition delta; and may monitor contaminants emitted from the solid fuel during treatment of the solid fuel and regulating the operational treatment parameter with respect thereto to create a cleaned solid fuel.
    • 在本发明的实施例中,描述了用于清洁固体燃料的方法的改进的能力,所述固体燃料可以提供与由固体燃料处理设备处理的固体燃料的一个或多个特性相关的起始固体燃料样品数据; 可以提供期望的固体燃料特性; 可以将与一个或多个特征相关的起始固体燃料样品数据与期望的固体燃料特性进行比较,以确定固体燃料组成的三角洲; 可以至少部分地基于固体燃料组合物三角洲来确定固体燃料处理设施的操作的操作处理参数以清洁固体燃料; 并且可以在处理固体燃料期间监测从固体燃料排放的污染物并调节与其相关的操作处理参数以产生清洁的固体燃料。
    • 8. 发明申请
    • METHOD FOR REDUCING AIR FLOW WHEN OPERATING A COAL BURNER
    • 在运行燃煤机时减少空气流量的方法
    • US20130025514A1
    • 2013-01-31
    • US13632684
    • 2012-10-01
    • Rafic MinkaraN. Stan Harding
    • Rafic MinkaraN. Stan Harding
    • F23K3/02F23L9/00F23D1/00
    • F23K1/00F23K2900/01001
    • An initial coal is cleaned to reduce ash content by ≧20% and yield refined coal that optimizes combustion air flow through a coal burner. This permits conveyance of pulverized refined coal in suspended condition through feeder pipes of the coal burner using reduced air flow compared to the quantity of air required to convey pulverized initial coal in suspended condition through the feeder pipes. This reduces oxygen in the primary combustion zone, lowering conversion of fuel nitrogen into NOx and instead converting it into N2 using the refined coal product. Reduced primary combustion air also reduces core flame temperature, reducing thermal NOx formation using the refined coal product. Increasing secondary and/or tertiary combustion air compensates for reduced primary combustion air and result in overall decrease in NOx formation (e.g., thermal NOx formation is reduced when combustion completed in cooler secondary and/or tertiary combustion zones).
    • 清洁初始煤以将灰分含量降低≥20%,并产生优化通过煤燃烧器的燃烧空气流动的精炼煤。 这允许通过煤燃烧器的进料管将悬浮状态的粉碎的精炼煤与通过进料管输送悬浮状态下的粉煤初始煤所需的空气量相比减少了空气流量。 这减少了主燃烧区中的氧气,降低了燃料氮转化为NOx的转化率,并将其转化成了使用精炼煤产品的N2。 减少的初级燃烧空气还降低核心火焰温度,减少使用精制煤产品的热NOx形成。 增加的二次和/或三次燃烧空气补偿减少的初级燃烧空气并导致NOx形成的总体减少(例如,当在更冷的次级和/或三级燃烧区中燃烧完成时,减少热NOx形成)。