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    • 94. 发明授权
    • Methods for constructing underground borehole configurations and related solution mining methods
    • 地下钻孔配置方法及相关解决方案挖掘方法
    • US08057765B2
    • 2011-11-15
    • US12566446
    • 2009-09-24
    • Roger L. DayJames A. Herickhoff
    • Roger L. DayJames A. Herickhoff
    • C01D7/00
    • E21B7/00C01D7/00C01D7/126E21B17/00E21B33/12E21B33/13E21B43/281E21B43/30
    • Disclosed are methods for solution mining of evaporite minerals, such as trona, comprising drilling an access well and at least two lateral boreholes; injecting a fluid; circulating the fluid through the lateral boreholes with a controlled fluid flow; and collecting a pregnant solution. Also disclosed are methods of solution mining that include injecting an aqueous solution into an underground trona cavity at a temperature sufficient to maintain at least a portion of the solution in the cavity in the Wegscheiderite solid phase region; removing aqueous solution from the cavity; and recovering alkaline values from the removed aqueous solution. Also disclosed are methods of solution mining that include injecting an aqueous solution into an underground trona cavity; removing aqueous solution from the cavity, wherein the temperature of the removed aqueous solution is at about the TWA point temperature; and recovering alkaline values from the removed aqueous solution.
    • 公开了用于溶解开采蒸发岩矿物的方法,例如天然碱,包括钻井进入井和至少两个横向钻孔; 注射液体 以受控的流体流动流体穿过横向钻孔; 并收集怀孕的解决方案。 还公开了溶液开采的方法,其包括将水溶液注入到地下天然气腔中,该温度足以将溶液的至少一部分保持在Wegscheiderite固相区域的空腔中; 从空腔中除去水溶液; 并从去除的水溶液中回收碱值。 还公开了溶液开采的方法,包括将水溶液注入地下空心腔中; 从空腔中除去水溶液,其中去除的水溶液的温度在约TWA点温度; 并从去除的水溶液中回收碱值。
    • 99. 发明授权
    • Continuous method for manufacture of uniform size flake or powder
    • 制造均匀尺寸薄片或粉末的连续方法
    • US06884269B2
    • 2005-04-26
    • US10171148
    • 2002-06-13
    • Thomas M. LucasJody Doyon
    • Thomas M. LucasJody Doyon
    • B01J2/02B01D9/00C01D7/00C01D7/38C01F11/18C01F11/44C22F1/00H01M8/02H01M8/14
    • C01D7/38H01M8/0295H01M8/0693H01M8/145H01M2008/147H01M2300/0051Y02E60/526Y02P70/56
    • A method and apparatus for continuous fabrication of homogeneous thin flake or powder electrolyte material from inorganic salt, metallic or similar materials or from mixtures of such materials for use in Carbonate Fuel Cell (“CFC”) power plants. Electrolyte precursor powders are fed to a continuous blender type mixer using precision metering equipment that controls material feed rates. The homogenous mixture of blended powders is then fed into a high temperature melting tank in which the mixture is melted, forming the desired molten eutectic composition. The liquid eutectic melt drips from the melting tank through ceramic or metallic nozzles and splat-cools on a rotating, water-cooled metal cylinder to produce uniform size, thin flake material. The thin flake electrolyte material can be used as-is, or it may be further processed using continuous grinding and powder fabrication equipment.
    • 用于从碳酸盐燃料电池(“CFC”)发电厂中使用的无机盐,金属或类似材料或这些材料的混合物连续制造均质薄片或粉末电解质材料的方法和装置。 使用精密计量设备将电解质前体粉末进料到连续搅拌机型混合器中,该设备控制材料进料速率。 然后将混合粉末的均匀混合物进料到混合物熔化的高温熔融槽中,形成所需的熔融共晶组合物。 液体共晶熔体从熔化罐通过陶瓷或金属喷嘴和旋转的水冷金属圆筒上的冷却器滴落,以产生均匀的尺寸,薄的薄片材料。 薄片电解质材料可以原样使用,或者可以使用连续研磨和粉末制造设备进一步加工。