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    • 1. 发明授权
    • Mining method for co-extraction of non-combustible ore and mine methane
    • 共同提取不可燃矿石和矿山甲烷的采矿方法
    • US08740310B2
    • 2014-06-03
    • US12487802
    • 2009-06-19
    • Larry RefsdalRonald O. HughesBryan M. MortimerRichard A. HodgsonJoseph A. Vendetti
    • Larry RefsdalRonald O. HughesBryan M. MortimerRichard A. HodgsonJoseph A. Vendetti
    • E21F7/00
    • E21B43/006E21C41/22
    • A method for co-extracting non-combustible ore (e.g., trona) and methane from an underground formation comprising at least one methane-bearing layer and a non-combustible ore bed having a rock roof, comprising: providing a well having a downhole end positioned above the ore bed roof; mining an ore region from an initial cavity and removing the mined ore, thereby creating a subsequent cavity; advancing the mining step to another ore region from the subsequent cavity; allowing the roof of the initial cavity to cave so as to create a gob; repeating the mining, advancing and caving steps, the caving being effective in generating fluid communication between the gob and the well downhole end and in fracturing the methane-bearing layer so as to release methane into the gob; and recovering a gob gas comprising released methane through the well to the surface.
    • 一种用于从包括至少一个含甲烷层和具有岩顶的不可燃矿床的地下地层中共同提取不可燃矿石(例如天然碱)和甲烷的方法,包括:提供具有井下端 位于矿床屋顶上方; 从初始腔中开采矿石区域并移除开采的矿石,从而形成随后的空腔; 将采矿步骤从后续空腔推进到另一个矿区; 允许初始腔的屋顶塌陷以产生料滴; 重复采矿,推进和塌陷步骤,洞穴有效地产生料滴和井下井之间的流体连通,并且在瓦解含甲层的压裂中将甲烷释放到料滴中; 以及将包含释放的甲烷的气体气体通过所述井回收到所述表面。
    • 3. 发明申请
    • Use of ventilation air methane exhausted during mining of non-combustible ore in a surface appliance
    • 在表面器具中不可燃矿石开采期间使用通风空气甲烷
    • US20120264068A1
    • 2012-10-18
    • US13446952
    • 2012-04-13
    • Ronald HUGHESBryan M. MORTIMERDavid M. HANSEN
    • Ronald HUGHESBryan M. MORTIMERDavid M. HANSEN
    • F23L7/00
    • E21C41/20E21F7/00F23G5/46F23G7/06F23G2206/203Y02E20/12
    • Utilization of mine methane produced by mining a non-combustible ore, such as trona, as an energy source for heat, steam, and/or power generation. Such utilization is beneficial for a surface appliance which is close to surface outlet(s) of mine methane recovery system(s). A method for reducing greenhouse gas emissions generated during mining of a non-combustible ore uses the combustion of co-produced mine methane. The mine methane is recovered in a mine ventilation air exhaust with very low methane content and may be additionally recovered in a drainage gas, such as gob gas, with much higher methane content. The surface appliance may be selected from the group consisting of calciner, dryer, boiler, kiln, furnace, engine, turbine, power generation unit, co-generation unit, and any combinations thereof. Benefits may include reduction in energy purchases, reduction in greenhouse emissions, and/or gain through sale of carbon credits to the carbon market by registering carbon reductions.
    • 利用不可燃矿石(如天然碱)作为热能,蒸汽和/或发电的能源采矿生产的矿山。 这种利用对于靠近矿山甲烷回收系统的表面出口的表面设备是有益的。 减少不可燃矿石开采过程中产生的温室气体排放的方法是使用共同生产的矿山甲烷的燃烧。 矿山瓦斯在具有非常低甲烷含量的矿井通风排气中回收,并且可以在排放气体(例如煤气)中另外回收,具有高得多的甲烷含量。 表面器具可以选自煅烧炉,干燥器,锅炉,窑炉,炉,发动机,涡轮机,发电单元,共发电单元及其任何组合。 利益可能包括减少能源消耗,减少温室气体排放量,和/或通过向碳市场出售碳信用额度来获得碳减排量。
    • 4. 发明申请
    • Mining method for co-extraction of non-combustible ore and mine methane
    • 共同提取不可燃矿石和矿山甲烷的采矿方法
    • US20090315388A1
    • 2009-12-24
    • US12487802
    • 2009-06-19
    • Larry REFSDALRonald O. HUGHESBryan M. MORTIMERRichard A. HODGSONJoseph A. VENDETTI
    • Larry REFSDALRonald O. HUGHESBryan M. MORTIMERRichard A. HODGSONJoseph A. VENDETTI
    • E21C41/16E21B43/00E21B43/28
    • E21B43/006E21C41/22
    • Mining method for co-extraction of non-combustible ore and mine methane A method for co-extracting non-combustible ore (e.g., trona) and methane from an underground formation comprising at least one methane-bearing layer and a non-combustible ore bed having a rock roof, comprising: providing a well having a downhole end positioned above the ore bed roof; mining an ore region from an initial cavity and removing the mined ore, thereby creating a subsequent cavity; advancing the mining step to another ore region from the subsequent cavity; allowing the roof of the initial cavity to cave so as to create a gob; repeating the mining, advancing and caving steps, the caving being effective in generating fluid communication between the gob and the well downhole end and in fracturing the methane-bearing layer so as to release methane into the gob; and recovering a gob gas comprising released methane through the well to the surface.
    • 用于共同提取不可燃矿石和矿山的采矿方法一种从包含至少一个含甲烷层和不可燃矿床的地下地层共同提取不可燃矿石(如天然碱)和甲烷的方法 具有岩石屋顶,其特征在于,包括:提供一个具有位于所述矿床顶部上方的井下端的井; 从初始腔中开采矿石区域并移除开采的矿石,从而形成随后的空腔; 将采矿步骤从后续空腔推进到另一个矿区; 允许初始腔的屋顶塌陷以产生料滴; 重复采矿,推进和塌陷步骤,洞穴有效地产生料滴和井下井之间的流体连通,并且在瓦解含甲层的压裂中将甲烷释放到料滴中; 以及将包含释放的甲烷的气体气体通过所述井回收到所述表面。