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    • 2. 发明申请
    • EFFICIENT FURNACE OPERATION WITH MEDIUM-PURITY OXYGEN
    • 高效氧气与中等氧气的运行
    • US20150308685A1
    • 2015-10-29
    • US14679149
    • 2015-04-06
    • OSEMWENGIE UYI IYOHA
    • OSEMWENGIE UYI IYOHA
    • F23L7/00F27D17/00F23L15/02
    • F23L7/007C03B5/2353F23L15/02F27D17/004F27D2017/007Y02E20/344Y02E20/348Y02P10/122Y02P40/535Y02P40/55
    • Disclosed is a method of operating a furnace containing a charge to heat the charge, comprising wherein gaseous oxidant comprising 60 vol. % to 85 vol. % oxygen is passed through a heated regenerator and into the furnace, so that the oxidant is heated to emerge from an oxidant port at a temperature of 500° C. to 1400° C., and gaseous fuel is fed into said furnace through two or more fuel ports; and the heated oxidant and fuel are combusted in the furnace to produce gaseous hot products of said combustion which heat the charge; and then the flow of oxidant through the regenerator into the furnace is discontinued, and said combustion products are passed into said oxidant port and through and out of said cooled regenerator to heat said regenerator, wherein the temperature of the combustion products that pass out of said regenerator is at least 500° C.; under dimensional and operational conditions which attain functional and economic advantages.
    • 公开了一种操作含有电荷以加热电荷的炉子的方法,其包括其中包含60体积% %至85体积 将氧气通过加热的再生器并进入炉中,使得氧化剂在500℃至1400℃的温度下从氧化剂端口加热出来,并且气体燃料通过两个或 更多的燃油口; 并且加热的氧化剂和燃料在炉中燃烧以产生加热电荷的所述燃烧的气态热产物; 然后将通过再生器的氧化剂流进入炉中,并且将所述燃烧产物通入所述氧化剂端口并通过和从所述冷却的再生器中排出,以加热所述再生器,其中通过所述燃烧产物的温度 再生器至少为500℃。 在尺寸和操作条件下,实现功能和经济优势。
    • 4. 发明授权
    • Efficient furnace operation with medium-purity oxygen
    • 高效炉运行与中等纯度氧气
    • US09541290B2
    • 2017-01-10
    • US14679149
    • 2015-04-06
    • Osemwengie Uyi Iyoha
    • Osemwengie Uyi Iyoha
    • F27D17/00F23L7/00F23L15/02C03B5/235
    • F23L7/007C03B5/2353F23L15/02F27D17/004F27D2017/007Y02E20/344Y02E20/348Y02P10/122Y02P40/535Y02P40/55
    • Disclosed is a method of operating a furnace containing a charge to heat the charge, comprising wherein gaseous oxidant comprising 60 vol. % to 85 vol. % oxygen is passed through a heated regenerator and into the furnace, so that the oxidant is heated to emerge from an oxidant port at a temperature of 500° C. to 1400° C., and gaseous fuel is fed into said furnace through two or more fuel ports; and the heated oxidant and fuel are combusted in the furnace to produce gaseous hot products of said combustion which heat the charge; and then the flow of oxidant through the regenerator into the furnace is discontinued, and said combustion products are passed into said oxidant port and through and out of said cooled regenerator to heat said regenerator, wherein the temperature of the combustion products that pass out of said regenerator is at least 500° C.; under dimensional and operational conditions which attain functional and economic advantages.
    • 公开了一种操作含有电荷以加热电荷的炉子的方法,其包括其中包含60体积% %至85体积 将氧气通过加热的再生器并进入炉中,使得氧化剂在500℃至1400℃的温度下从氧化剂端口加热出来,并且气体燃料通过两个或 更多的燃油口; 并且加热的氧化剂和燃料在炉中燃烧以产生加热电荷的所述燃烧的气态热产物; 然后将通过再生器的氧化剂流进入炉中,并且将所述燃烧产物通入所述氧化剂端口并通过和从所述冷却的再生器中排出,以加热所述再生器,其中通过所述燃烧产物的温度 再生器至少为500℃。 在尺寸和操作条件下,实现功能和经济优势。