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    • 3. 发明授权
    • Gradual oxidation with reciprocating engine
    • 往复式发动机逐渐氧化
    • US08844473B2
    • 2014-09-30
    • US13417074
    • 2012-03-09
    • Mark SchnepelBoris A. Maslov
    • Mark SchnepelBoris A. Maslov
    • F02B43/08
    • F02G3/02
    • Described herein are embodiments of systems and methods for oxidizing gases. In some embodiments, a reaction chamber is configured to receive a fuel gas and maintain the gas at a temperature within the reaction chamber that is above an autoignition temperature of the gas. The reaction chamber may also be configured to maintain a reaction temperature within the reaction chamber below a flameout temperature. In some embodiments, heat and product gases from the oxidation process can be used, for example, to drive a turbine, reciprocating engine, and injected back into the reaction chamber.
    • 这里描述了用于氧化气体的系统和方法的实施例。 在一些实施例中,反应室被配置为接收燃料气体并将气体保持在反应室内高于气体自燃温度的温度。 反应室也可以被配置为将反应室内的反应温度保持在熄火温度以下。 在一些实施例中,可以使用来自氧化过程的热和产物气体,例如驱动涡轮机,往复式发动机,并将其注入反应室。
    • 10. 发明授权
    • Heating a reaction chamber
    • 加热反应室
    • US08621869B2
    • 2014-01-07
    • US12870021
    • 2010-08-27
    • Edan Prabhu
    • Edan Prabhu
    • F02C1/00
    • F02C7/224F02C9/28F05D2270/303
    • An air/fuel mixture is received in an oxidation reaction chamber. The air/fuel mixture has a low concentration of fuel, for example, below a lower explosive limit (LEL). The mixture is received while a temperature of a region in the oxidation reaction chamber is below a temperature sufficient to oxidize the fuel. The temperature of the region is raised to at least the oxidation temperature (the temperature sufficient to oxidize the fuel) primarily using heat energy released from oxidizing the air/fuel mixture in a different region in the reaction chamber.
    • 空气/燃料混合物被接收在氧化反应室中。 空气/燃料混合物具有低浓度的燃料,例如低于爆炸下限(LEL)。 接收混合物,同时氧化反应室中的区域的温度低于足以氧化燃料的温度。 该区域的温度主要使用通过在反应室中的不同区域氧化空气/燃料混合物而释放的热能而升高至至少氧化温度(足以氧化燃料的温度)。