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    • 1. 发明授权
    • Fluid heating method
    • 流体加热方式
    • US07384452B2
    • 2008-06-10
    • US11297328
    • 2005-12-09
    • John SirmanLeonard H. SwitzerBart Antonie van HasselM. Mushtaq Ahmed
    • John SirmanLeonard H. SwitzerBart Antonie van HasselM. Mushtaq Ahmed
    • B01D53/22C01B13/02F23L7/00
    • F23L7/007C01B13/0251C01B2210/0046Y02E20/344
    • A method of heating a fluid utilizing a process heater having one or more first combustion zones and one or more second combustion zones. The combustion of a fuel is divided between the first and second combustion zones. The oxygen is provided for combustion within the first combustion zone by one or more oxygen transport membranes that contribute between about 50 and 99 percent of the stoichiometric amount of oxygen required for complete combustion of the fuel passing through the process heater. A supplemental or secondary oxidant is introduced into second combustion zone to complete combustion of the fuel and thereby produce a flue gas stream containing between about 1 and 3 percent oxygen to ensure complete combustion of the fuel. In this manner, the surface area of the oxygen transport membranes may be reduced below the surface area that otherwise would be required if 100 percent of the oxygen were contributed by the oxygen transport membranes.
    • 利用具有一个或多个第一燃烧区和一个或多个第二燃烧区的过程加热器加热流体的方法。 燃料的燃烧在第一和第二燃烧区之间分配。 氧气通过一个或多个氧传输膜在第一燃烧区内燃烧,其贡献了通过过程加热器的燃料的完全燃烧所需的化学计量量的约50-99%之间。 将补充或二次氧化剂引入第二燃烧区以完成燃料的燃烧,从而产生含有约1至3%氧气的烟气流,以确保燃料的完全燃烧。 以这种方式,氧传输膜的表面积可以降低到低于表面积,否则如果100%的氧由氧传输膜贡献的话。