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A Pulverized Coal-Fired Boiler Optimized for Oxyfuel Combustion Technology

机译:优化了含氧燃料燃烧技术的煤粉锅炉

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This paper presents the results of a study on modifying a pulverized coal-fired steam boiler in a 250 MWe power plant for oxygen combustion conditions. The entry point of the study is a boiler that was designed for standard air combustion. It has been proven that simply substituting air by oxygen as an oxidizer is not sufficient for maintaining a satisfactory operating mode, not even with flue gas recycling. Boiler design optimization aggregating modifications to the boiler’s dimensions, heating surfaces and recycled flue gas flow rate, and specification of a flue gas recycling extraction point is therefore necessary in order to achieve suitable conditions for oxygen combustion. Attention is given to reducing boiler leakage, to which external pre-combustion coal drying makes a major contribution. The optimization is carried out with regard to an overall power plant conception for which a decrease in efficiency due to CO2 separation is formulated.
机译:本文介绍了对250 MWe电厂的煤粉蒸汽锅炉进行氧气燃烧条件改造的研究结果。该研究的切入点是设计用于标准空气燃烧的锅炉。已经证明,简单地用氧气代替空气作为氧化剂不足以维持令人满意的操作模式,即使烟道气再循环也不行。锅炉设计优化需要汇总修改锅炉的尺寸,加热表面和再循环烟气流量,因此有必要制定烟气再循环提取点的规格,以实现合适的氧气燃烧条件。注意减少锅炉泄漏,这是外部预燃烧煤干燥的主要原因。针对整个发电厂概念进行了优化,针对该概念,制定了因二氧化碳分离而导致效率降低的问题。

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