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Heat Management in Gas Switching Combustion for Power Production with Integrated CO2 Capture

机译:集成了二氧化碳捕集功能的发电用气体开关燃烧中的热量管理

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摘要

Gas Switching Combustion (GSC) is a promising new process concept for energy efficient power production with integrated CO2 capture. In comparison to conventional Chemical Looping Combustion (CLC) carried out in fluidized beds, the GSC concept will be substantially easier to design and scale up, especially under pressurized conditions. One potential drawback of the GSC concept is the gradual temperature variation over the transient process cycle which leads to a drop in electric efficiency of the plant. This article investigates heat management strategies to mitigate this issue both through simulations and experiments. Promising results are reported both through the dilution of air with nitrogen and through the concentrated injection of air.
机译:气体转换燃烧(GSC)是一种有前途的新工艺概念,用于集成了CO2捕集的节能发电。与在流化床中进行的常规化学循环燃烧(CLC)相比,GSC概念将更容易设计和放大,特别是在加压条件下。 GSC概念的一个潜在缺陷是瞬态过程周期中温度的逐渐变化,这会导致设备的电效率下降。本文研究了通过模拟和实验来缓解此问题的热量管理策略。通过用氮气稀释空气和通过集中注入空气都报告了令人鼓舞的结果。

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