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Simulation of a Lignite-Based Polygeneration System Coproducing Electricity and Tar with Carbon Capture

机译:碳捕集同时发电和焦油的褐煤基多联产系统的模拟

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Lignite-based polygeneration systems for coproducing tar and electricity with and without carbon capture and storage (CCS) were proposed and simulated. Predried lignite was pyrolyzed into coal gas, tar, and char. Coal gas was fired in a gas turbine after the cleanup process, while char was combusted in circulating fluidized-bed (CFB) boilers. The polygeneration plant without CCS turned out to be more efficient than the conventional CFB power plant, suggesting that the former is a promising and efficient option to utilize lignite resources. Moreover, the performance and emissions of polygeneration plants with and without CCS were compared. It was shown that the more CO2 is captured, the larger energy penalty it will cost. Therefore, a trade-off should be made between low emissions and high efficiency.
机译:提出并模拟了基于褐煤的多联产系统,该系统可同时生产焦油和电,并同时具有和不具有碳捕集与封存(CCS)。将预干燥的褐煤热解为煤气,焦油和焦炭。清理过程结束后,在燃气轮机中燃烧煤气,而焦炭则在循环流化床(CFB)锅炉中燃烧。事实证明,没有CCS的多联产电厂比常规CFB电厂效率更高,这表明前者是利用褐煤资源的有前途和高效的选择。此外,比较了有和没有CCS的多联产电厂的性能和排放。结果表明,捕获的二氧化碳越多,所需的能源损失就越大。因此,应该在低排放和高效率之间进行权衡。

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