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Low-energy-penalty principles of CO2 capture in polygeneration systems

机译:多联产系统中二氧化碳捕集的低能耗原则

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Polygeneration is identified as an effective way to overcome the challenges of energy efficient utilization and CO2 emission reduction. This paper analyzes the energy saving mechanism and carbon reduction laws of decarbonized polygeneration systems, and discusses the compatibility of CO2 capture for different integral schemes. Based on the novel method of chemical exergy balance, two typical methanol-power polygeneration systems with CO2 recovery are analyzed in detail, and integral factors that indicate the level of energy cascade utilization and the compatibility with CO2 capture are proposed. Both polygeneration systems show large performance improvements compared to the single production systems, but the advantages of scheme (b), removing the composition adjustment and capturing CO2 from unrecycled gas after synthesis, are more prominent. This scheme has an excellent compatibility with CO2 recovery, and it shows a fairly optimal performance in the full working field. Further, according to the analysis of the integral factors, a higher CO2 recovery ratio is recommended for scheme (b), while a lower one is recommended when scheme (a) is employed. (C) 2017 Elsevier Ltd. All rights reserved.
机译:多联产被认为是克服能源高效利用和减少二氧化碳排放挑战的有效途径。本文分析了脱碳多联产系统的节能机理和减碳规律,并讨论了不同积分方案捕获二氧化碳的兼容性。基于新的化学能平衡方法,详细分析了两个典型的具有CO2回收率的甲醇动力多联产系统,并提出了指示能量级联利用水平和与CO2捕集相容性的积分因子。与单一生产系统相比,两种多联产系统均表现出较大的性能改进,但方案(b)的优势(消除了成分调整并在合成后从未回收的气体中捕集二氧化碳)更加突出。该方案与CO2回收具有极好的兼容性,并且在整个工作领域中均显示出相当理想的性能。此外,根据积分因子的分析,建议方案(b)的CO2回收率较高,而采用方案(a)的建议较低。 (C)2017 Elsevier Ltd.保留所有权利。

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