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Energy-exergy analysis and energy efficiency improvement of coal-fired industrial boilers based on thermal test data

机译:基于热敏测试数据的燃煤工业锅炉能量 - 电力分析及能效改进

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摘要

Energy conservation and emission reduction in coal-fired boilers are significant to mitigate climate change and alleviate environmental pollution. In this study, the potential for efficiency promotion is assessed by understanding the factors affecting boiler performance. The results are based on thermal tests of 141 coal-fired industrial boilers in Liaoning province, China. Additionally, an exergy analysis model suitable for coal-fired industrial boilers is proposed under the framework of the first and second laws of thermodynamics to improve the operation of boilers. The energy and exergy efficiencies as well as CO2 emissions have been discussed as well. The results indicate that the heat loss of flue gas and unburnt carbon represent the main heat losses. Exergy loss is dominated by destruction due to irreversibility in coal combustion and heat transfer. Average energy efficiency and CO2 emission of 141 boilers were estimated to be 76.08% and 147.13 kg-CO2/GJ, respectively. Exergy efficiencies of typical samples were estimated at about 12.88% for hot water boiler and 27.97% for steam boiler. Raising the efficiencies of 141 boilers to the target level proposed in the standard will lead to a decrease of coal consumption by 155 kt, emission reduction of 341 kt for CO2, 3.72 kt for SO2, and 3.48 kt for NOx per year.
机译:燃煤锅炉的节能减排是减轻气候变化和缓解环境污染的重要性。在这项研究中,通过了解影响锅炉性能的因素来评估效率促进的潜力。结果基于中国辽宁省141燃煤工业锅炉的热试验。此外,在热力学第一和第二律规律的框架下提出了一种适用于燃煤工业锅炉的漏洞分析模型,以改善锅炉的运行。已经讨论了能量和漏洞效率以及二氧化碳排放。结果表明,烟气和燃烧碳的热量损失代表了主要的热损失。由于煤燃烧和热转印的不可逆转,损失是由破坏的主导。将141次沸点的平均能效和二氧化碳排放估计为76.08%和147.13kg-CO2 / GJ。热水锅炉的典型样品的高达效率为约12.88%,蒸汽锅炉的27.97%。将141次锅炉的效率提高到标准中提出的目标水平将导致煤炭消耗减少155千克,减少341千克的SO2,3.72千克,每年3.48千克。

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