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A review of boiler waste heat recovery technologies in the medium-low temperature range

机译:中低温范围内锅炉废热回收技术综述

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The technology of waste heat recovery from medium-low temperature flue gas has been widely studied in the past decade. In this paper, the principle and characteristics of the main technologies are extensively reviewed. The condensing boiler, as the primary waste heat recovery system, can achieve higher boiler efficiency by transferring waste heat to feedback water. As the temperature of feedback water is generally not cold enough to serve as the cold source, the waste heat recovery efficiency of condensing boilers is limited. More advanced waste heat recovery systems are proposed. The common principle of them is to enhance the difference between the cold source and the flue gas. Specific systems reviewed are classified according to working principles: (I) to decrease the temperature of the cold source; (II) to decrease the dew point temperature of the cold source; (III) to increase the dew point temperature of the flue gas. System performances are analyzed involving efficiency, entransy dissipation, economic benefits and pollutant emissions. The heat recovery efficiency of several heat pump systems and vapor pump boiler systems can exceed 80 %. The vapor pump boiler system has a relatively short payback period (i.e. 1.4 years). Future perspectives and essential conclusions are presented in the end. (c) 2021 Elsevier Ltd. All rights reserved.
机译:在过去十年中,中低温烟道气中的废热回收技术已被广泛研究。在本文中,广泛审查了主要技术的原理和特点。作为主要废物热回收系统的冷凝锅炉可以通过将废热转移到反馈水来实现更高的锅炉效率。随着反馈水的温度通常不足以充当冷源,冷凝锅炉的废热回收效率受到限制。提出了更先进的废热回收系统。它们的共同原理是增强冷源和烟道气之间的差异。审查的具体系统根据工作原则进行分类:(i)降低冷源的温度; (ii)降低冷源的露点温度; (iii)增加烟道气的露点温度。分析了系统性能,涉及效率,意外耗散,经济益处和污染物排放。多个热泵系统和蒸汽泵锅炉系统的热回收效率可能超过80%。蒸汽泵锅炉系统具有相对较短的投资回收期(即1.4岁)。最终提出了未来的观点和必要的结论。 (c)2021 elestvier有限公司保留所有权利。

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