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Evaluation of a flue gas driven open absorption system for heat and water recovery from fossil fuel boilers

机译:烟气驱动的开放式吸收系统的评估,该系统用于从化石燃料锅炉中回收热量和水

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This paper presents an open absorption system for total heat recovery from fossil fuel boilers using the high temperature flue gas as the regeneration heat source, In this system, liquid desiccant serves as the recycling medium, which, absorbs waste heat and moisture contained in the low temperature flue gas in the packed tower and then regenerates in the regenerator by the high temperature flue gas. Water vapor generated in the regenerator gets condensed after releasing heat to the heating water system and the condensing water also gets recycled. The return water collects heat from the solution water heat exchanger, the flue gas water heat exchanger and the condenser respectively and is then used for district heating. Driven by the vapor pressure difference between high humidity flue gas and the liquid desiccant, the heat recovery efficiency of the system is not limited by the dew point of the flue gas, enabling a warmer water to be heated up than the conventional condensing boiler. The performance of this system was analyzed theoretically and experimentally and the results showed that the system operated well for both district heat supply and domestic hot water supply. The system efficiency increased with the moisture content of flue gas and the total heat recovery was about 8.5%, 17.2%, 21.2%, and 9.2% higher than the conventional condensing system in the case of coal fired boiler, fuel oil boiler, natural gas boiler, and coke oven gas boiler, respectively. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了一种开放式吸收系统,该系统利用高温烟气作为再生热源,从化石燃料锅炉中回收全部热量。在该系统中,液体干燥剂用作再循环介质,吸收了废热和低压中的水分。填料塔中的高温烟气,然后通过高温烟气在再生器中再生。蓄热器中产生的水蒸气在将热量释放到热水系统后被冷凝,冷凝水也被循环利用。回水分别从溶液水热交换器,烟气水热交换器和冷凝器收集热量,然后用于区域供热。受高湿烟气和液体干燥剂之间的蒸气压差的驱动,系统的热回收效率不受烟气露点的限制,与传统的冷凝锅炉相比,可以加热较热的水。从理论上和实验上对该系统的性能进行了分析,结果表明该系统在区域供热和生活热水供应方面均运行良好。系统效率随着烟气中水分的增加而提高,在燃煤锅炉,燃油锅炉,天然气的情况下,总热回收率分别比常规冷凝系统高出约8.5%,17.2%,21.2%和9.2%。锅炉和焦炉煤气锅炉。 (C)2016 Elsevier Ltd.保留所有权利。

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