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Water extraction from high moisture lignite by means of efficient integration of waste heat and water recovery technologies with flue gas pre-drying system

机译:通过将余热和水回收技术与烟气预干燥系统有效集成,从高水分褐煤中提取水

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The flue gas pre-dried lignite-fired power system (FPLPS) integrates the fan mill flue gas dryer with an open pulverizing system and yields an increase of the boiler efficiency. Particularly, the dryer exhaust gas contains a large amount of vapor removed from high moisture lignite, which exhibits great potential for waste heat and water recovery. Two available options are considered to realize the extraction of water from lignite: the low pressure economizer (LPE) for water-cooled units and the spray tower (SPT) integrated with heat pump for air-cooled units. This paper aims at evaluating the energy saving and water recovery potentials of the FPLPS integrated with both schemes. Results showed that the plant efficiency improvement of the FPLPS at base case varied from 1.14% to 1.47% depending on the moisture content of raw lignite. The water recovery ratio and plant efficiency improvement in the optimal LPE scheme were 39.4% and 0.20%, respectively. In contrast, 83.3% of water recover ratio and 110.6 MWth heat supply were achieved in the SPT system. Both schemes were economically feasible with discounted payback periods of around 3 years. Moreover, parametric analysis was conducted to examine the economic viability of both schemes with different lignite types and market factors. (C) 2016 Elsevier Ltd. All rights reserved.
机译:烟气预干燥褐煤发电系统(FPLPS)将风机磨机烟气干燥器与开放式粉碎系统集成在一起,从而提高了锅炉效率。特别地,干燥器废气包含从高水分褐煤中去除的大量蒸气,这显示出用于废热和水回收的巨大潜力。为了实现从褐煤中提取水,考虑了两个可用的选项:用于水冷机组的低压省煤器(LPE)和用于空冷机组的与热泵集成的喷淋塔(SPT)。本文旨在评估结合了这两种方案的FPLPS的节能和水回收潜力。结果表明,根据原始褐煤的水分含量,基本情况下FPLPS的工厂效率提高幅度为1.14%至1.47%。最佳LPE方案的水回收率和工厂效率提高分别为39.4%和0.20%。相反,在SPT系统中,实现了83.3%的水回收率和110.6 MWth的供热。两种方案在经济上都是可行的,投资回收期的折扣期约为3年。此外,进行了参数分析,以检验两种褐煤类型和市场因素不同的方案的经济可行性。 (C)2016 Elsevier Ltd.保留所有权利。

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