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A study on water-quenching waste heat recovery from molten slag of slag-tap boilers

机译:排渣锅炉熔渣淬火余热回收的研究

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The slag-tap boiler regains great attention due to the utilization of Zhundong coals. To solve high sensible heat loss problem of molten slag, three water-quenching waste heat recovery systems are proposed. For subcooled- and boiling-water-quenching systems, the condensate water can be heated. While for heating system, heating and domestic hot water can be provided. Thermal-economic analyses of these systems are performed based on a typical 220 t h(-1) cyclone boiler with nine low-fusion-temperature coals. The results show that the amount of recovered heat is influenced by heating value, ash fusibility and ash content of coal. Ash content is the most important factor. Both of subcooled- and boiling-water-quenching systems can increase the thermal efficiency of unit. The latter system is much simpler and has the superiority for waste heat recovery. Promoting the energy level of waste heat utilization or increasing the temperature of the heated condensate water will certainly increases the thermal efficiency. For the heating system, the heating consumer and bathing pool can be switched according to different regions and seasons. This system has a relatively low requirement for the grade of heat source, although additional pipes with thermal insulation are needed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:由于准东煤的利用,排渣锅炉备受关注。为了解决熔渣的显热损失问题,提出了三种淬火废热回收系统。对于过冷和沸水淬火系统,可以加热冷凝水。对于加热系统,可以提供加热和生活热水。这些系统的热经济分析是基于典型的220 t h(-1)旋风锅炉和9种低熔点煤进行的。结果表明,热量的回收量受煤的热值,易熔性和灰分的影响。灰分是最重要的因素。过冷和沸水淬火系统均可提高机组的热效率。后一种系统简单得多,并且具有余热回收的优势。提高废热利用的能级或提高加热的冷凝水的温度肯定会提高热效率。对于加热系统,可以根据不同的地区和季节切换供暖用户和沐浴池。该系统对热源等级的要求相对较低,尽管需要附加的具有隔热层的管道。 (C)2016 Elsevier Ltd.保留所有权利。

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