提高锅炉厂复杂热回收系统的生态效益

N. Fialko, R. Navrodskaya, G. Presich, G. Gnedash, S. Shevchuk, O. V. Martiuk
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引用次数: 1

摘要

结果表明,在燃气锅炉厂的复杂热回收系统中,对吹出的空气进行加湿,可以显著降低废气中氮氧化物的浓度,因为当这种空气引入水分时,它们在锅炉炉膛中的形成受到抑制。环境保护和节能问题成为世界实践的重点。改善供热锅炉厂的环境指标,利用余热深度回收技术提高供热锅炉厂的燃料利用效率,是解决城市热电工程中这些紧迫问题的主要方向。由于燃料能源成本的不断增加和减少环境污染的要求的加强,这些方向的科学问题的相关性正在增加。在利用这些废气深度热回收技术时,实现了热回收设备的冷凝模式,除了利用这些气体的所谓清热外,还利用了其中所含水蒸气的冷凝潜热。冷凝方式的实施也提高了锅炉的生态指标,因为减少了燃料消耗,并且在燃烧过程中形成的一部分有害排放物溶解在生成的冷凝水中。燃气锅炉厂采用现代热回收技术,将回收的热用于锅炉水、化学水净化系统的水和吹风的预热,从而可以减少锅炉的燃料消耗,从而使其有害排放物减少8%。12%。通过使用回收热对吹出的空气进行加湿,还通过抑制锅炉燃烧室中氮氧化物的形成,将氮氧化物的排放量减少到60%。
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INCREASE OF ECOLOGICAL EFFECTIVENESS OF COMPLEX HEAT-RECOVERY SYSTEMS FOR BOILER PLANTS
It is revealed that the humidifying of blown air in complex heat recovery systems of gas-fired boiler plants provides the significant reduction in the concentration of nitrogen oxides in exhaust-gases due to the suppression of their formation in the boiler furnace when moisture is introduced with this air.  Problems of environmental protection and energy-saving became priority in world practice. The main directions of deciding these pressing problems in municipal heat-power engineering is to improve the environmental indicators of heating boiler plants and increase the efficiency of using fuel in them through the use of technologies for deep recovery of the exhaust-gases heat. The relevance of scientific problems in these directions is increasing due to the steady increase in the fuel-energy costs and the strengthening of requirements to reducing environmental pollution. When using these technologies of deep heat-recovery of exhaust-gases, the condensation mode of the heat-recovery equipment is realized, when, apart from to the so-called clear heat of these gases, the latent heat of condensation of the water vapor contained in them is also used. The condensation mode implementation also improves the ecological indicators of the boiler due to the reduction of fuel consumption and the dissolution in the resulting condensate of a part of harmful emissions formed during its combustion. The use of modern heat-recovery technologies for the gasfired boiler plants with complex use of recovered heat for the preheating of boiler water, water of the chemical waterpurification system and blowing air makes it possible to reduce fuel consumption in the boiler and, accordingly, its harmful emissions by 8...12 %. Humidification of the blowing air through the use of the recovery heat also provides a reduction of nitrogen oxides emissions to 60 % by suppressing their formation in the boiler combustion chamber.
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