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Improvement of coal boiler's efficiency after application of liquid fuel additive

机译:液体燃料添加剂施用后煤锅炉效率的提高

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The aim of research is to provide a comprehensive view of the combustion process of coal with a liquid fuel additive. The studies were carried out in laboratory conditions and on low and high power boilers which are usually used in households and local district heating plants. TGA/DSC analysis shows that the additive decreases the ignition temperature of coal as well as increases the maximal heat flow and its temperature. Application of the additive significantly decreases oxygen O-2 concentration, while maintaining the same flue gas temperature. This affects the increase of efficiency of low power boiler by 2.49 p.p. (percentage point). Emission of hydrocarbons, formaldehyde, benzene and hydrogen cyanide was lowered, whereas there was no significant impact on SO2 and NOx emission. The studies carried on the industrial boiler with thermal output of 12 MW demonstrate that the flue gas heat loss and unburnt fuel heat loss decreased by ca. 2 p.p. As a result, the efficiency increased from ca. 86 to 88% which, in turn, influences the decrease of CO2 emission per unit of energy by 5%. The originality of the work is comprehensive research on the impact of additive on the coal combustion process, mainly concerning the efficiency.
机译:研究的目的是提供液体燃料添加剂煤的燃烧过程的综合图。该研究在实验室条件下进行,低功耗锅炉,通常用于家庭和当地地区供暖厂。 TGA / DSC分析表明,添加剂降低了煤的点火温度,增加了最大热流及其温度。添加剂的施用显着降低氧O-2浓度,同时保持相同的烟道气温度。这会影响低功率锅炉效率的提高2.49 p.p. (百分点)。降低碳氢化合物,甲醛,苯和氰化氢的排放,而对SO2和NOx排放没有显着影响。具有12兆瓦的热输出的工业锅炉上进行的研究表明,烟气热损失和UNBurnt燃料热量减少通过CA。 2 P.P.结果,效率从CA增加。 86至88%,反过来,这反过来影响每单位能量的二氧化碳排放减少5%。作品的原创性是关于添加剂对煤炭燃烧过程的影响的全面研究,主要涉及效率。

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