降低盐煤结渣和腐蚀活性方法的实验研究

T. Shendrik, N. Dunayevska, A. Tsaryuk, Valery Ielagin, A. Fateyev
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引用次数: 1

摘要

研究了低熔点盐含量高的煤(即“咸煤”)在燃烧过程中降低其结渣能力和腐蚀能力的问题。认为含钠量大于2%的煤为含盐煤。本文以顿巴斯的咸煤为研究对象,探讨了解决咸煤利用问题的途径。测定了不同产地含盐煤燃烧过程中低熔点盐对灰层形成和金属表面腐蚀发展的影响。在水提除盐过程中,试验煤的结渣能力和腐蚀性明显下降。测定了天然煤燃烧过程中形成的腐蚀性化合物(氧化物fe2o3、fe2o3和硫化铁FeS)的组成,以及脱盐煤中不存在的成分。研究了高活性盐煤和常规低活性煤制备的混合燃料。为了制造混合燃料,使用了来自顿巴斯北部的长焰咸煤(低变质阶段)和来自库兹巴斯的无盐贫煤(高变质阶段)。在混合物燃烧过程中,从加性中释放出的灰分有明显的偏差(到9%),这表明混合物的矿物成分之间存在化学相互作用。确定了不同变质程度和矿化度的煤在复合燃料燃烧过程中形成新的难熔矿物相(霞石、深蓝色、铜长石)。所获得的结果将有助于制定模型燃料混合物的制备及其在工业锅炉装置中的无事故燃烧的建议。在复合燃料的情况下,测定新矿物化合物的实验数据可用于建立不同来源的咸煤燃烧结渣的一般理论
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Development of Approaches To Reduce the Slagging and Corrosive Activity of Salty Coal
The problems of reducing the slagging ability and corrosiveness of coal with a high content of low-melting salts (the so-called salty coal (SC) in the processes of its combustion) are considered. Salty coal is considered to be the coal, the ash of which contains Na 2 O>2 %. The object of study is the salty coal of Donbass and ways of solving the problems of its use. The influence of low-melting salts on the formation of ash deposits and the development of corrosion of the metal surface during the combustion of salty coal from different fields was determined. A noticeable decrease in the slagging ability and corrosiveness of the test coal was noted during the removal of salts by water extraction. The composition of corrosive compounds (oxides Fe 2 O 3, Fe 3 O 4 and iron sulfide FeS) has been determined, formed during the combustion of native coal, and their absence in the case of desalinated coal. Artificial fuel mixtures produced from more reactive salty and conventional low reactive coal have been studied. To create a mixed fuel, long-flame salty coal (low stage of metamorphism) from the Northern Donbas and unsalty lean coal (high stage of metamorphism) from Kuzbas were used. A significant deviation (to 9 %) was noted for the release of ash during the combustion of mixtures from the additivity, indicating a chemical interaction between the mineral components of the mixture. The formation of new refractory mineral phases of ash (nepheline, ultramarine, combeite) during the combustion of composite fuel from coals of different metamorphism and salinity was established. The obtained results will be useful in the development of recommendations for the preparation of model fuel mixtures and their accident-free combustion in industrial boiler units. Experimental data on the determination of new mineral compounds in the case of composite fuels can be used to create a general theory of slagging in the combustion of salty coal of different origins
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