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Characterization of Fly Ash from Polish Coal-Fired CHP Plants for NO_2 Capture

机译:波兰燃煤热电联产厂中粉煤灰的NO_2捕集特性

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To meet the growing energy demand and thereby increase power-generating capacity, the dependency on coal for power generation, are required a more environmentally friendly methods of fly ash utilization. Therefore, the priority is to characterize domestic fly ash in detail in order to ascertain its potential uses as raw material in the production of high-value products. The high silica content of fly ash makes it a potential useful source for the synthesis of nanoporous materials, such as zeolites and mesoporous molecular sieves. The physicochemical properties of fly ash coming from seven coal-fired power plants and three heat and power plants in Poland are presented in this work. The fly ash was sampled from power plants that use combustion of lignite and hard coal in pulverized-fuel boilers (PC) and circulating fluidized bed (CFB) boilers. The fly ash was examined for its morphology, chemical and mineral composition, grain size, structure and thermal stability by using advanced instrumental techniques (XRF, XRD, SEM, BET, TGA). According to mineralogical and chemical composition of fly ash, three fly ash samples are potentially useful as a raw material for making zeolite A, two samples for zeolite X and fly ash No. 8 for zeolite Y. The samples with the highest content of SiO2 and Al2O3 (Nos. 2-6 and 9) can be used to synthesize mesoporous molecular sieves such as MCM-41 and SBA-15. Received zeolites and mesoporous sieves from these fly ash samples will be used for removing NO2 from exhaust gas, and these studies can be implemented in power plants with CO2 capture, in the process of exhaust gas purification to removal of NO2.
机译:为了满足不断增长的能源需求并由此提高发电能力,需要一种对煤的依赖来进行粉煤灰利用。因此,当务之急是详细表征家用粉煤灰,以确定其在高价值产品生产中作为原材料的潜在用途。粉煤灰的高二氧化硅含量使其成为合成纳米孔材料(例如沸石和中孔分子筛)的潜在有用来源。这项工作介绍了来自波兰的七个燃煤发电厂和三个热电厂的粉煤灰的理化特性。粉煤灰是从发电厂采样的,这些发电厂使用的是粉煤锅炉(PC)和循环流化床(CFB)锅炉中的褐煤和硬煤燃烧。使用先进的仪器技术(XRF,XRD,SEM,BET,TGA)检查了粉煤灰的形态,化学和矿物组成,晶粒尺寸,结构和热稳定性。根据粉煤灰的矿物学和化学组成,三个粉煤灰样品可能用作制造沸石A的原料,两个粉煤灰样品用于X沸石,八个粉煤灰样品用于Y沸石。SiO2和SiO2含量最高的样品。 Al 2 O 3(2-6和9号)可用于合成中孔分子筛,例如MCM-41和SBA-15。从这些粉煤灰样品中获得的沸石和中孔筛将用于去除废气中的NO2,并且这些研究可以在具有CO2捕集的发电厂中进行,即在废气净化至NO2去除的过程中。

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