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Ash Waste Utilization via Direct Current Arc Plasma with Production of SiC and AlN

机译:Ash废物利用通过直流电弧等离子体,生产SiC和ALN

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Ash accumulation is a relevant problem due to the widespread use of coal-fired power plants and a very limited number of ash utilization technologies. Plasma processing of ash is a promising method of ash valorization for production of various useful products, which is limited by high energy consumption. In the current study, a mixture of waste ash from power plant and black carbon was processed using an original direct current plasma arc experimental setup in ambient air which allows lower energy consumption due to the absence of the vacuuming system. Four types of samples at different plasma exposure times were produced and together with the initial ash were studied by thermal analysis, X-ray diffractometry and scanning electron microscopy. The X-ray diffraction analysis identified the resulting phases of graphite, silicon carbide, and aluminum nitride in the synthesis products; at the same time, at the arc discharge energy increased from 26 to 105 kJ, the intensities of the maxima that correspond to metal and nonmetal oxides in the composition of the initial ash decreased to nearly zero. To remove graphite, the processed samples were annealed at 750 degrees C in air and studied. It was found that the applied approach made it possible to obtain a mixture of silicon carbide and aluminum nitride powders in direct current arc plasma initiated in ambient air, which reduced the energy consumption for ash processing by electric arc.[GRAPHICS].
机译:由于燃煤发电厂的广泛使用和灰色利用技术非常有限,灰分累积是一种相关问题。灰分的等离子体加工是用于生产各种有用产品的灰度算法的有希望的方法,其受到高能耗的限制。在目前的研究中,使用在环境空气中的原始直流等离子体电弧实验装置处理来自发电厂和黑碳的废灰的混合物,这允许由于没有吸尘系统而降低能量消耗。通过热分析,X射线衍射测定和扫描电子显微镜研究了不同血浆曝光时间的四种类型的样品和初始灰分一起。 X射线衍射分析鉴定了合成产品中石墨,碳化硅和氮化铝的所得相;同时,在电弧放电能量增加到26至105 kJ,最大值对应于初始灰分的组合物中的金属和非金属氧化物的最大值降低至近零。为了去除石墨,将处理后的样品在空气中以750℃退火并研究。发现应用方法使得可以在环境空气中引发的直流电弧等离子体中获得碳化硅和氮化铝粉末的混合物,这降低了通过电弧处理的灰分处理的能量消耗。[图形]。

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