会议论文详细信息
7th International Conference Radiation-thermal Effects and Processes in Inorganic Materials
Processing of ash and slag waste of heating plants by arc plasma to produce construction materials and nanomodifiers
材料科学;物理学
Buyantuev, S.L.^1 ; Urkhanova, L.A.^1 ; Kondratenko, A.S.^2 ; Shishulkin, S. Yu.^1 ; Lkhasaranov, S.A.^1 ; Khmelev, A.B.^1
East Siberia State University of Technology and Management, Russia^1
Buryat State University, Russia^2
关键词: Carbon nano-materials;    Chemical compositions;    High strength concretes;    Industrial installations;    Specific energy consumption;    Temperature conditions;    Thermo dynamic analysis;    Unit cost of electricity;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/168/1/012048/pdf
DOI  :  10.1088/1757-899X/168/1/012048
学科分类:材料科学(综合)
来源: IOP
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【 摘 要 】

The resultsare presented of plasma processing slag and ash waste from coal combustion in heating plants. Melting mechanism of ashand slagraw material is considered by an electromagnetic technological reactor. The analysis was conducted of temperature and phase transformations of raw material when it is heated up to the melting point, and also determination of specific energy consumption by using a generalized model of the thermodynamic analysis of TERRA. The study of materials melting temperature conditions and plum of melt was carried with high-temperature thermal imaging method, followed by mapping and 3D-modeling of the temperature fields. The investigations to establish the principal possibilities of using slag waste of local coal as raw material for the production of mineral (ash and slag) fibers found that by chemical composition there are oxides in the following ranges: 45-65% SiO2; 10-25% Al2O3; 10-45% CaO; 5-10% MgO; other minerals (less than 5%). Thus, these technological wastes are principally suitable for melts to produce mineral wool by the plasma method. An analysis of the results shows the melting point of ash and slag waste - 1800-2000 °C. In this case the specific energy consumption of these processes keeps within the limits of 1.1-1.3 kW∗h/kg. For comparison it should be noted that the unit cost of electricity in the known high-melting industrial installations 5-6 kW∗h/kg. Upon melting ash and slag waste, which contains up to 2-5% of unburned carbon, carbon nanomaterials were discovered.in the form of ultrafine soot accumulating as a plaque on the water-cooled surfaces in the gas cleaning chamber. The process of formation of soot consists in sublimation-desublimation of part of carbon which is in ash and slag, and graphite electrode. Thus, upon melting of ash and slag in the electromagnetic reactor it is possible to obtain melt, and in the subsequent mineral high quality fiber, which satisfies the requirements of normative documents, and simultaneously to receive a condensed product in the form of carbon sublimated nanoparticles, which can be found further use in construction materials, in particular in high-strength concrete and other materials.

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