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水泥显微学研究正在从实验室走向生产实践,直接为工业生产服务。挪威K.Svining等采用X射线衍射仪研究了波特兰水泥熟料因窑内煅烧条件变化而引起的显微结构改变。加拿大的F.Slim等将X射线衍射仪和带EDXA的扫描电子显微镜直接用于分析工厂生料的矿物学特征和显微结构,以指导和控制生产。当今世界,优质自然资源正受到灭绝性的消耗,水泥工业必将被迫越来越多地使用低品位的原料或工业废渣。南非兰圈水泥公司为利用低品位石灰石煅烧水泥熟料,将显微技术与化学分析相结合来评估不同原料制成的水泥熟料的质量。委内瑞拉科学家研究了一种名为HDH-SR的重油渣燃料的熟料煅烧过程及其对水泥质量的影响。瑞典学者发现利用废塑料做燃料时,燃料器的结构对熟料显微结构和结渣现象产生影响,可通过调整燃料器的结构来改变熟料的显微结构。
Cement microscopy research is moving from laboratory to production practice, directly for industrial production services. K.Svining, Norway et al. Studied the microstructure changes of Portland cement clinker due to the calcination conditions in the kiln using X-ray diffractometer. F.Slim of Canada and other X-ray diffractometer and EDXA scanning electron microscope used directly to analyze the mineralogy of the factory raw materials and microscopic features of the microstructure to guide and control the production. In today’s world, high-quality natural resources are extinct consumption, the cement industry will inevitably be forced to use more and more low-grade raw materials or industrial waste. In order to utilize low-grade limestone to calcine cement clinker, South African Blue Circle Cement combined microscopy and chemical analysis to evaluate the quality of cement clinker made from different raw materials. Venezuelan scientists studied the clinker calcination process of a heavy-oil-residue fuel called HDH-SR and its impact on cement quality. Swedish scholars found that the use of waste plastics as a fuel, the structure of the fuel clinker on the microstructure and slagging phenomenon, by adjusting the structure of the fuel to change the microstructure of clinker.