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首页> 外文期刊>Journal of Materials Research and Technology >Mineral phase transformation in coal gangue by high temperature calcination and high-efficiency separation of alumina and silica minerals
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Mineral phase transformation in coal gangue by high temperature calcination and high-efficiency separation of alumina and silica minerals

机译:高温煅烧煤矸石中矿物相变,氧化铝和二氧化硅矿物的高效分离

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Coal gangue is the solid waste from the coal mining process. About 1 billion tons of coal gangue is discharged every year in the world. Coal gangue is usually piled up in the large areas and difficult to be used. Phase transformation and separation of alumina and silica minerals in coal gangue are studied in this paper in order to prompt the resource utilization of coal gangue. The results show that the phase transformation of kaolinite in coal gangue during high-temperature calcination is in the following way: kaolinite → metakaolin → spinel → mullite. Active silica mineral is released during the phase transition process, which can be separated from other minerals by caustic leaching. The optimal calcination temperature of coal gangue is 1050 ± 50 °C while the caustic leaching temperature is 85 °C and the leaching time should be kept between 60 and 80 min. The modulus of the sodium silicate solution can reach 1.0–1.1 and the alumina to silica ratio (A/S) of the desilicated residue can be raised to 1.7.
机译:煤矸石是煤矿过程中的固体废物。大约10亿吨煤矸石每年都在世界上排出。煤矸石通常在大面积中堆积,难以使用。本文研究了煤矸石中氧化铝和二氧化硅矿物的相变,分离,以提高煤矸石的资源利用。结果表明,高温煅烧过程中煤矸石中高岭土的相变以下列方式:高岭土→Metakaolin→尖晶石→莫来石。在相转变过程中释放有活性二氧化硅矿物质,其可以通过苛性浸出与其他矿物分离。煤矸石的最佳煅烧温度为1050±50°C,而苛性浸出温度为85°C,浸出时间应保持在60至80分钟之间。硅酸钠溶液的模量可以达到1.0-1.1,并且可以将氧化铝与二氧化硅比(A / S)的二氧化硅比(A / S)升高至1.7。

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