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Effect of mechanical grinding on physical and chemical characteristics of circulating fluidized bed fly ash from coal gangue power plant

机译:机械粉碎对煤石电厂循环流化床粉煤灰理化特性的影响

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摘要

To characterize roles of mechanical grinding on the physical and chemical characteristics of circulating fluidized bed fly ash (CFB-FA), the differences between CFB-FA and ordinary fly ash (OFA) were revealed and the effects of mechanical grinding action on the physical and chemical characteristics of CFB-FA were studied from grinding kinetics, particle size distribution, bulk density, morphology, pore size distribution, amorphous substance content, anionic polymerization degree and hydration property and so on. The results indicate that there are some differences in chemical and mineral composition, particle morphology and self-hardening property between untreated CFB-FA and OFA. The particle size distribution of CFB-FA is optimized by mechanical grinding and the optimization role is best at 50 min grinding time. Mechanical grinding action can also reduce the interconnected pores, average pore radius, total cumulative pore volume and the pores content in range of greater than 3 nm radius of CFB-FA. Meanwhile, the amorphous substance dissolution amount of CFB-FA is increased and the polymerization degrees of [SiO4] and [AlO6] are reduced by mechanical grinding. All the 3d, 7d and 28d strengths of ground CFB-FA paste are improved significantly, and 3d and 28d activity index of the CFB-FA are also improved by more than 5% and 14%, respectively. Furthermore, organic grinding aids can further improve the mechanical grinding roles on CFB-FA and the role of ethylene glycol is the most excellent. (C) 2015 Elsevier Ltd. All rights reserved.
机译:为了表征机械研磨对循环流化床粉煤灰(CFB-FA)的物理和化学特性的作用,揭示了CFB-FA与普通粉煤灰(OFA)的区别,以及机械研磨作用对物理和化学作用的影响。从粉碎动力学,粒度分布,堆积密度,形貌,孔径分布,无定形物质含量,阴离子聚合度和水合性能等方面研究了CFB-FA的化学特性。结果表明,未经处理的CFB-FA和OFA之间在化学和矿物组成,颗粒形态和自硬化性能方面存在差异。 CFB-FA的粒度分布通过机械研磨进行了优化,而最佳的研磨作用是在50分钟的研磨时间。机械研磨作用还可以减少互连的孔,平均孔半径,总累积孔体积以及CFB-FA半径大于3 nm半径范围内的孔含量。同时,通过机械研磨,CFB-FA的无定形物质溶解量增加并且[SiO4]和[AlO6]的聚合度降低。研磨后的CFB-FA浆料的所有3d,7d和28d强度均得到显着改善,CFB-FA的3d和28d活性指数也分别提高了5%和14%以上。此外,有机助磨剂可以进一步改善CFB-FA的机械研磨作用,其中乙二醇的作用最为出色。 (C)2015 Elsevier Ltd.保留所有权利。

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