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Ultrafine grinding of FGD and phosphogypsum with an attrition bead mill and a jet mill : optimisation and modelling of grinding and mill comparison

机译:用磨珠机和喷射磨对烟气脱硫和磷石膏进行超细研磨:研磨的优化和建模以及研磨机的比较

摘要

Fine powders of minerals are used commonly in the paper and paint industry, and for ceramics. Research for utilizing of different waste materials in these applications is environmentally important.In this work, the ultrafine grinding of two waste gypsum materials, namely FGD (Flue Gas Desulphurisation) gypsum and phosphogypsum from a phosphoric acid plant, with the attrition bead mill and with the jet mill has been studied. The ' objective of this research was to test the suitability of the attrition bead mill and of the jet mill to produce gypsum powders with a particle size of a few microns. The grinding conditions were optimised by studying the influences of different operational grinding parameters on the grinding rate and on the energy consumption of the process in order to achieve a product fineness such as that required in the paper industry with as low energy consumption as possible.Based on experimental results, the most influential parameters in the attrition grinding were found to be the bead size, the stirrer type, and the stirring speed. The best conditions, based on the product fineness and specific energy consumption of grinding, for the attrition grinding process is to grind the material with small grinding beads and a high rotational speed of the stirrer. Also, by using some suitable grinding additive, a finer product is achieved with a lower energy consumption. In jet mill grinding the most influential parameters were the feed rate, the volumetric flow rate of the grinding air, and the height of the internal classification tube. The optimised condition for the jet is to grind with a small feed rate and with a large rate of volumetric flow rate of grinding air when the inside tube is low. The finer product with a larger rate of production was achieved with the attrition bead mill than with the jet mill, thus the attrition grinding is better for the ultrafine grinding of gypsum than the jet grinding.Finally the suitability of the population balance model for simulation of grinding processes has been studied with different S , B , and C functions. A new S function for the modelling of an attrition mill and a new C function for the modelling of a jet mill were developed. The suitability of the selected models with the developed grinding functions was tested by curve fitting the particle size distributions of the grinding products and then comparing the fitted size distributions to the measured particle sizes. According to the simulation results, the models are suitable for the estimation and simulation of the studied grinding processes.
机译:矿物细粉通常用于造纸和油漆行业,以及用于陶瓷。在这些应用中利用不同废料的研究对环境具有重要的意义。在这项工作中,将超细粉碎两种废石膏材料,即磷酸厂的烟气脱硫石膏和磷酸石膏的磷石膏,并用磨珠机和喷气磨已经过研究。这项研究的目的是测试耐磨珠磨机和喷射磨机是否适合生产粒径为几微米的石膏粉。通过研究不同的操作磨削参数对磨削速率和工艺能耗的影响来优化磨削条件,以实现产品细度(如造纸工业所需的产品)并尽可能降低能耗。根据实验结果,发现在磨削研磨中影响最大的参数是珠粒大小,搅拌器类型和搅拌速度。基于产品细度和研磨的单位能耗的最佳条件,对于磨削研磨工艺来说,是用较小的研磨珠和较高的搅拌器转速研磨材料。同样,通过使用一些合适的研磨添加剂,可以以较低的能耗获得更精细的产品。在气流磨中,影响最大的参数是进料速度,研磨空气的体积流量和内部分级管的高度。射流的最佳条件是当内管较低时,以较小的进给速度和较大的研磨空气体积流量进行研磨。磨损珠磨机比喷射磨机能生产出更高产量的更精细产品,因此,对于石膏的超细研磨而言,磨损磨比喷射磨更好。研究了具有不同S,B和C函数的磨削过程。开发了用于磨损磨机建模的新S函数和用于喷气磨机建模的新C函数。通过曲线拟合研磨产品的粒径分布,然后将拟合的粒径分布与测得的粒径进行比较,测试所选模型是否具有发达的研磨功能。根据仿真结果,该模型适合于所研究磨削过程的估计和仿真。

著录项

  • 作者

    Tuunila Ritva;

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  • 年度 1997
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  • 原文格式 PDF
  • 正文语种 en
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