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CHARACTERIZATION OF COAL-WATER SLURRIES PRODUCED IN A HIGH-SPEED STIRRED-BALL MILL.

机译:高速搅拌球磨机中产生的煤-水浆的表征。

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摘要

A comparison of energy requirements and rheological properties has been carried out for grinding of coal/water slurries produced in high-speed stirred and conventional ball mills. In each case, a linear population balance model using specific energy input as a reduced time variable resulted in a satisfactory description of the size distributions. The effect of stirrer speeds and fractional media filling on the energy efficiency has been studied. The pin device stirred mill was found to outperform the disc device stirred mill for this application.;Coal/Water slurries were found to behave as pseudoplastic fluids and data fitted to a power law type of relationship. Slurries produced to a fineness of 80% passing 250 mesh in conventional and stirred mills showed that the slurry prepared in a stirred mill was more viscous at low shear rates (;An approach of response surface methodology has been used to evaluate the optimal conditions of grinding. The operating variables examined were percent solids, ball size, dispersant dosage and mill speed. The results of grinding experiments based on central composite design have been evaluated in-terms of slurry rheology and desired distribution modulus. Comparison of conventional and stirred milling tests showed that the energy reduction which is possible with the stirred ball mill increases linearly with the percent of material passing 325 mesh up to 90% and beyond this point energy reduction is even higher.
机译:对于在高速搅拌磨和常规球磨机中生产的煤/水浆的研磨,已经进行了能量需求和流变性质的比较。在每种情况下,使用比能量输入作为减少的时间变量的线性人口平衡模型都可以得出令人满意的尺寸分布描述。研究了搅拌器速度和部分介质填充对能量效率的影响。对于该应用,发现销钉设备搅拌磨的性能优于圆盘设备搅拌机。;发现煤/水浆液具有假塑性流体的性能,并且数据符合幂律类型的关系。在常规磨机和搅拌机中通过250目筛生产的细度为80%的浆液表明,在搅拌机中制备的浆液在低剪切速率下更具粘性(;已采用响应面方法评估了最佳研磨条件。检查的操作变量是固体百分比,球尺寸,分散剂用量和磨机速度。已根据浆液流变学和所需的分布模量评估了基于中心复合设计的磨削实验结果。比较常规磨浆和搅拌磨试验搅拌式球磨机可以实现的能耗降低,随着通过325目筛的物料百分比达到90%呈线性增加,超过这一点,能耗降低甚至更高。

著录项

  • 作者

    MEHTA, RAJENDRA KUMAR.;

  • 作者单位

    The University of Utah.;

  • 授予单位 The University of Utah.;
  • 学科 Engineering Metallurgy.
  • 学位 Ph.D.
  • 年度 1987
  • 页码 318 p.
  • 总页数 318
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:50:55

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