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Coal flotation kinetics: Methods for estimating distribution of rate constants.

机译:煤浮选动力学:估算速率常数分布的方法。

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摘要

To incorporate the effect of particle size and hydrophobicity on the distribution of flotation rate constants, the existing first-order models were modified. This was done by addition of a third parameter which enabled the width of the distribution to become independent of the mean flotation rate. The three-parameter models, which were so obtained from their two-parameter analogs, such as rectangular, triangular and sinusoidal, fitted the flotation rate data very well for a variety of experimental conditions. Separate estimates of the flotation rate constant distributions by microscopy and film flotation techniques agreed with the estimates from the three-parameter models. It was observed that the differences in the values of the model parameters and curve-fitting errors diminished upon modification. This eliminated the need for model discrimination among the first-order models.;Three methods of estimating the "true" distribution of flotation rate constants were evaluated for a variety of materials and experimental conditions using the modified first-order models. These methods generated estimates of the "true" distribution using the kinetics data from the total, size fractionated and size-specific gravity fractionated froth products. The estimates obtained using the total flotation products depended on the model utilized. Since the flotation rate constant distribution of a given material was a complex function of particle size and hydrophobicity, a single function should not be expected to produce a good estimate for a wide range of experimental conditions. The estimates using the narrow size fractions of the froth products were model independent. By this approach the effects of size and hydrophobicity on the flotation rate could be evaluated separately. Fractionation of the froth products into size and specific gravity fractions suffered from large analytical, sampling and statistical errors in addition to the extremely tedious experimental procedures. Kinetic analysis on narrow, non-overlapping size fractions was found to be a good compromise in estimating the "true" distributions of flotation rate constants.
机译:为了纳入粒度和疏水性对浮选速率常数分布的影响,对现有的一阶模型进行了修改。这是通过添加第三个参数完成的,该参数使分布的宽度变得与平均浮选速率无关。从两参数类似物(例如矩形,三角形和正弦曲线)中获得的三参数模型非常适合各种实验条件的浮选速率数据。通过显微镜和薄膜浮选技术对浮选速率常数分布的单独估计与三参数模型的估计一致。观察到,修改后模型参数值和曲线拟合误差值的差异减小了。这就消除了对一阶模型进行模型判别的需要。使用改进的一阶模型,针对各种材料和实验条件,评估了三种估算浮选速率常数“真实”分布的方法。这些方法使用动力学数据从总的,分级的和分级的比重分馏的泡沫产品中生成了“真实”分布的估计值。使用总浮选产品获得的估算值取决于所使用的模型。由于给定材料的浮选速率常数分布是粒径和疏水性的复杂函数,因此不应期望单个函数可以在广泛的实验条件下产生良好的估计。使用泡沫产品的窄尺寸部分进行的估算与模型无关。通过这种方法,可以分别评估大小和疏水性对浮选速率的影响。除极其繁琐的实验程序外,将泡沫产品按大小和比重进行分馏还存在较大的分析,采样和统计误差。在估算浮选速率常数的“真实”分布时,发现对窄的,不重叠的大小部分进行动力学分析是一个很好的折衷方法。

著录项

  • 作者

    Polat, Mehmet.;

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Engineering Mining.;Engineering Mechanical.;Engineering Metallurgy.
  • 学位 Ph.D.
  • 年度 1995
  • 页码 234 p.
  • 总页数 234
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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