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Comparison of Hydrometer Analysis and Laser Diffraction Method for Measuring Particle and Floc Size Distribution Applied to Fine Coal Refuse

机译:测量粒子和絮凝尺寸分布的液压液分析和激光衍射方法的比较

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摘要

Traditional grain size distribution measurement techniques assume that the measured particle diameters are of individual grains. However, for suspended particulate materials, particles may be dispersed or associated in flocs. Further, particle-level associations depend on the surrounding fluid chemistry, which may change over time. The purpose of this study is to compare two different methods of grain size analysis for detecting particle and floc sizes in suspensions of fine coal refuse (FCR): hydrometer analysis, the well-known traditional method, and laser diffraction, a lesser known method. The influence of background solution-flocculant, dispersant, or distilled water-on the apparent grain size of FCR was also investigated. Analogous slurry suspensions made from a well-characterized kaolin were analyzed for comparison. Results from the grain/floc size analysis indicate that there are several advantages of laser diffraction over hydrometer analysis including a short measurement period, small sample size requirement, and the ability to measure a wide range of particle sizes in the same analysis. Moreover, this study highlights the ability of the particle size analyzer (PSA) to accurately measure changes in apparent particle size over time for the same suspension and thereby indicate the presence of flocs. Finally, the PSA has the capability of capturing dynamic particle interactions-flocculation and deflocculation- in real time.
机译:传统的晶粒尺寸分布测量技术假设测量的粒径是个体晶粒。然而,对于悬浮的颗粒材料,可以在絮凝物中分散或相关的颗粒。此外,粒子级关联取决于周围的流体化学,这可能随时间变化。本研究的目的是比较两种不同的晶粒尺寸分析方法,用于检测精细煤矸石(FCR)的悬浮液中的粒子和絮状尺寸:液压仪分析,众所周知的传统方法和激光衍射,较少的已知方法。还研究了背景溶液 - 絮凝剂,分散剂或蒸馏水的影响FCR的表观晶粒尺寸。分析了由特征良好的高岭土制成的类似浆料悬浮液进行比较。谷物/絮凝尺寸分析的结果表明,激光衍射对液压计分析的几个优点包括短测量期,小样本尺寸要求,以及在相同的分析中测量各种粒度的能力。此外,该研究突出了粒度分析仪(PSA)对相同悬浮液的时间随时间准确测量表观粒径变化的能力,从而表明絮凝物的存在。最后,PSA具有实时捕获动态粒子相互作用和偏流的能力。

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