首页> 外文OA文献 >Effects of concentration of dispersions on particle sizing during production of fine particles in wet grinding process
【2h】

Effects of concentration of dispersions on particle sizing during production of fine particles in wet grinding process

机译:湿磨过程中细颗粒生产过程中分散液浓度对颗粒尺寸的影响

摘要

Stirred media milling is a prospective technology for producing colloidal dispersions by means of wet grinding process. In the past, many researchers have studied the effects of different operating parameters such as size, shape, nature and quantity of grinding medium, the speed of agitator in grinding chamber, the feed rate of dispersions, etc. in stirred media mills. However, it is still less known how particle sizing which generates valuable information of particle size of the product to interpret, control and optimize the grinding process, is influenced by the concentration of the dispersion during stirred media milling where particles change their size from micron to colloidal range rapidly. One of the reasons of this lack had been our incapability in the past to study the particle size distribution of dispersions without dilution. The recent advent of acoustic attenuation spectroscopy is known to be capable of studying dispersions without dilution, under real process conditions and on line. The study employs acoustic attenuation spectroscopy to investigate the effects of concentration of dispersions of CaCO3 on its particle sizing during size reduction process in a stirred media mill (LabStar manufactured by NETZSCH). The dispersions of CaCO3 at 5%, 10%, 20% and 30% (m/m) were studied about six hours under a selected set of operating conditions. Contrary to the existing knowledge obtained through other techniques of particle sizing that are based on the principle of dilution, acoustic attenuation spectroscopy shows that, under certain grinding time at given operating conditions, increase in concentration of dispersion results in better grinding results yielding smaller particles. The causes behind the differences in results of acoustic attenuation spectroscopy and dynamic light scattering have been thoroughly investigated. We find certain limitations of acoustic attenuation spectroscopy in particle sizing. A typical phenomenon which causes misleading trends in particle sizing is multiple scattering in acoustic measurements. Multiple scattering, particularly, influences acoustic results when particles approach to fine size range during size reduction process.
机译:搅拌介质研磨是通过湿磨法生产胶体分散体的前瞻性技术。过去,许多研究人员研究了不同操作参数的影响,例如尺寸,形状,研磨介质的性质和数量,研磨室中搅拌器的速度,搅拌介质研磨机中分散液的进料速度等。然而,仍然不清楚的是,在搅拌介质研磨过程中,分散液的浓度会影响分散体的浓度,而颗粒尺寸会产生有价值的产品粒度信息以解释,控制和优化研磨过程,而分散液的浓度会从颗粒大小从微米变为胶体范围迅速。这种缺乏的原因之一是我们过去无法研究未经稀释的分散体的粒度分布。众所周知,声衰减光谱技术的最新出现是能够在实际工艺条件下和在线地研究分散体而无需稀释。该研究利用声衰减光谱法研究了在搅拌介质研磨机(NETZSCH制造的LabStar)中,在减小尺寸的过程中CaCO3分散体的浓度对其颗粒尺寸的影响。在一组选定的操作条件下,大约6小时研究了5%,10%,20%和30%(m / m)的CaCO3分散体。与通过其他基于稀释原理的粒度测定技术获得的现有知识相反,声衰减光谱法显示,在给定的操作条件下一定的研磨时间下,分散体浓度的增加可产生更好的研磨结果,从而产生较小的颗粒。彻底研究了声衰减光谱法和动态光散射结果不同的原因。我们发现在颗粒尺寸测定中,声衰减光谱法存在某些局限性。引起颗粒尺寸变化趋势误导的典型现象是声学测量中的多次散射。尤其是在尺寸减小过程中,当粒子接近较小尺寸范围时,多重散射会影响声学效果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号