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Fumed Silica Particle Deagglomeration Associated with Instrument Techniques

机译:与仪器技术相关的烟雾二氧化硅颗粒切割

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Fumed silica, due to the thixotropic properties and low thermal conductivity, is used in insulation products. Exposure to crystalline silica is of most concern and there is also evidence that exposure to nanometer-sized fumed silica may lead to adverse health outcomes. Workers’ exposure to aerosolized fumed silica and other potentially hazardous materials are commonly assessed using direct-reading instruments. These instruments often contain an aerosol pre-separator cyclone, which by dispersing agglomerated particles, may cause variations in the reading values. This study investigates the effect of these cyclones on the measurements by comparing three instruments for airborne fumed silica that was generated using manual and automatic manipulation methods of manual pouring and automatic stirring. The results from these experiments showed that the measured concentration of nano-sized fumed silica increased with the use of cyclone. This may attribute to the residual particles remained inside the cyclone or attached on its wall in the particle separation process, which needs to be considered in and the corresponding correction should be made when measuring the concentration of fumed silica with an instrument that uses a cyclone as a pre-separator.
机译:由于触变性和低导热率,在绝缘产品中使用了烟雾二氧化硅。暴露于结晶二氧化硅是最关心的,并且还有证据表明暴露于纳米大小的熏蒸二氧化硅可能导致不良的健康结果。使用直接读书仪器通常评估工人对雾化烟雾二氧化硅和其他潜在的有害物质。这些仪器通常含有气溶胶预分离器旋风分离器,其通过分散聚集颗粒,可能导致读取值的变化。本研究通过比较使用手动浇注和自动搅拌的手动和自动操纵方法产生的三种空气熏蒸二氧化硅来调查这些旋风度对测量的影响。这些实验的结果表明,使用旋风分离的使用增加了纳米辐射二氧化硅的浓度。这可能归因于残留颗粒在旋风内部留在旋风内或附着在其颗粒分离过程中的壁上,这需要考虑,并且应在使用使用旋风器的仪器测量熏蒸二氧化硅的浓度时进行相应的校正。预分隔符。

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