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Physical characteristics of nanoparticles emitted during drilling of silica based polyamide 6 nanocomposites

机译:二氧化硅聚酰胺6纳米复合材料钻井过程中纳米粒子的物理特性

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During the past decade, polymer nanocomposites have emerged as a novel and rapidly developing class of materials and attracted considerable investment in research and development worldwide. However, there is currently a lack of information available in the literature on the emission rates of particles from these material. In this study, real-time characterization of the size distribution and number concentration of sub-micrometer-sized particles (5.6-512 nm) emitted from polyamide 6 nanocomposites during mechanical drilling was made. For the first time, four different silica based filler of commonly use were assessed. Further, the respective emission rates were determined based on the particle population and the time. The measurements showed that the particle emission rates ranged from 1.16E+07 (min~(-1)) to 1.03E+09 (min~(-1)) and that the peak diameters varied from 29.6 to 75.1 nm. Airborne particles in the nanometer range (11.1-46.8 nm), in the ultrafine range (51.3-101.1 nm) and in the accumulation mode range (111.9-521 nm) accounted for 34.1% to 76.6%, 8.3% to 47% and 4.1% to 24.2% of the total emission rates, respectively, depending on the type of filler. Additionally, deposited particles were sampled and characterized, to explore any possible correlation between deposited and airborne particles. The result clearly showed that with increasing airborne particle concentration the deposit particle concentration decreased and vice verse.
机译:在过去的十年中,聚合物纳米复合材料作为一种新颖且迅速发展的材料类,并吸引了全球研究和开发的相当大投资。然而,目前在文献中缺乏关于这些材料的颗粒的排放率的信息。在该研究中,制造了在机械钻孔期间从聚酰胺6纳米复合材料发射的亚微米尺寸粒度(5.6-512nm)的尺寸分布和数量浓度的实时表征。首次,评估了四种不同的二氧化硅填料的常用填料。此外,基于颗粒种群和时间测定各自的排放率。测量结果表明,颗粒发射速率范围为1.16e + 07(min〜(-1))至1.03e + 09(min〜(-1)),峰直径从29.6变化到75.1nm。纳米范围(11.1-46.8nm)中的空气传播颗粒,在超细范围(51.3-101.1nm)和累积模式范围内(111.9-521纳米)占34.1%至76.6%,8.3%至47%和4.1分别取决于填料类型的总排放率的%〜24.2%。另外,取样沉积的颗粒并表征,以探讨沉积和空气颗粒之间的任何可能的相关性。结果清楚地表明,随着空中颗粒浓度的增加,沉积物颗粒浓度降低和副韵。

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