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Size determination of diesel soot particles using flow and sedimentation field-flow fractionation

机译:利用流场和沉降场-流分馏确定柴油机烟尘颗粒的尺寸

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The applicability of field-flow fractionation (FFF) was investigated for determination of size and size distribution of diesel soot particles. A sample preparation procedure was developed for FFF analysis where soot particles are recovered from filters in an ethanol bath sonicator, and then they are dispersed in water containing 0.05% Triton X-100 and 0.02% NaN3. Mean diameters obtained from sedimentation FFF (SdFFF) and now FFF (FlFFF) agree well with each other and are in good agreement with diameters obtained from photon correlation spectroscopy (PCS) and scanning electron microscopy. The relative error was less than 11%, Data show diesel soot particles have broad size distribution's ranging from 0.05 up to similar to 0.5 mu m with the mean diameters between 0.1 and 0.2 pm. The use of FlFFF is more convenient as FlFFF fractograms can be converted directly to size distributions, while the conversion of the SdFFF fractogram needs the particle density information. The density needed for SdFFF analysis was obtained by combining the SdFFF retention data with the PCS size data. For samples whose density is known, SdFFF may be more useful as SdFFF provides a wider dynamic range than FlFFF under constant field strength. [References: 28]
机译:为了确定柴油机烟尘颗粒的大小和大小分布,研究了场流分级分离(FFF)的适用性。开发了用于FFF分析的样品制备程序,其中从乙醇浴超声仪中的过滤器中回收烟尘颗粒,然后将其分散在含有0.05%Triton X-100和0.02%NaN3的水中。从沉降FFF(SdFFF)和现在的FFF(FlFFF)获得的平均直径彼此很好地一致,并且与从光子相关光谱法(PCS)和扫描电子显微镜获得的直径非常一致。相对误差小于11%。数据显示,柴油机烟灰颗粒的粒径分布范围很广,从0.05到近似于0.5微米,平均直径在0.1到0.2 pm之间。 FlFFF的使用更为方便,因为FlFFF分数图可以直接转换为尺寸分布,而SdFFF分数图的转换则需要粒子密度信息。 SdFFF分析所需的密度是通过将SdFFF保留数据与PCS大小数据结合起来获得的。对于密度已知的样品,SdFFF可能更有用,因为在恒定场强下,SdFFF提供的动态范围要比FlFFF宽。 [参考:28]

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