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Size Fractionation And Characterization Of Nanocolloidal Particles In Soils

机译:土壤中纳米胶体颗粒的大小分级和表征

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A protocol was developed to fractionate soil particles down to the nanocolloid scale by combining sieving, sedimentation, centrifugation, and cross-flow filtration (CFF). The validity of the method and the performance of the CFF system were tested by characterizing fractions using laser granul-ometry, electron microscopy, and chemical analysis. The 0.1-μm-pore-size membrane CFF system effectively retained nanocolloids (<0.1 μm) as shown by laser granulometry and observed directly by transmission electron microscopy. However, environmental scanning electron microscopy images of freeze-dried colloids were very different from their TEM counterparts, suggesting that sample preparation influenced microscopy imaging. Chemical analysis of Cu, Cd, and organic carbon in each fraction showed that the concentrations of these components increased as particle size decreased, indicating colloids and nanocolloids play an important role in retaining trace metals. Particle-size fractionation combined with chemical analysis and electron microscopy can provide insight into the nature and properties of nanocolloids in soil.
机译:通过组合筛分,沉降,离心和错流过滤(CFF),开发了将土壤颗粒分级分离至纳米胶体规模的方案。通过使用激光粒度分析,电子显微镜和化学分析表征馏分,测试了该方法的有效性和CFF系统的性能。孔径为0.1μm的膜CFF系统可有效保留纳米胶体(<0.1μm),如激光粒度仪所示,并通过透射电子显微镜直接观察。但是,冻干胶体的环境扫描电子显微镜图像与TEM图像有很大不同,表明样品制备会影响显微镜成像。对每个馏分中的Cu,Cd和有机碳的化学分析表明,这些成分的浓度随着粒径的减小而增加,表明胶体和纳米胶体在保留痕量金属方面起着重要作用。粒度分级结合化学分析和电子显微镜可以提供对土壤中纳米胶体的性质和性质的了解。

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