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Stability Of Titania Nanoparticles In Soil Suspensions And Transport In Saturated Homogeneous Soil Columns

机译:二氧化钛纳米颗粒在土壤悬浮液和饱和均质土壤柱中的运输稳定性

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The stability of TiO_2 nanoparticles in soil suspensions and their transport behavior through saturated homogeneous soil columns were studied. The results showed that TiO_2 could remain suspended in soil suspensions even after settling for 10 days. The suspended TiO_2 contents in soil suspensions after 24 h were positively correlated with the dissolved organic carbon and clay content of the soils, but were negatively correlated with ionic strength, pH and zeta potential. In soils containing soil particles of relatively large diameters and lower solution ionic strengths, a significant portion of the TiO_2 (18.8-83.0%) readily passed through the soils columns, while TiO_2 was significantly retained by soils with higher clay contents and salinity. TiO_2 aggregate sizes in the column outflow significantly increased after passing through the soil columns. The estimated transport distances of TiO_2 in some soils ranged from 41.3 to 370 cm, indicating potential environmental risk of TiO_2 nanoparticles to deep soil layers.
机译:研究了TiO_2纳米颗粒在土壤悬浮液中的稳定性及其在饱和均质土中的迁移行为。结果表明,即使沉降10天,TiO_2仍可以悬浮在土壤悬浮液中。 24 h后土壤悬浮液中悬浮的TiO_2含量与土壤中溶解的有机碳和黏土含量呈正相关,与离子强度,pH和ζ电位呈负相关。在包含相对较大直径和较低溶液离子强度的土壤颗粒的土壤中,很大一部分TiO_2(18.8-83.0%)容易通过土壤柱,而TiO_2被黏土含量和盐分较高的土壤显着保留。穿过土壤柱后,柱流出物中的TiO_2聚集体尺寸显着增加。某些土壤中TiO_2的估计迁移距离范围为41.3至370 cm,表明TiO_2纳米颗粒对深层土壤的潜在环境风险。

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