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Influence of macroporosity on preferential solute and colloid transport in unsaturated field soils

机译:大孔隙度对非饱和田间土壤优先溶质和胶体迁移的影响

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摘要

Transport of solutes and colloids in soils, particularly those subject to preferential flow along macropores, is important for assessing the vulnerability of shallow groundwater to contamination. The objective of this study was to investigate flow and transport phenomena for dissolved and colloid tracers during large infiltration events in partially saturated, macroporous soils. Controlled tracer infiltration tests were completed at two field sites in southern Ontario. A tension infiltrometer (TI) was used to infiltrate water with dissolved Brilliant Blue FCF dye simultaneously with 3.7 μm and 0.53 μm diameter fluorescent microspheres. Infiltration was conducted under maximum infiltration pressure heads ranging from-5.2 to -0.4 cm. All infiltration test sites were excavated to examine and photograph dye-stained flow patterns, map soil features, and collect samples for microsphere enumeration. Results indicated that preferential transport of dye and microspheres via macropores occurred when maximum pressure heads were greater than - 3.0 cm, and the corresponding infiltration rates exceeded 2.0 cm h~(-1).Dye and microspheres were detected at depths greater than 70 cm under the highest infiltration rates from both sites. Microsphere concentrations in the top 5-10 cm of soil decreased by more than two orders of magnitude relative to input concentrations, yet remained relatively constant with depth thereafter. There was some evidence for increased retention of the 3.7 μm microspheres relative to the 0.53 μm microspheres, particularly at lower infiltration pressures where straining and attachment mechanisms are most prevalent. Microspheres were observed within dye stained soil matrix surrounding individual macropores, illustrating the significance of capillary pressures in controlling the vertical migration of both tracers in the vicinity of the macropores. Overall, microsphere distributions closely followed the dye patterns, with microsphere concentrations at all depths directly related to the intensity (or concentration) of dye staining. It is concluded that the flow system influenced transport to a much greater degree than differences between dissolved and colloidal species, and hence a dye tracer could serve as a reasonable surrogate for colloid distributions in the vadose zone following individual infiltration events.
机译:溶质和胶体在土壤中的运输,特别是那些沿大孔优先流动的溶质和胶体,对于评估浅层地下水对污染的脆弱性很重要。这项研究的目的是调查在部分饱和的大孔土壤中大渗透事件期间溶解和胶体示踪剂的流动和传输现象。受控的示踪剂渗透测试已在安大略省南部的两个现场完成。张力渗透仪(TI)用于同时用溶解的Brilliant Blue FCF染料和3.7μm和0.53μm直径的荧光微球渗透水。在-5.2至-0.4cm的最大渗透压头下进行渗透。挖掘所有渗透测试地点,以检查和拍摄染有染料的流动模式,绘制土壤特征图,并收集样品进行微球计数。结果表明,当最大压头大于-3.0 cm时,染料和微球通过大孔发生优先迁移,相应的渗透速率超过2.0 cm h〜(-1);在低于70 cm的深度处检测到染料和微球。两个站点的渗透率最高。相对于输入浓度,土壤表层5-10 cm处的微球浓度降低了两个数量级以上,但此后随深度保持相对恒定。有一些证据表明,相对于0.53μm微球,3.7μm微球的保留增加了,特别是在较低的渗透压力下,其中应变和附着机制最为普遍。在单个大孔周围的染有染料的土壤基质中观察到微球,说明毛细管压力在控制两个示踪剂在大孔附近的垂直迁移中的重要性。总体而言,微球的分布紧密地遵循染料模式,所有深度的微球浓度都直接与染料染色的强度(或浓度)相关。结论是,流动系统对运输的影响程度远大于溶解和胶态物质之间的差异,因此染料示踪剂可以作为渗漏事件后渗流区内胶体分布的合理替代物。

著录项

  • 来源
    《Journal of Contaminant Hydrology》 |2009年第2期|45-57|共13页
  • 作者单位

    Department of Earth and Environmental Sciences, University of Waterloo, Waterloo, Ontario, Canada N2L 3G1;

    Department of Earth and Environmental Sciences, University of Waterloo, Waterloo, Ontario, Canada N2L 3G1;

    Department of Earth and Environmental Sciences, University of Waterloo, Waterloo, Ontario, Canada N2L 3G1;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    macropores; infiltration; colloid transport; dye tracer; microspheres; vadose zone;

    机译:大孔;浸润;胶体运输染料示踪剂微球渗流带;

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