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首页> 外文期刊>Journal of Hydrology >Characterizing unsaturated solute transport by simultaneous use of dye and bromide
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Characterizing unsaturated solute transport by simultaneous use of dye and bromide

机译:同时使用染料和溴化物表征不饱和溶质的迁移

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Variability in solute transport properties in the unsaturated zone is of growing concern due to environmental hazards. By combining dye and salt tracers, a detailed description of the solute transport can be made in both time and space. In this paper, qualitative and quantitative effects of preferential flow were investigated in a sandy loam. The experimental site was equipped with 64 TDR probes. The plot was irrigated with pure water for 12 days to achieve steady state conditions. Then the plot was irrigated with a solution containing a dye tracer and KBr over three days. During the experiment, bromide concentration and soil moisture were measured hourly by the TDR probes. On the day following the last day of irrigation, a trench was dug and 14 vertical slices were excavated and photographed. A Sigma Probe (SP) was used to investigate the bromide concentration in an individual finger. The SP is a new dielectric measuring technique that gives readings of soil solution electrical conductivity. The dye photographs provided visualization of finger flow. Horizontal flow was evident in the E horizon at 0.3-0.4 m depth. Also the bromide concentration was elevated at these depths. The occurrences of high bromide as measured by the SP concentration corresponded fairly well to the dye patterns. The visible lower limit of dye stained soil corresponded to a bromide concentration of 0.10. A comparison between the bromide and dye penetration showed that the retardation factor of the dye as compared to bromide was 1.5. This is within the range reported by other authors and shows that the SP can be a useful tool to investigate the retardation of dyes as compared to bromide. (C) 2003 Elsevier B.V. All rights reserved. [References: 47]
机译:由于环境危害,在不饱和区中溶质输运性质的变化日益引起人们的关注。通过结合使用染料和盐示踪剂,可以在时间和空间上对溶质的迁移进行详细描述。本文研究了砂壤土中优先流动的定性和定量影响。实验现场配备了64个TDR探针。用纯水灌溉小区12天,以达到稳定状态。然后在三天内用含有染料示踪剂和KBr的溶液灌溉样地。在实验过程中,每小时用TDR探针测量溴化物浓度和土壤湿度。在灌溉的最后一天的第二天,挖了一条沟渠,并开挖了14个垂直切片并拍照。使用Sigma探针(SP)来研究单个手指中的溴化物浓度。 SP是一种新的介电测量技术,可以读取土壤溶液的电导率。染料照片提供了手指流动的可视化。在E层深度为0.3-0.4 m处,水平流明显。在这些深度处,溴化物的浓度也升高了。通过SP浓度测得的高溴化物的出现与染料图案相当吻合。染料染污土壤的可见下限对应于0.10的溴化物浓度。溴化物和染料渗透之间的比较表明,与溴化物相比,染料的延迟因子为1.5。这在其他作者报告的范围内,表明SP与溴化物相比可作为研究染料阻滞作用的有用工具。 (C)2003 Elsevier B.V.保留所有权利。 [参考:47]

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