Effect of Rock Fragments on Tracer Transport in Broadleaved and Coniferous Forest Soils: Column Study

Pascal Nsengumuremyi, J. Cui, Ruxing Yang
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引用次数: 0

Abstract

This study investigated the effect of rock fragments on tracer transport in broadleaved and coniferous forest soils from the 0 - 100 cm depth of Gongga Mountain in eastern margin of Qinghai Tibetan Plateau. Using repacked soil columns (20 cm in height and 10 cm in diameter) with different rock fragments contents (0%, 5%, and 15% in v/v), breakthrough curves of bromide (as non-reactive tracer) were obtained under saturated condition. A two-region model was applied and the parameters were estimated by inverse modeling. Results show that with increasing rock fragment content the dispersivity (λ) generally increased while the mobile-immobile partition coefficient (β) and the mass transfer coefficient (ω) decreased. The presence of rock fragments led to an increase in the fraction of immobile domain as well as soil tortuosity. A plausible explanation is that the soil beneath the rock fragments behaved as immobile domain and soil-rock interfaces could serve as preferential flow paths.
岩石碎块对阔叶林和针叶林土壤示踪剂迁移的影响:柱状研究
本文研究了青藏高原东缘贡嘎山0 ~ 100 cm阔叶林和针叶林土壤中岩石破碎对示踪剂迁移的影响。采用高20 cm、直径10 cm的重填土柱(岩石破碎块含量为0%、5%和15% v/v),获得了溴化物(非反应性示踪剂)在饱和条件下的穿透曲线。采用双区域模型,通过逆建模对参数进行估计。结果表明:随着岩石破碎块含量的增加,分散度(λ)普遍增大,可动-不可动分配系数(β)和传质系数(ω)减小;岩石碎块的存在导致固结区比例增大,土体弯曲度增大。一种合理的解释是,岩石碎块下的土壤表现为不动域,土-岩界面可能是优先流动路径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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