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Biodegradation, sorption and transport of 2,4-D under saturated and unsaturated soil conditions

机译:2,4-D在饱和和非饱和土壤条件下的生物降解,吸附和迁移

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摘要

Researchers have traditionally viewed sorption, degradation and transport as separate processes and only recently have these processes viewed as coupled. 2,4-D was chosen as a model system to study the interaction between these processes. A series of laboratory batch and column experiments with a sandy loam soil were conducted to determine the relative contributions of sorption and degradation to transport of 2,4-D under both saturated and unsaturated conditions. The sorption contribution to 2,4-D transport was not significant under saturated (Kd = 0.249 mg/g) nor unsaturated conditions (Kd = 0.566 mg/g). Degradation however, was very significant, specially under unsaturated conditions where the estimated first order biodegradation rate (μ) constant was 4.39 d-1. Rate constants under the saturated transport experiment were restricted by oxygen limitations. There was an order of magnitude difference between μ of batch and column experiments which were attributed to differences in aeration and mixing conditions.
机译:传统上,研究人员将吸附,降解和运输视为独立的过程,直到最近才将这些过程视为耦合的。选择2,4-D作为模型系统来研究这些过程之间的相互作用。在沙质壤土上进行了一系列实验室分批和柱实验,以确定在饱和和不饱和条件下吸附和降解对2,4-D运移的相对贡献。在饱和(Kd = 0.249 mg / g)或不饱和条件(Kd = 0.566 mg / g)下,对2,4-D传输的吸附贡献均不明显。然而,降解非常显着,特别是在不饱和条件下,其中估计的一级生物降解率(μ)常数为4.39 d-1。饱和输运实验下的速率常数受氧限制。批次实验和色谱柱实验之间的差异存在一个数量级的差异,这归因于曝气和混合条件的差异。

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