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冷冻和解冻对部分冻结土壤中水流和 MCPA 淋洗的影响。

The effect of freezing and thawing on water flow and MCPA leaching in partially frozen soil.

机构信息

Norwegian Institute of Bioeconomy Research (NIBIO), Division of Biotechnology and Plant Health, Department of Pesticides and Natural Products Chemistry, P.O. Box 115, NO-1431 Ås, Norway; Norwegian University of Life Sciences, Faculty of Bio Sciences, Department of Plant Sciences, P.O. Box 5003, N-1432 Ås, Norway.

Norwegian Institute of Bioeconomy Research (NIBIO), Division of Environment and Natural Resources, Department of Soil and Land Use, P.O. Box 115, NO-1431 Ås, Norway.

出版信息

J Contam Hydrol. 2018 Dec;219:72-85. doi: 10.1016/j.jconhyd.2018.11.003. Epub 2018 Nov 13.

Abstract

Limited knowledge and experimental data exist on pesticide leaching through partially frozen soil. The objective of this study was to better understand the complex processes of freezing and thawing and the effects these processes have on water flow and pesticide transport through soil. To achieve this we conducted a soil column irrigation experiment to quantify the transport of a non-reactive tracer and the herbicide MCPA in partially frozen soil. In total 40 intact topsoil and subsoil columns from two agricultural fields with contrasting soil types (silt and loam) in South-East Norway were used in this experiment. MCPA and bromide were applied on top of all columns. Half the columns were then frozen at -3 °C while the other half of the columns were stored at +4 °C. Columns were then subjected to repeated irrigation events at a rate of 5 mm artificial rainwater for 5 h at each event. Each irrigation was followed by 14-day periods of freezing or refrigeration. Percolate was collected and analysed for MCPA and bromide. The results show that nearly 100% more MCPA leached from frozen than unfrozen topsoil columns of Hov silt and Kroer loam soils. Leaching patterns of bromide and MCPA were very similar in frozen columns with high concentrations and clear peaks early in the irrigation process, and with lower concentrations leaching at later stages. Hardly any MCPA leached from unfrozen topsoil columns (0.4-0.5% of applied amount) and concentrations were very low. Bromide showed a different flow pattern indicating a more uniform advective-dispersive transport process in the unfrozen columns with higher concentrations leaching but without clear concentration peaks. This study documents that pesticides can be preferentially transported through soil macropores at relatively high concentrations in partially frozen soil. These findings indicate, that monitoring programs should include sampling during snow melt or early spring in areas were soil frost is common as this period could imply exposure peaks in groundwater or surface water.

摘要

关于部分冻结土壤中农药淋溶的知识和实验数据有限。本研究的目的是更好地了解冻结和解冻的复杂过程,以及这些过程对土壤中水流和农药运移的影响。为此,我们进行了土壤柱灌溉实验,以量化非反应示踪剂和除草剂 MCPA 在部分冻结土壤中的运移。总共使用了来自挪威东南部两个具有不同土壤类型(粉质土和壤土)的农业用地的 40 个完整表土和底土柱进行了这项实验。在所有柱的顶部施加 MCPA 和溴化物。然后,将一半的柱冷冻在-3°C,而另一半柱储存在+4°C。然后,将柱以 5mm 人工雨水的速率进行重复灌溉,每次灌溉持续 5 小时。每次灌溉后,进行 14 天的冻结或冷藏。收集并分析渗滤液中的 MCPA 和溴化物。结果表明,在 Hov 粉质土和 Kroer 壤土的冻结和未冻结表土柱中,MCPA 的淋溶量几乎增加了 100%。在冷冻柱中,溴化物和 MCPA 的淋溶模式非常相似,在灌溉过程的早期,浓度较高且有明显的峰值,而在后期则浓度较低。在未冻结的表土柱中,几乎没有 MCPA 淋溶(施用量的 0.4-0.5%),浓度非常低。溴化物表现出不同的流动模式,表明在未冻结的柱中,由于浓度较高但没有明显的浓度峰值,因此存在更均匀的对流弥散运移过程。本研究证明,在部分冻结土壤中,农药可以通过土壤大孔以相对较高的浓度优先运移。这些发现表明,在土壤冻结很常见的地区,监测计划应包括在雪融或早春期间进行采样,因为这一时期可能意味着地下水或地表水的暴露峰值。

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