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结构化土壤模型应用综述:b)农药运移。

A review of model applications for structured soils: b) Pesticide transport.

作者信息

Köhne John Maximilian, Köhne Sigrid, Simůnek Jirka

机构信息

Helmholtz Centre for Environmental Research--UFZ, Theodor-Lieser-Strasse 4, D-06120 Halle (Saale), Germany.

出版信息

J Contam Hydrol. 2009 Feb 16;104(1-4):36-60. doi: 10.1016/j.jconhyd.2008.10.003. Epub 2008 Oct 17.

Abstract

The past decade has seen considerable progress in the development of models simulating pesticide transport in structured soils subject to preferential flow (PF). Most PF pesticide transport models are based on the two-region concept and usually assume one (vertical) dimensional flow and transport. Stochastic parameter sets are sometimes used to account for the effects of spatial variability at the field scale. In the past decade, PF pesticide models were also coupled with Geographical Information Systems (GIS) and groundwater flow models for application at the catchment and larger regional scales. A review of PF pesticide model applications reveals that the principal difficulty of their application is still the appropriate parameterization of PF and pesticide processes. Experimental solution strategies involve improving measurement techniques and experimental designs. Model strategies aim at enhancing process descriptions, studying parameter sensitivity, uncertainty, inverse parameter identification, model calibration, and effects of spatial variability, as well as generating model emulators and databases. Model comparison studies demonstrated that, after calibration, PF pesticide models clearly outperform chromatographic models for structured soils. Considering nonlinear and kinetic sorption reactions further enhanced the pesticide transport description. However, inverse techniques combined with typically available experimental data are often limited in their ability to simultaneously identify parameters for describing PF, sorption, degradation and other processes. On the other hand, the predictive capacity of uncalibrated PF pesticide models currently allows at best an approximate (order-of-magnitude) estimation of concentrations. Moreover, models should target the entire soil-plant-atmosphere system, including often neglected above-ground processes such as pesticide volatilization, interception, sorption to plant residues, root uptake, and losses by runoff. The conclusions compile progress, problems, and future research choices for modelling pesticide displacement in structured soils.

摘要

在过去十年中,模拟农药在存在优先流(PF)的结构化土壤中运移的模型取得了显著进展。大多数PF农药运移模型基于两区概念,通常假设为一维(垂直)流和运移。有时会使用随机参数集来考虑田间尺度空间变异性的影响。在过去十年中,PF农药模型还与地理信息系统(GIS)和地下水流模型相结合,用于流域及更大区域尺度的应用。对PF农药模型应用的综述表明,其应用的主要困难仍然是PF和农药过程的适当参数化。实验解决策略包括改进测量技术和实验设计。模型策略旨在加强过程描述、研究参数敏感性、不确定性、反演参数识别、模型校准以及空间变异性的影响,同时生成模型模拟器和数据库。模型比较研究表明,经过校准后,PF农药模型在结构化土壤方面明显优于色谱模型。考虑非线性和动力学吸附反应进一步增强了对农药运移的描述。然而,结合通常可用的实验数据的反演技术在同时识别用于描述PF、吸附、降解和其他过程的参数方面能力往往有限。另一方面,未校准的PF农药模型目前的预测能力充其量只能对浓度进行近似(数量级)估计。此外,模型应针对整个土壤 - 植物 - 大气系统,包括地上过程,如农药挥发、截留、吸附到植物残体、根系吸收以及径流损失等常常被忽视的过程。这些结论总结了模拟结构化土壤中农药迁移的进展、问题和未来研究选择。

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