首页> 外文OA文献 >Etude de la variabilité des propriétés physiques et hydrodynamiques d'un sol argileux sous l'effet de conduites en protection intégrée contre les adventices
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Etude de la variabilité des propriétés physiques et hydrodynamiques d'un sol argileux sous l'effet de conduites en protection intégrée contre les adventices

机译:杂草综合防护作用下黏土土壤物理和水动力特性变化的研究

摘要

Integrated weed management (IWM)-based cropping systems are of great interest due to their significant reduction of herbicide inputs by using a complex combination of agricultural techniques. The main objective of our work was to contribute to the environmental dimension of the multi-criteria evaluation of IWM-based cropping systems which were set up since 2000 on the experimental domain of the National Institute for Agronomical Research (INRA) to Bretenière (France). The variability of physical and hydrodynamic soil properties involved in the transfer of water through the vadose zone was studied for the 5 cropping systems present on the experimental site (1 reference cropping system and 4 IWM-based cropping systems). The first section of our study consisted in studying the water retention of the tilled soil layers for the 5 cropping systems. Water retention values were compared between undisturbed and repacked soil samples in order to distinguish the part of the variability due to the intrinsic soil properties from the one induced by the agricultural practices. Our results show that the soil from cropping system without any herbicides, associating high clay content, average organic C content and intensive superficial tillage, may increase soil water retention in the tilled soil layer. The second section carried on the study of the annual and vertical variability of the near-saturated hydraulic conductivity, K(h). For this study, 3 IWM-based cropping systems (no-tilled cropping system and moderate to intensive tilled cropping systems) were characterized during 2 or 3 consecutive years and considering 3 depths including the soil tilled layer and the underlying no-tilled layer. The results showed no vertical variability of K(h). However, they highlighted the long-term effect of IWM-based cropping systems on K(h). Finally, the third section studied the soil water dynamics of 2 contrasted IWM-based cropping systems (no-tilled and zero herbicide cropping systems with intensive tillage) by using ,a hydraulic agricultural approach and by the means of the in situ characterization of soil matric potential and the measure of the amounts of water collected with wick lysimeters. This approach allowed the description of the water dynamics during the drainage season, the validation of the wick lysimeters functioning and the calculation of the surface contributing to water flows collected by the wick lysimeters. These promising results will need to be validated during forthcoming campaigns of measurement. All data collected provided constitute a first evaluation of the soil physical and hydraulic functioning of IWM-based cropping systems present on the experimental site. The established database will allow later the pursuit of work by modeling the water transfer and the transport of solutes, pesticides or other pollutants through the vadose zone of these IWM-based cropping systems.
机译:基于杂草治理(IWM)的综合种植系统非常受关注,因为它们通过使用复杂的农业技术组合大大减少了除草剂的投入。我们工作的主要目标是促进基于IWM的种植系统的多标准评估的环境影响,该评估系统于2000年在法国Bretenière的国家农学研究所(INRA)的实验范围内建立。研究了实验点上存在的5种耕作系统(1种参考耕作系统和4种基于IWM的耕作系统)对通过渗流区进行水流转移所涉及的物理和流体力学土壤特性的变异性。我们研究的第一部分包括研究5种耕作系统的耕作土壤层的保水率。比较了未扰动和重新装填的土壤样品的保水量,以区分由于土壤固有特性引起的部分变异与农业实践引起的差异。我们的结果表明,耕作系统中不含任何除草剂的土壤,与高粘土含量,平均有机碳含量和密集的浅层耕作联系在一起,可能会增加耕作土壤层中的土壤保水性。第二部分研究了近饱和导水率K(h)的年变化和垂直变化。在本研究中,连续2或3年对3种基于IWM的耕作系统(无倾斜耕作系统和中度至密集耕作耕作系统)进行了表征,并考虑了3个深度,包括土壤耕作层和下层无耕作层。结果表明,K(h)没有垂直变化。但是,他们强调了基于IWM的种植系统对K(h)的长期影响。最后,第三部分使用水力农业方法并通过土壤基质的原位表征,研究了两种基于IWM的对比耕作系统(密集耕作的免耕和零除草剂耕作系统)的土壤水分动力学。电势测渗仪测量水势并测量水量。这种方法可以描述排水季节的水动力学,验证芯测渗仪的功能以及计算有助于芯测渗仪收集的水流的表面。这些有希望的结果将需要在即将进行的测量运动中得到验证。提供的所有收集到的数据构成了对实验现场基于IWM的种植系统的土壤物理和水力功能的首次评估。建立的数据库将通过对这些基于IWM的种植系统的渗流带的水转移和溶质,杀虫剂或其他污染物的运输进行建模来允许以后的工作。

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