首页> 外文OA文献 >Water Pollution Monitoring Of Nitrates Leaching From Agricultural Fields With Industrial Crop Harvesting Practices. The Belgian Case Of Onsite Lysimeters As A Monitoring Tool.
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Water Pollution Monitoring Of Nitrates Leaching From Agricultural Fields With Industrial Crop Harvesting Practices. The Belgian Case Of Onsite Lysimeters As A Monitoring Tool.

机译:通过工业作物收获实践监测从农田中渗出的硝酸盐的水污染。比利时现场测渗仪案例作为监视工具。

摘要

The European Nitrate Directive (91/676/CEE) aims at moderating or preventing water pollution from nitrates released by agricultural practices. The Belgian Walloon region transposed it into law and initiated a Sustainable Nitrogen Management Program in 2002 (also called PGDA in French). The non-profit association NITRAWAL amongst others, is in charge of providing support to farmers to implement and respect this program. GRENeRA is one of the organizations designated for scientific studies. In this frame, GRENeRA and its partners implemented six lysimeters in agricultural open fields, operated under real conditions of industrial harvest crops, especially vegetables. The lysimeters are used as follow up tools to monitor and quantify the amount of nitrates leaching beyond the root zone towards underground water reserves. This study demonstrates that lysimeters are efficient and permit the collection of representative samples of seepage water. On a quality stand point, nitrate content combined with data related to agricultural practices, fertilisation rates applied and advised, climate, the defined environmental indicator (APL) provide a global approach to link agricultural practices and underground water protection from nitrate pollution. The lysimeters validate the reliability of the environmental indicator (APL) with the nitrate content in leaching water, which will not be uptaken by the next crop. Unfortunately, it is also demonstrated that even when the nitrogen management is respectful of the current legislation, the goal to comply with the targeted standards of water quality is not ensured. The lysimeter tool clearly show that the respect of seepage water quality standards issued from industrial agriculture does not have to be considered per crop but rather from an integrated and global perspective of the complete crop sequence and rotations, in respect with best agricultural practices, reasonable fertilisation rates, inset crops, etc., for each individual crop being part of the overall rotation. Some favourable and non favourable crop sequences with respect to nitrates content of underground water are summarized. Experiments are in progress on crop sequence evaluation and fertilisation levels and recommendations for Belgian Walloon industrial crops and their associated impacts on the leaching water quality and nitrate content collected by lysimeters.
机译:欧洲硝酸盐指令(91/676 / CEE)旨在减轻或防止农业实践释放的硝酸盐对水的污染。比利时瓦隆地区将其转化为法律,并于2002年启动了可持续氮管理计划(在法语中也称为PGDA)。非营利协会NITRAWAL等负责向农民提供支持,以实施和尊重该计划。 GRENeRA是指定进行科学研究的组织之一。在此框架下,GRENeRA及其合作伙伴在农业露天场所实施了六台测渗仪,这些测井仪是在工业丰收作物尤其是蔬菜的实际条件下运行的。溶渗仪用作跟踪工具,以监测和量化从根部区域流向地下水储备的硝酸盐含量。这项研究表明溶渗仪是有效的并且可以收集渗水的代表性样品。从质量的角度来看,硝酸盐含量与有关农业实践,施肥和建议的施肥率,气候以及定义的环境指标(APL)的数据相结合,提供了一种将农业实践与地下水保护免受硝酸盐污染联系起来的全球方法。溶渗仪使用浸出水中的硝酸盐含量来验证环境指示剂(APL)的可靠性,下一批作物不会吸收该硝酸盐含量。不幸的是,这也表明,即使氮管理符合现行法规,也无法确保达到目标水质标准的目标。溶渗仪工具清楚地表明,不必对每种农作物都考虑对工业农业发布的渗水水质标准的尊重,而是从完整的农作物序列和轮作的综合和全球角度出发,就最佳农业实践,合理施肥而言比率,插穗作物等,这是整个轮作的一部分。总结了有关地下水硝酸盐含量的一些有利和不利的作物序列。比利时瓦隆工业作物的作物序列评估和施肥水平以及建议及其对沥滤仪收集的浸出水质量和硝酸盐含量的相关影响的实验正在进行中。

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