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Best Management Practices for Minimizing Nitrate Leaching from Container-Grown Nurseries

机译:最大限度地减少集装箱种植苗圃中硝酸盐浸出的最佳管理实践

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摘要

Containerized plant production represents an extremely intensive agricultural practice; 40,000 to 300,000 containers may occupy one acre of surface area to which a large amount of chemical fertilizer is applied. Currently, recommended fertilizer application rates for the production of containerized nursery ornamental plants are in excess of plant requirements, and up to 50% of the applied fertilizers may run off or be leached from containers. Among the nutrients leached or allowed to runoff, nitrogen (N) is the most abundant and is of major concern as the source of ground and surface water pollution. In this report, current N fertilizer application rates for different container-grown nursery ornamental plants, the amount of nitrate leaching or runoff from containers, and the potential for nitrate contamination of ground and surface water are discussed. In contrast, our best N management practices include: (1) applying fertilizers based on plant species need; (2) improving potting medium's nutrient holding capacity using obscure mineral additives; (3) using controlled-release fertilizers; and (4) implementing zero runoff irrigation or fertigation delivery systems that significantly reduce nitrate leaching or runoff in containerized plant production and encourage dramatic changes in N management.
机译:集装箱化植物生产代表了一种高度集约化的农业实践; 40,000到300,000个容器可能占用一英亩的表面积,并在其中施用了大量的化肥。当前,用于生产容器化苗圃观赏植物的推荐肥料施用量超过了植物的需求,并且高达50%的施用肥料可能会流失或从容器中浸出。在淋溶或径流的养分中,氮(N)含量最高,是引起地下水和地表水污染的主要因素。在本报告中,讨论了不同容器种植的苗圃观赏植物当前的氮肥施用量,容器中硝酸盐的淋失或径流量以及地下水和地表水硝酸盐污染的可能性。相反,我们最好的氮素管理措施包括:(1)根据植物种类的需要施用肥料; (2)使用晦涩的矿物添加剂提高盆栽培养基的养分吸收能力; (3)使用控释肥料; (4)实施零径流灌溉或施肥输送系统,以大大减少集装箱工厂生产中的硝酸盐淋失或径流,并鼓励氮肥管理发生重大变化。

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