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Nitrate leaching from intensive organic farms to groundwater

机译:从集约化有机农场向地下水淋溶的硝酸盐

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摘要

It is commonly presumed that organic agriculture causes only minimal environmental pollution. In this study, we measured the quality of percolating water in the vadose zone, underlying both organic and conventional intensive greenhouses. Our study was conducted in newly established farms where the subsurface underlying the greenhouses has been monitored continuously from their establishment. Surprisingly, intensive organic agriculture relying on solid organic matter, such as composted manure that is implemented in the soil prior to planting as the sole fertilizer, resulted in significant down-leaching of nitrate through the vadose zone to the groundwater. On the other hand, similar intensive agriculture that implemented liquid fertilizer through drip irrigation, as commonly practiced in conventional agriculture, resulted in much lower rates of pollution of the vadose zone and groundwater. It has been shown that accurate fertilization methods that distribute the fertilizers through the irrigation system, according to plant demand, during the growing season dramatically reduce the potential for groundwater contamination from both organic and conventional greenhouses.
机译:通常认为有机农业仅造成最小​​的环境污染。在这项研究中,我们测量了渗水区渗滤水的质量,渗滤区是有机和常规密集温室的基础。我们的研究是在新建的农场中进行的,这些农场自建立以来就不断监测温室下面的地下土壤。出乎意料的是,依赖于固体有机物的集约化有机农业,例如在种植前作为唯一肥料在土壤中施肥的堆肥,导致硝酸盐通过渗流带向下大量渗入地下水。另一方面,类似于传统农业中普遍采用的通过滴灌实施液体肥料的集约化农业,导致渗流带和地下水的污染率大大降低。研究表明,在植物生长季节,根据植物的需求,通过灌溉系统分配肥料的精确施肥方法可以大大减少有机温室和常规温室对地下水的污染。

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