首页> 外文期刊>Science of the total environment >Spatial and temporal trends in nitrate concentrations in the River Derwent, North Yorkshire, and its need for NVZ status
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Spatial and temporal trends in nitrate concentrations in the River Derwent, North Yorkshire, and its need for NVZ status

机译:北约克郡德文特河硝酸盐浓度的时空趋势及其对NVZ地位的需求

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Long-term spatial and temporal variations in nitrate-N concentrations along the River Derwent have been examined using Environment Agency data to investigate the relative importance of impacts of atmospheric N deposition, land use, and changes in management. Where moorland and rough grazing dominate upstream of Forge Valley and Maiton, over the 20 years since 1988 mean nitrate-N concentrations were initially increasing significantly, but are now levelling off, with peaks at ca. 4.5 mg Nl~(-1). As expected in a catchment in a nitrate vulnerable zone (NVZ), more agricultural land use increases mean nitrate concentrations and the occurrence of distinct winter maxima, though the latter have become markedly less pronounced since 2001. It is suggested that this improvement is a combined effect of imposition of NVZ designation in the lower reaches in 2002, animal number declines associated with the Foot & Mouth outbreak in the region in 2001, and the impact of farmers' responses to increasing fertilizer prices and to beneficial pollutant mineral N inputs from the atmosphere. Minima in nitrate-N concentrations in summer have become much less pronounced over the past decade and are typically ca. 60% higher in concentration than a decade earlier. This probably is attributable to the effects of pollutant-N leaching to depths in soil below the rooting zone when near surface biotic uptake is low in winter. The resultant N mineralization in summer enhances summer nitrate leaching. The Derwent is a relatively clean river; however, its entire catchment was designated justifiably as a NVZ in January 2009, apparently based upon a projected 95 percentile nitrate-N concentration > 11.29 mg l~(-1) for 2010 based upon forward projection of data from 1990 to 2004 for Derwent Bridge. A survey of water quality in March 2009 showed that some agricultural areas are still making a significant contribution to the total nitrate level well downstream, at the point responsible for implementation of NVZ status. At 3 of the 29 sites sampled, nitrate concentration exceeded 60 mg l~(-1).
机译:使用环境署的数据研究了德文特河沿岸硝酸盐氮浓度的长期时空变化,以调查大气氮沉降,土地利用和管理变化的影响的相对重要性。自1988年以来的20年间,在Forge山谷和Maiton的上游,高沼地和粗草场占主导地位,这意味着硝酸盐-N的浓度最初显着增加,但现在趋于平稳,峰值约为。 4.5 mg Nl〜(-1)。正如在硝酸盐脆弱区(NVZ)的流域中所预期的那样,更多的农业土地使用增加了平均硝酸盐浓度和明显的冬季最大值的发生,尽管后者自2001年以来变得明显不那么明显。建议将这种改进综合起来2002年在下游实施NVZ命名的影响,与2001年该地区口蹄疫暴发有关的动物数量减少以及农民对化肥价格上涨和大气中有益污染物矿物质氮输入的反应的影响。在过去的十年中,夏季硝酸盐氮的最低浓度已经变得不那么明显了,通常大约为。与十年前相比,集中度提高了60%。当冬季在近地表生物的吸收较低时,这可能归因于污染物氮的淋溶对生根区以下土壤深度的影响。夏季产生的氮矿化作用增强了夏季硝酸盐的浸出。德文特河比较干净。但是,其整个流域在2009年1月被合理地指定为NVZ,这显然是基于对1990年至2004年Derwent Bridge数据的前瞻性预测,到2010年硝酸盐氮的95%百分含量> 11.29 mg l〜(-1) 。 2009年3月的水质调查显示,某些农业地区仍对下游的总硝酸盐水平做出了重大贡献,这是实施NVZ地位的关键点。在29个采样点中的3个采样点,硝酸盐浓度超过60 mg l〜(-1)。

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