Geology Department, School of Natural Sciences, Trinity College Dublin, Dublin 2, Ireland.
Sci Total Environ. 2012 Nov 1;438:144-53. doi: 10.1016/j.scitotenv.2012.08.043. Epub 2012 Sep 13.
Application of over-winter green cover (e.g. cover crops) as a measure for reducing nitrate losses from tillage land has been frequently investigated, especially in the unsaturated zone. Monitoring of groundwater is less common in these studies. Studies on groundwater responses to different land treatments can be challenging because they can be influenced by various conditions, such as recharge, seasonal variations, and aquifer properties, often occurring at different time scales than surface water processes. The aim of this study was to evaluate groundwater nitrate (NO(3)(-)N) and dissolved organic carbon (DOC) concentration responses to different over-winter green covers: mustard, natural regeneration and no cover. A field experiment was designed and run for three years on tillage land underlain by a vulnerable sand and gravel aquifer in the south-east of Ireland. Results showed that over-winter green cover growth on tillage land can be an effective measure to reduce groundwater NO(3)(-)N concentrations. A significant decrease in groundwater NO(3)(-)N concentrations was observed under the mustard cover compared to no cover. All treatments, including no cover, showed a decline in groundwater NO(3)(-)N concentrations over time. A significant increase in groundwater DOC was also observed under the mustard cover. Although the overall groundwater DOC concentrations were low, the increased DOC occurrence in groundwater should be accounted for in carbon balances and could potentially enhance groundwater denitrification in cases where aquifer conditions may favour it.
应用越冬绿肥(如覆盖作物)作为减少耕作土地硝酸盐损失的措施已被广泛研究,特别是在不饱和带。这些研究中对地下水的监测较少。不同土地处理对地下水的响应研究具有挑战性,因为它们可能受到各种条件的影响,如补给、季节性变化和含水层特性,这些条件通常发生在与地表水过程不同的时间尺度上。本研究的目的是评估不同越冬绿肥(芥菜、自然再生和无覆盖)对地下水硝酸盐(NO3-N)和溶解有机碳(DOC)浓度的响应。在爱尔兰东南部一个脆弱的砂卵石含水层下的耕作地上进行了为期三年的田间试验设计和运行。结果表明,耕作地上的越冬绿肥生长可以是减少地下水 NO3-N 浓度的有效措施。与无覆盖相比,芥菜覆盖下的地下水 NO3-N 浓度显著降低。所有处理,包括无覆盖,随着时间的推移,地下水 NO3-N 浓度都呈下降趋势。芥菜覆盖下的地下水 DOC 也显著增加。尽管地下水 DOC 浓度总体较低,但应考虑到地下水 DOC 增加对碳平衡的影响,并且在含水层条件可能有利于地下水反硝化的情况下,这种增加可能会增强地下水反硝化。