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NITROGEN LEACHING IN AN AQUATIC TERRESTRIAL TRANSITION ZONE

机译:氮气浸出在水生陆地过渡带

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Large parts of East Germany are characterised by sandy soils with a high hydraulic conductivity. The risk of nitrogen leaching and groundwater pollution may be minimised by organic farming, which has expanded in Germany during recent years. The study was conducted on an organically farmed rye field next to a lake in the state of Brandenburg between 2002 and 2004. In order to show how far organic farming may affect lake water quality, soil inorganic nitrogen (CaCl_2 extraction) and denitrification (acetylene inhibition method) were studied along an aquatic terrestrial transition zone (A = field site: 5 m above water level, B = field site: 1 m above water level, C = riparian zone with macrophytes: 0.5 m above water level). Although the field did not receive any organic and mineral fertiliser there was a nitrogen leaching from the field to the groundwater caused by the weather. Nitrogen loss during the winter was 29 kg N ha~(-1) y~(-1) and 12 kg N ha~(-1) y~(-1) in 2002/03 and 2003/04, respectively. Deviation between the two years seemed to be caused by great differences in precipitation. No nitrogen loss was observed from a control site. High denitrification was measured at sites B and C indicating an efficient nitrogen removal capacity within the riparian buffer zone.
机译:东德国大部分地区的特点是具有高液压导电性的沙质土壤。有机耕作可能最小化氮浸出和地下水污染的风险,近年来在德国扩展。该研究在2002年至2004年之间的一个有机养殖的Rye领域进行了在一个有机养殖的Rye领域,展示了2002年至2004年之间的湖泊。为了展示有机农业可能影响湖水质量,土壤无机氮(CaCl_2萃取)和反硝化(乙炔抑制)方法沿着水生殖地过渡区(A =现场:5米以上水位,B =现场:水位高出1米,C =山脉带宏观物质:水位高0.5米)。虽然该领域未收到任何有机和矿物肥料,但由于天气引起的地下水,含有氮气浸出。冬季氮气损失分别为2002/03和2003/04的29kg n Ha〜(-1)y〜(-1)和12kg n〜(-1)y〜(-1)。两年之间的偏差似乎是由于降水差异差异。从对照部位观察到没有氮气损失。在位点B和C的位点测量高脱氮,表明河流缓冲区内有效的氮去除能力。

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