Nitrogen losses from the soil/plant system: a review

被引:950
作者
Cameron, K. C. [1 ]
Di, H. J. [1 ]
Moir, J. L. [1 ]
机构
[1] Lincoln Univ, Ctr Soil & Environm Res, Canterbury, New Zealand
关键词
Ammonia; animal excreta; denitrification; emissions; environment; fertiliser; inhibitors; leaching; nitrate; nitrification; nitrogen; nitrous oxide; volatilisation; NITRIFICATION INHIBITOR DICYANDIAMIDE; AMMONIA-OXIDIZING BACTERIA; DAIRY SHED EFFLUENT; 3,4-DIMETHYLPYRAZOLE PHOSPHATE DMPP; NITRATE LEACHING LOSSES; SURFACE-APPLIED UREA; OXIDE EMISSIONS; NEW-ZEALAND; GRAZED GRASSLAND; N2O EMISSIONS;
D O I
10.1111/aab.12014
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
Losses of nitrogen from the soil/plant system not only reduce soil fertility and plant yield but can also create adverse impacts on the environment. Ammonia emissions into the atmosphere contribute to acid rain and represent an indirect source of nitrous oxide greenhouse gas emissions. Nitrate leaching losses into rivers and lakes can cause eutrophication resulting in excessive growth of aquatic weeds and algae, which can reduce fish populations and the recreational value of the water. Nitrate contamination of drinking water supplies can cause health risks. Legislation that is designed to limit nitrate leaching losses from land has become a constraint on agricultural land use in many countries. Nitrous oxide emissions into the atmosphere contribute to the depletion of the ozone layer and also make a significant contribution to climate change. This review describes the nitrogen cycle in temperate soil/plant systems, the processes involved in each of the individual nitrogen loss pathways, the factors affecting the amounts of losses and the methods that are available to reduce these losses. The review has shown that careful management of temperate soil/plant systems using best management practices and newly developed technologies can increase the sustainability of agriculture and reduce its impact on the environment.
引用
收藏
页码:145 / 173
页数:29
相关论文
共 272 条
[1]  
Addiscott T. M., 1996, Issues in Environmental Science and Technology, V5, P1
[2]  
Addiscott T.M., 1991, FARMING FERTILIZERS
[3]   LONG-TERM LEAKAGE OF NITRATE FROM BARE UNMANURED SOIL [J].
ADDISCOTT, TM .
SOIL USE AND MANAGEMENT, 1988, 4 (03) :91-95
[4]   SOIL-WATER AND AMMONIA VOLATILIZATION RELATIONSHIPS WITH SURFACE-APPLIED NITROGEN-FERTILIZER SOLUTIONS [J].
ALKANANI, T ;
MACKENZIE, AF ;
BARTHAKUR, NN .
SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 1991, 55 (06) :1761-1766
[5]   Nitrous oxide emissions from soils due to inputs of nitrogen from excreta return by livestock on grazed grassland in the UK [J].
Allen, AG ;
Jarvis, SC ;
Headon, DM .
SOIL BIOLOGY & BIOCHEMISTRY, 1996, 28 (4-5) :597-607
[7]   Relationship between gross nitrogen cycling and nitrous oxide emissionin grass-clover pasture [J].
Ambus, P .
NUTRIENT CYCLING IN AGROECOSYSTEMS, 2005, 72 (02) :189-199
[8]   Nitrogen in biowaste and yard waste compost:: dynamics of mobilisation and availability -: a review [J].
Amlinger, F ;
Götz, B ;
Dreher, P ;
Geszti, J ;
Weissteiner, C .
EUROPEAN JOURNAL OF SOIL BIOLOGY, 2003, 39 (03) :107-116
[9]   Use of white clover as an alternative to nitrogen fertiliser for dairy pastures in nitrate vulnerable zones in the UK: productivity, environmental impact and economic considerations [J].
Andrews, M. ;
Scholefield, D. ;
Abberton, M. T. ;
McKenzie, B. A. ;
Hodge, S. ;
Raven, J. A. .
ANNALS OF APPLIED BIOLOGY, 2007, 151 (01) :11-23
[10]   Positive plant microbial interactions in perennial ryegrass dairy pasture systems [J].
Andrews, M. ;
Edwards, G. R. ;
Ridgway, H. J. ;
Cameron, K. C. ;
Di, H. J. ;
Raven, J. A. .
ANNALS OF APPLIED BIOLOGY, 2011, 159 (01) :79-92