348-1 Diffuse Losses of Phosphorus From Agricultural Soils - Status and Preventive Measures in a Nordic Perspective.

See more from this Division: ASA Section: Environmental Quality
See more from this Session: Symposium--Phosphorus Fate, Management, and Modeling in Artificially Drained Systems: I

Wednesday, November 6, 2013: 8:00 AM
Tampa Convention Center, Room 16

Lars Bergström1, Helena Andersson2, Helena Aronsson1, Faruk Djodjic3, Holger Kirchmann2, Pia Kynkäänniemi2, Jian Liu4, Annika Svanbäck2, Barbro Ulén1 and Ana Villa3, (1)Department of Soil and Environment, Swedish University of Agricultural Sciences, Uppsala, Sweden
(2)Soil and Environment, Swedish University of Agricultural Sciences, Uppsala, Sweden
(3)Water and Environment, Swedish University of Agricultural Sciences, Uppsala, Sweden
(4)Department of Plant Science, Pennsylvania State University, State College, PA
Abstract:
Diffuse losses of phosphorus from agricultural soils – status and preventive measures in a Nordic perspective

Lars Bergströma, Helena Anderssona, Helena Aronssona, Faruk Djodjicb, Holger Kirchmanna, Pia Kynkäänniemia, Jian Liua, Annika Svanbäcka, Barbro Uléna, Ana Villab

aDep. of Soil and Environment, Swedish University of Agricultural Sciences, P.O. Box 7014, 75007 Uppsala, Sweden

bDep. of Water and Environment, Swedish University of Agricultural Sciences, P.O. Box 7050, 75007 Uppsala, Sweden

Transport of phosphorus (P) from agricultural fields to rivers, lakes and marine environments causes deteriorating water quality and eutrophication, often leading to severe algal blooms. Much attention during recent years in Sweden has been focused on eutrophication of the Baltic Sea for which the gross P load from agriculture is estimated to contribute about 45% of the total anthropogenic P load. Therefore, one of the most important actions for reducing P loadings to the Baltic Sea is to minimize non-point source emissions of P from agricultural land. Accordingly, several research projects have been started during the past five years, with the aim of testing best management practices (BMPs) to reduce P leaching losses via tile-drains which can constitute up to 60% of the total agricultural P losses or even more. Mitigation practices that have been tested include catch crops, constructed wetlands, liming of subsoil and various manure application strategies. Results from these studies showed that of the 8 catch crops tested, none was able to significantly reduce P leaching before they were exposed to freezing/thawing, whereas constructed wetlands reduced total-P loads by 36% and incorporation of pig slurry in a clay soil by 50% as compared with surface application. However, the losses were overall rather small. The average diffuse P leaching load in Sweden is only 0.4 kg P ha-1 yr-1 and detection of small changes in P-loadings over time due to implementation of BMP practices requires long monitoring periods. It is also important to keep in mind that other factors such as weather conditions, soil type etc. also have a profound effect on P losses, which can mask the effects of BMPs. We still believe that even small losses can be reduced substantially through development and implementation of proper BMPs.

See more from this Division: ASA Section: Environmental Quality
See more from this Session: Symposium--Phosphorus Fate, Management, and Modeling in Artificially Drained Systems: I

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