Cost-efficient reductions in nutrient loads; identifying optimal spatially specific policy measures

Water Resources and Economics - Tập 7 - Trang 39-54 - 2014
Maria Theresia Konrad1, Hans Estrup Andersen2, Hans Thodsen2, Mette Termansen1, Berit Hasler1
1Aarhus University, Department of Environmental Science
2Aarhus University, Department of Bioscience

Tài liệu tham khảo

Abrahamsen, 2001, Daisy. An open soil-crop-atmosphere model, Environ. Modell. Softw., 15, 313, 10.1016/S1364-8152(00)00003-7 Arabi, 2006, Cost-effective allocation of watershed management practices using a genetic algorithm, Water Resour. Res., 42, W10429, 10.1029/2006WR004931 Azzaino, 2002, Optimizing the riparian buffer: Harold Brook in the Skaneateles Lake Watershed, New York, Land Econ, 78, 501, 10.2307/3146849 Balana, 2011, A review on cost-effectiveness analysis of agri-environmental measures related to the EU WFD: key issues, methods, and applications, Ecol. Econ, 70, 1021, 10.1016/j.ecolecon.2010.12.020 Bateman, 2009, Bringing the real world into economic analyses of land use value: incorporating spatial complexity, Land Use Policy, 26, 30, 10.1016/j.landusepol.2009.09.010 Blicher-MATHIESEN, 2013, Landovervågningsoplande 2012. NOVANA. Aarhus Universitet, Videnskabelig rapport fra DCE – nationalt center for Miljø og Energi nr., 74 Blicher-Mathiesen, 2014, Mapping of nitrogen risk areas, Agr. Ecosyst. Environ, 195, 149, 10.1016/j.agee.2014.06.004 Cardenas, 2011, Cost effectiveness of nitrate leaching mitigation measures for grassland livestock systems at locations in England and Wales, Sci. Total Environ., 409, 1104, 10.1016/j.scitotenv.2010.12.006 Conley, 2000, Characteristics of Danish estuaries, Estuaries, 23, 820, 10.2307/1353000 Cools, 2011, Coupling a hydrological water quality model and an economic optimization model to set up a cost-effective emission reduction scenario for nitrogen, Environ. Modell. Softw, 26, 44, 10.1016/j.envsoft.2010.04.017 Fezzi, 2011, Structural agricultural land use modeling for spatial agro-environmental policy analysis, Am. J. Agr. Econ., 93, 1168, 10.1093/ajae/aar037 Fezzi, 2010, Integrated assessment of water framework directive nitrate reduction measures, Agr. Econ, 41, 123, 10.1111/j.1574-0862.2009.00430.x Fezzi, 2008, Estimating the range of economic impacts on farms of nutrient leaching reduction policies, Agr. Econ, 39, 197, 10.1111/j.1574-0862.2008.00323.x Fröschl, 2008, Cost-efficient choice of measures in agriculture to reduce the nitrogen load flowing from the Danube river into the Black Sea: an analysis for Austria, Bulgaria, Hungary and Romania, Ecol. Econ, 68, 96, 10.1016/j.ecolecon.2008.02.005 Gams, 2014. 〈http://www.gams.com/docs/document.htm〉. Gren, 1997, Cost-effective nutrient reductions to the Baltic Sea, Environ. Resour. Econ, 10, 341, 10.1023/A:1026497515871 Grossmann, 2012, Economic value of the nutrient retention function of restored floodplain wetlands in the Elbe River basin, Ecol. Econ, 83, 108, 10.1016/j.ecolecon.2012.03.008 Hagy, 2004, Hypoxia in Chesapeake Bay, 1950-2001: long-term change in relation to nutrient loading and river flow, Estuaries, 27, 634, 10.1007/BF02907650 Hasler, 2014, Hydro-economic modelling of cost-effective transboundary water quality management in the Baltic Sea, Water Resour. Econ., 5, 1, 10.1016/j.wre.2014.05.001 Helin, 2012, How much can be gained by optimizing nutrient abatement spatially – cost-efficiency comparison of non-point arable loads from different Finnish watersheds, Food Econ., 9, 95, 10.1080/16507541.2012.695115 Hutchins, 2009, Cost-effective mitigation of diffuse pollution: setting criteria for river basin management at multiple locations, Environ. Manage., 44, 256, 10.1007/s00267-009-9306-8 Khanna, 2003, Cost-effective targeting of land retirement to improve water quality with endogenous sediment deposition coefficients, Am. J. Agr. Econ., 85, 538, 10.1111/1467-8276.t01-1-00454 Kampas, 2002, Joint pollution control at a catchment scale: compliance costs and policy implications, J. Environ. Manage., 66, 281, 10.1016/S0301-4797(02)90588-8 E.S. Kristensen, B.H. Jacobsen (red.), Landbrugets omkostninger ved den nuværende normreduktion, Nr. 030-0014/13-5480, 19 s., (IFRO Udredning; Nr. 2013/14), 2013 Lautenbach, 2013, Optimization-based trade-off analysis of biodiesel crop production for managing an agricultural catchment, Environ. Modell. Softw, 48, 98, 10.1016/j.envsoft.2013.06.006 Lescot, 2013, A spatially-distributed cost-effectiveness analysis framework for controlling water pollution, Environ. Modell. Softw, 41, 107, 10.1016/j.envsoft.2012.10.008 Mcintosh, 2011, Environmental decision support systems (EDSS) development – Challenges and best practices, Environ. Modell. Softw, 26, 1389, 10.1016/j.envsoft.2011.09.009 Ministry of Environment, 2011. (MILJØMINISTERIET. 2011). Vandplan 2010-2015. Odense Fjord. Hovedvandopland 1.13, Vanddistrikt: Jylland og Fyn. 〈http://www.naturstyrelsen.dk/NR/rdonlyres/E29AE587-D7B9-490B-B306-51CC46EE1A83/0/1_13_OdenseFjord.pdf〉. Muleta, 2002, Evolutionary algorithms for multiobjective evaluation of watershed management decisions, J. Hydroinform., 04, 83, 10.2166/hydro.2002.0010 Nielsen, 2012, Watershed land use effects on lake water quality in Denmark, Ecol. Appl, 22, 1187, 10.1890/11-1831.1 Rabalais, 2002, Gulf of Mexico hypoxia, aka the dead zone, Annu. Rev. Ecol. Syst., 33, 235, 10.1146/annurev.ecolsys.33.010802.150513 Rabotyagov, 2010, Least-cost control of agricultural nutrient contributions to the Gulf of Mexico hypoxic zone, 20, 1542 Rabotyagov, 2014, Reversing property rights: practice-based approaches for controlling agricultural nonpoint-source water pollution when emissions aggregate nonlinearly, Am. J. Agr. Econ., 96, 397, 10.1093/ajae/aat094 Schou, 2006, Modelling cost-efficient reductions of nutrient loads to the Baltic Sea: concepts, data and cost functions for the cost minimization model, NERI Technical Report No, 592 Schou, 2000, Integrated agri-environmental modelling: a cost-effectiveness analysis of two nitrogen tax instruments in the Vejle Fjord watershed, Denmark, J. Environ. Manage., 58, 199, 10.1006/jema.2000.0325 Seitzinger Sybil P., 1988, Denitrification in freshwater and coastal marine ecosystems: ecological and geochemical significance, Limnol. Oceanogr, 33, 702, 10.4319/lo.1988.33.4_part_2.0702 Statistics Denmark, 2012. Økonomien i landbrugets produktionsgrene. 〈http://www.dst.dk/da/Statistik/Publikationer/VisPub.aspx?cid=18678〉. Statistics Denmark, 2014. Statistikbanken. 〈http://www.statistikbanken.dk/statbank5a/default.asp?w=1440〉 Stålnacke, 2003, Trends in nutrient concentrations in Latvian rivers and the response to the dramatic change in agriculture, J. Hydrol, 283, 184, 10.1016/S0022-1694(03)00266-X Vinten, 2012, Application of the WFD cost proportionality principle to diffuse pollution mitigation: a case study for Scottish Lochs, J. Environ. Manage, 97, 28, 10.1016/j.jenvman.2011.10.015 Volk, 2008, Integrated ecological-economic modelling of water pollution abatement management options in the Upper Ems River basin, Ecol. Econ, 66, 66, 10.1016/j.ecolecon.2008.01.016 Von, 2008, Inter-annual, annual, and seasonal variation of P and N retention in a perennial and an intermittent stream, Ecosystems, 11, 670, 10.1007/s10021-008-9150-3 Yang, 2003, Integrating economic, environmental and GIS modeling to target cost effective land retirement in multiple watersheds, Ecol. Econ, 46, 249, 10.1016/S0921-8009(03)00141-1