Substantial nitrogen pollution embedded in international trade
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Manfred Lenzen | Shota Nishijima | Arne Geschke | Arunima Malik | Keiichiro Kanemoto | M. Lenzen | Keiichiro Kanemoto | Arne Geschke | A. Malik | Azusa Oita | Azusa Oita | Shota Nishijima
[1] A. Hubbard,et al. Social Disparities in Nitrate-Contaminated Drinking Water in California’s San Joaquin Valley , 2011, Environmental health perspectives.
[2] Manfred Lenzen,et al. International trade of scarce water , 2013 .
[3] Allison M. Leach,et al. A nitrogen footprint model to help consumers understand their role in nitrogen losses to the environment , 2012 .
[4] J. Galloway,et al. A chronology of human understanding of the nitrogen cycle† , 2013, Philosophical Transactions of the Royal Society B: Biological Sciences.
[5] Manfred Lenzen,et al. Mapping the structure of the world economy. , 2012, Environmental science & technology.
[6] Jan Willem Erisman,et al. Consequences of human modification of the global nitrogen cycle , 2013, Philosophical Transactions of the Royal Society B: Biological Sciences.
[7] Allison M. Leach,et al. Personal nitrogen footprint tool for the United Kingdom. , 2014, Environmental science. Processes & impacts.
[8] Manfred Lenzen,et al. International trade undermines national emission reduction targets: New evidence from air pollution , 2014 .
[9] W. Leontief. Environmental Repercussions and the Economic Structure: An Input-Output Approach , 1970 .
[10] Manfred Lenzen,et al. International trade drives biodiversity threats in developing nations , 2012, Nature.
[11] J. Galloway,et al. Food and feed trade as a driver in the global nitrogen cycle: 50-year trends , 2014, Biogeochemistry.
[12] A. Hoekstra,et al. Humanity’s unsustainable environmental footprint , 2014, Science.
[13] Christoph Schmitz,et al. Reactive nitrogen requirements to feed the world in 2050 and potential to mitigate nitrogen pollution , 2014, Nature Communications.
[14] R. Wu,et al. Eutrophication, Water Borne Pathogens and Xenobiotic Compounds: Environmental Risks and Challenges , 1999 .
[15] Allison M. Leach,et al. First approach to the Japanese nitrogen footprint model to predict the loss of nitrogen to the environment , 2014 .
[16] M. Sutton,et al. The European perspective on nitrogen emission and deposition. , 2003, Environment international.
[17] Stephan Pfister,et al. COMPARISON OF BOTTOM-UP AND TOP-DOWN APPROACHES TO CALCULATING THE WATER FOOTPRINTS OF NATIONS , 2011 .
[18] J. Galloway,et al. Transformation of the Nitrogen Cycle: Recent Trends, Questions, and Potential Solutions , 2008, Science.
[19] D. Mandelker. Controlling Nonpoint Source Water Pollution: Can It Be Done , 1989 .
[20] Mark A. Sutton,et al. Too much of a good thing , 2001, Nature.
[21] Manfred Lenzen,et al. The Employment Footprints of Nations , 2014 .
[22] N. H. Ravindranath,et al. 2006 IPCC Guidelines for National Greenhouse Gas Inventories , 2006 .
[23] Magnus Jiborn,et al. National greenhouse-gas accounting for effective climate policy on international trade , 2015 .
[24] Allison M. Leach,et al. The nitrogen footprint of food products and general consumption patterns in Austria , 2014 .
[25] M. Burke,et al. A Global Model Tracking Water, Nitrogen, and Land Inputs and Virtual Transfers from Industrialized Meat Production and Trade , 2009 .
[26] Manfred Lenzen,et al. BUILDING EORA: A GLOBAL MULTI-REGION INPUT–OUTPUT DATABASE AT HIGH COUNTRY AND SECTOR RESOLUTION , 2013 .
[27] G. Peters,et al. A synthesis of carbon in international trade , 2012 .
[28] Allison M. Leach,et al. Nitrogen footprints: past, present and future , 2014 .
[29] D. O'Rourke. The science of sustainable supply chains , 2014, Science.
[30] Josette Garnier,et al. A vast range of opportunities for feeding the world in 2050: trade-off between diet, N contamination and international trade , 2015 .
[31] Wassily Leontief. Input-Output Economics , 1966 .
[32] Manfred Lenzen,et al. A CARBON FOOTPRINT TIME SERIES OF THE UK – RESULTS FROM A MULTI-REGION INPUT–OUTPUT MODEL , 2010 .