Globalization and pollution: tele-connecting local primary PM2.5 emissions to global consumption
暂无分享,去创建一个
[1] Glen P. Peters,et al. CONSTRUCTING AN ENVIRONMENTALLY-EXTENDED MULTI-REGIONAL INPUT–OUTPUT TABLE USING THE GTAP DATABASE , 2011 .
[2] Jing Meng,et al. The impact of domestic and foreign trade on energy-related PM emissions in Beijing , 2016 .
[3] E. Hertwich. Life cycle approaches to sustainable consumption: a critical review. , 2005, Environmental science & technology.
[4] Michael Brauer,et al. Addressing Global Mortality from Ambient PM2.5. , 2015, Environmental science & technology.
[5] Zhan-Ming Chen,et al. Demand-driven energy requirement of world economy 2007: A multi-region input-output network simulation , 2013, Commun. Nonlinear Sci. Numer. Simul..
[6] M. Brauer,et al. Revealing the hidden health costs embodied in Chinese exports. , 2015, Environmental science & technology.
[7] Douglas Crawford-Brown,et al. Mapping flows of embodied emissions in the global production system. , 2011, Environmental science & technology.
[8] Kebin He,et al. An inventory of primary air pollutants and CO2 emissions from cement production in China, 1990–2020 , 2011 .
[9] S. Suh,et al. The material footprint of nations , 2013, Proceedings of the National Academy of Sciences.
[10] Yuan Xu,et al. Interprovincial Reliance for Improving Air Quality in China: A Case Study on Black Carbon Aerosol. , 2016, Environmental science & technology.
[11] Bo Zhang,et al. Greenhouse gas emissions in China 2007: Inventory and input-output analysis , 2010 .
[12] Robert McDougall,et al. Global trade, assistance, and production : The GTAP 5 Data Base , 2002 .
[13] Jing Meng,et al. Tracing Primary PM2.5 emissions via Chinese supply chains , 2015 .
[14] Kjartan Steen-Olsen,et al. Carbon, land, and water footprint accounts for the European Union: consumption, production, and displacements through international trade. , 2012, Environmental science & technology.
[15] Bin Wang,et al. Exposure to ambient black carbon derived from a unique inventory and high-resolution model , 2014, Proceedings of the National Academy of Sciences.
[16] C. Weber,et al. Journey to world top emitter: An analysis of the driving forces of China's recent CO2 emissions surge , 2009 .
[17] G. Peters,et al. A synthesis of carbon in international trade , 2012 .
[18] Jiming Hao,et al. Mineral dust and NOx promote the conversion of SO2 to sulfate in heavy pollution days , 2014, Scientific Reports.
[19] J. Greet,et al. Emissions Database for Global Atmospheric Research , 2017 .
[20] Armistead G Russell,et al. "What We Breathe Impacts Our Health: Improving Understanding of the Link between Air Pollution and Health". , 2016, Environmental science & technology.
[21] S. Tao,et al. Quantification of global primary emissions of PM2.5, PM10, and TSP from combustion and industrial process sources. , 2014, Environmental science & technology.
[22] Tasawar Hayat,et al. An overview of mercury emissions by global fuel combustion: The impact of international trade , 2016 .
[23] L. Horowitz,et al. Evaluating inter-continental transport of fine aerosols: (1) Methodology, global aerosol distribution and optical depth , 2009 .
[24] Manfred Lenzen,et al. International trade drives biodiversity threats in developing nations , 2012, Nature.
[25] Greet Janssens-Maenhout,et al. EDGAR-HTAP: A harmonized gridded air pollution emission dataset based on national inventories , 2012 .
[26] David Allaway,et al. A consumption-based GHG inventory for the U.S. state of Oregon. , 2012, Environmental science & technology.
[27] P. Domenici,et al. Clean Air Act amendments of 1977 , 1979 .
[28] Arnold Tukker,et al. GLOBAL MULTIREGIONAL INPUT–OUTPUT FRAMEWORKS: AN INTRODUCTION AND OUTLOOK , 2013 .
[29] S. Davis,et al. Reply to Lopez et al.: Consumption-based accounting helps mitigate global air pollution , 2014, Proceedings of the National Academy of Sciences.
[30] Hans Popper,et al. Introduction and outlook , 1970 .
[31] P. Ciais,et al. High-resolution mapping of combustion processes and implications for CO2 emissions , 2013 .
[32] E. Hertwich,et al. The case for consumption-based accounting of greenhouse gas emissions to promote local climate action , 2009 .
[33] Steven J Davis,et al. The supply chain of CO2 emissions , 2011, Proceedings of the National Academy of Sciences.
[34] Qiang Zhang,et al. Sulfur dioxide and primary carbonaceous aerosol emissions in China and India, 1996-2010 , 2011 .
[35] K. Hubacek,et al. Environmental implications of urbanization and lifestyle change in China: Ecological and Water Footprints , 2009 .
[36] Manfred Lenzen,et al. INPUT–OUTPUT ANALYSIS: THE NEXT 25 YEARS , 2013 .
[37] Allen L. Robinson,et al. Photochemical oxidation and changes in molecular composition of organic aerosol in the regional context , 2006 .
[38] Spyros N. Pandis,et al. Response of fine particulate matter concentrations to changes of emissions and temperature in Europe , 2012 .
[39] Keisuke Nansai,et al. Production-based emissions, consumption-based emissions and consumption-based health impacts of PM2.5 carbonaceous aerosols in Asia , 2014 .
[40] Manfred Lenzen,et al. Substantial nitrogen pollution embedded in international trade , 2016 .
[41] T. Wiedmann. A review of recent multi-region input–output models used for consumption-based emission and resource accounting , 2009 .
[42] J. Avery. Critical review. , 2006, The Journal of the Arkansas Medical Society.
[43] S. Davis,et al. China’s international trade and air pollution in the United States , 2014, Proceedings of the National Academy of Sciences.
[44] J. Lelieveld,et al. The contribution of outdoor air pollution sources to premature mortality on a global scale , 2015, Nature.
[45] Ge Chen,et al. Embodied carbon dioxide emission at supra-national scale: A coalition analysis for G7, BRIC, and the rest of the world , 2011 .
[46] Klaus Hubacek,et al. Tele-connecting local consumption to global land use , 2013 .
[47] Ting Yang,et al. Formation and evolution mechanism of regional haze: a case study in the megacity Beijing, China , 2012 .
[48] B. W. Ang,et al. Input–output analysis of CO2 emissions embodied in trade: The effects of sector aggregation , 2010 .
[49] Glen P. Peters,et al. A MULTI-REGION INPUT–OUTPUT TABLE BASED ON THE GLOBAL TRADE ANALYSIS PROJECT DATABASE (GTAP-MRIO) , 2013 .
[50] G. Q. Chen,et al. Virtual water accounting for the globalized world economy: National water footprint and international virtual water trade , 2013 .
[51] Markus Amann,et al. Modeling Particulate Emissions in Europe. A Framework to Estimate Reduction Potential and Control Costs , 2002 .
[52] Nicola Pirrone,et al. Atmospheric mercury footprints of nations. , 2015, Environmental science & technology.
[53] R. Harrison. Introduction to atmospheric chemistry , 2000 .
[54] Klaus Hubacek,et al. The Impact of Social Factors and Consumer Behavior on Carbon Dioxide Emissions in the United Kingdom , 2010 .
[55] G. Peters,et al. The socioeconomic drivers of China’s primary PM2.5 emissions , 2014 .
[56] G. Peters. From production-based to consumption-based national emission inventories , 2008 .
[57] Akimoto Hajime,et al. Hemispheric transport of air pollution 2010: Part A - Tropospheric ozone and particulate matter , 2011 .
[58] D. Worsnop,et al. Chemistry and composition of atmospheric aerosol particles. , 2012, Annual review of physical chemistry.
[59] P J Stoelinga. The next 25 years. , 1996, International journal of oral and maxillofacial surgery.
[60] E. Hertwich,et al. CO2 embodied in international trade with implications for global climate policy. , 2008, Environmental science & technology.
[61] Manfred Lenzen,et al. International trade of scarce water , 2013 .
[62] S. Davis,et al. Assessment of China's virtual air pollution transport embodied in trade by using a consumption-based emission inventory , 2014 .
[63] Philippe Poizot,et al. Clean energy new deal for a sustainable world: from non-CO2 generating energy sources to greener electrochemical storage devices , 2011 .
[64] Shan Guo,et al. Trend and driving forces of Beijing's black carbon emissions from sectoral perspectives , 2016 .
[65] Junfeng Liu,et al. Evaluating inter-continental transport of fine aerosols:(2) Global health impact , 2009 .
[66] Manfred Lenzen,et al. A CARBON FOOTPRINT TIME SERIES OF THE UK – RESULTS FROM A MULTI-REGION INPUT–OUTPUT MODEL , 2010 .
[67] Philippe Ciais,et al. High-resolution mapping of combustion processes and implications for CO 2 emissions , 2012 .
[68] David G. Streets,et al. Primary anthropogenic aerosol emission trends for China, 1990–2005 , 2011 .
[69] Patrick Hostert,et al. From teleconnection to telecoupling: taking stock of an emerging framework in land system science , 2016 .
[70] E. Hertwich,et al. Affluence drives the global displacement of land use , 2013 .
[71] Xue-Jie Gao,et al. Developed and developing world responsibilities for historical climate change and CO2 mitigation , 2012, Proceedings of the National Academy of Sciences.
[72] S. Davis,et al. Consumption-based accounting of CO2 emissions , 2010, Proceedings of the National Academy of Sciences.
[73] Neville Nicholls,et al. Teleconnections Linking Worldwide Climate Anomalies , 2009 .
[74] E. Hertwich,et al. Carbon footprint of nations: a global, trade-linked analysis. , 2009, Environmental science & technology.
[75] Kebin He,et al. Examining air pollution in China using production- and consumption-based emissions accounting approaches. , 2014, Environmental science & technology.
[76] Weidong Liu,et al. Outsourcing CO2 within China , 2013, Proceedings of the National Academy of Sciences.
[77] G. Carmichael,et al. Asian emissions in 2006 for the NASA INTEX-B mission , 2009 .
[78] Kebin He,et al. Global climate forcing of aerosols embodied in international trade , 2016 .
[79] C. Weber,et al. The drivers of Chinese CO2 emissions from 1980 to 2030 , 2008 .
[80] Tasawar Hayat,et al. Mercury emissions by Beijing׳s fossil energy consumption: Based on environmentally extended input–output analysis , 2015 .
[81] Hajime Akimoto,et al. HEMISPHERIC TRANSPORT OF AIR POLLUTION 2010 PART A : OZONE AND PARTICULATE MATTER AIR POLLUTION STUDIES No . 17 , 2011 .