All Stories

  1. Integrating energy intensity heterogeneity into city-level energy related emission inventories: evidence from Guangdong
  2. Balancing Sectoral Decoupling for Sustainable Development in Underdeveloped Regions
  3. Unlocking circular potential in under-prioritized industries: Plant-by-plant industrial symbiosis plan in the light and stone processing industries
  4. Incorporating water quality into food-water nexus reveals hidden benefits of technological progress
  5. Carbon sequestration for geological negative emissions of the shale gas value chain in China
  6. Environmental nexus paradigm: Toward a unified framework for sustainable governance
  7. Doubling of the global freshwater footprint of material production over two decades
  8. Environmental and economic implications of closing decarbonization gap in steel-cement industrial symbiosis in China
  9. Moving transmission centers of embodied forage-livestock conflicts from non-pastoral provinces to pastoral provinces in China
  10. Reshaping regional carbon productivity in the Pearl River Delta megaregion: Input-output-based multi-objective optimization to explore low-carbon industrial transitions
  11. Structural characteristics of global virtual water network driven by food consumption in the Belt and Road Initiative region
  12. The trilateral effects of post-brexit UK meat imports: Economic, environmental, and animal welfare
  13. Global mercury dataset with predicted methylmercury concentrations in seafoods during 1995–2022
  14. Impacts of international food trade on methylmercury-related health risks
  15. Structural Characteristics of Multi-Scale Virtual Land Flow Network Centered by Beijing Metropolis
  16. China's economic restructuring helps improve land-use resilience of carbon metabolism: Evidences from three Chinese megacities
  17. Greenhouse Gas Footprints of Nations Significantly Reshaped by Sink Changes
  18. Decoupling carbon dioxide emissions from economic growth across multiregional supply chains within China
  19. Trends and drivers of global dietary methylmercury exposure during 1995–2020
  20. Increasing role of transboundary food-related water footprints by regional income groups
  21. Systems Approaches for Addressing Complex Environmental Problems
  22. Global supply chain drivers of water use in Sub-Saharan Africa: Taking Ghana as a case
  23. Transmission centers of global embodied mercury emissions are moving from developed to developing regions
  24. Global Supply Chains are Becoming Conducive to Water Saving in India
  25. Multi-layer perspective of household-driven carbon emissions reveals new industrial chain hotspots in China
  26. Narrowing regional dietary disparities can help reduce methylmercury exposure in China
  27. Changing production and consumption patterns for win-win of Minamata Convention on Mercury and common prosperity in China
  28. Parsing India's mercury crisis: A socioeconomic take reveals the defining role of domestic consumerism
  29. Household carbon footprints of age groups in China and socioeconomic influencing factors
  30. Phosphorus balancing for optimal crop yields
  31. Tracking Interprovincial Flows of Atmospheric PAH Emissions Through Downscaling Estimates With Province‐Specific Emission Factors
  32. A Consumption‐Based Integrated Framework for Subnational Absolute Environmental Sustainability Management
  33. Mitigating forage-livestock conflicts in China through economic structure transition
  34. Uncovering structural characteristics of virtual water flow network in India
  35. Construction of a methodology framework to characterize dynamic full-sector land-use carbon emissions embodied in trade
  36. Food Demand‐Driven Scarce Water Use Amplified by Pollution in China
  37. Decreasing resilience of China’s coupled nitrogen–phosphorus cycling network requires urgent action
  38. China's economic restructuring reduced emissions of polycyclic aromatic hydrocarbons (PAHs) in the post-global financial crisis era
  39. Dietary shifts drive the slowdown of declining methylmercury related health risk in China
  40. Spatial and Cross-Sectoral Transfer of Air Pollutant Emissions from the Fleet Electrification in China by 2030
  41. Multiperspective Decoupling Analyses between Global Embodied Carbon Chains and Global Value Chains
  42. Incorporating scarcity into footprints reveals diverse supply chain hotspots for global fossil fuel management
  43. Quantifying economic sectoral iron commodity use and related vulnerability in China's supply chains
  44. A high spatial resolution dataset for methylmercury exposure in Guangdong-Hong Kong-Macao Greater Bay Area
  45. Double-edged sword of technological progress to climate change depends on positioning in global value chains
  46. Impacts of Trans-Provincial Thermal Power Transmission on Air-Quality Recovery and Related Health Outcomes in China
  47. Consumption in Non-Pastoral Regions Drove Three-Quarters of Forage–Livestock Conflicts in China
  48. Cascading impacts of global metal mining on climate change and human health caused by COVID-19 pandemic
  49. Pursuing carbon neutrality in China should enhance the resilience of its nitrogen-phosphorus coupled cycling network and also benefit food security
  50. Local Full-Sector Land Uses Influenced by Multiregional Demand and Supply: The Case of Beijing
  51. Revisiting metal footprints of nations with a reserve-side scarcity indicator
  52. Human health and ecosystem impacts of China's resource extraction
  53. Reducing environmental impacts through socioeconomic transitions: critical review and prospects
  54. A high spatial resolution dataset for anthropogenic atmospheric mercury emissions in China during 1998–2014
  55. Phosphorus emissions from changing phosphorus supply chain networks in China
  56. Scarcity-weighted metal extraction enabled by primary suppliers through global supply chains
  57. The carbon emissions related to the land-use changes from 2000 to 2015 in Shenzhen, China: Implication for exploring low-carbon development in megacities
  58. Methane mitigation: Learning from the natural marine environment
  59. Pollution exacerbates interregional flows of virtual scarce water driven by energy demand in China
  60. Changes of production and consumption structures in coastal regions lead to mercury emission control in China
  61. Supply-side drivers of phosphorus emissions from phosphorus supply chains in China
  62. Sustainability performance of global chemical industry based on green total factor productivity
  63. The distributed environmental benefits from driving electrical vehicles— evidence from China
  64. Global Supply Chain Drivers of Agricultural Antibiotic Emissions in China
  65. Inequality of household consumption and PM2.5 footprint across socioeconomic groups in China
  66. Looping Mercury Cycle in Global Environmental–Economic System Modeling
  67. Cascading costs of snow cover reduction trend in northern hemisphere
  68. Spatial disparity of life-cycle greenhouse gas emissions from corn straw-based bioenergy production in China
  69. Role of Trade in India’s Rising Atmospheric Mercury Emissions
  70. Trade-related water scarcity risk under the Belt and Road Initiative
  71. Planetary Boundaries for Forests and Their National Exceedance
  72. An integrated assessment system for the carrying capacity of the water environment based on system dynamics
  73. Spatially explicit carbon emissions at the county scale
  74. Chinese environmentally extended input-output database for 2017 and 2018
  75. Mapping spatial supply chain paths for embodied water flows driven by food demand in China
  76. Socioeconomic determinants for the changing food-related scarce water uses in Chinese regions
  77. Critical transmission sectors in embodied atmospheric mercury emission network in China
  78. Identifying sectoral impacts on global scarce water uses from multiple perspectives
  79. Global Economic Structure Transition Boosts Atmospheric Mercury Emissions in China
  80. Effects of economic structural transition on PM2.5-Related Human Health Impacts in China
  81. Understanding the industrial NOx and SO2 pollutant emissions in China from sector linkage perspective
  82. Critical transmission sectors for provincial food-water nexus in China
  83. Multi-pollutant based grey water footprint of Chinese regions
  84. Potential Role of Fiscal Decentralization on Interprovincial Differences in CO2 Emissions in China
  85. China's retrofitting measures in coal-fired power plants bring significant mercury-related health benefits
  86. Evaluating the synergy strength among environmental pressures at the sectoral level of China from the producer, consumer and supplier perspectives
  87. Mapping potentials and bridging regional gaps of renewable resources in China
  88. Spatially Explicit Global Hotspots Driving China’s Mercury Related Health Impacts
  89. Rapid Increase in Cement-Related Mercury Emissions and Deposition in China during 2005–2015
  90. Toward low-carbon development: Assessing emissions-reduction pressure among Chinese cities
  91. Virtual water scarcity risk in China
  92. CO2 Emissions Embodied in International Migration from 1995 to 2015
  93. Quantifying Direct and Indirect Spatial Food–Energy–Water (FEW) Nexus in China
  94. Network resilience of phosphorus cycling in China has shifted by natural flows, fertilizer use and dietary transitions between 1600 and 2012
  95. Changing carbon footprint of urban household consumption in Beijing: Insight from a nested input-output analysis
  96. Socioeconomic drivers of water withdrawals driven by provincial energy demand in China
  97. Mapping global carbon footprint in China
  98. Co-benefits and trade-offs of environmental pressures: A case study of Zhejiang’s socio-economic evolution
  99. Virtual scarce water flows and economic benefits of the Belt and Road Initiative
  100. Economic development and converging household carbon footprints in China
  101. Saving less in China facilitates global CO2 mitigation
  102. Advanced approaches and applications of energy footprints toward the promotion of global sustainability
  103. Global timber harvest footprints of nations and virtual timber trade flows
  104. Socioeconomic drivers of water use in China during 2002–2017
  105. Improved eco-efficiency analysis of municipal solid waste treatment systems based on hybrid life cycle assessment
  106. Investigating High-Level Consumption-Based Emission Groups in Addressing Air Pollution and Health Inequalities
  107. Scarcity-weighted fossil fuel footprint of China at the provincial level
  108. The evolution of virtual water flows in China's electricity transmission network and its driving forces
  109. Mapping economic drivers of China's NOx emissions due to energy consumption
  110. Scale, distribution and variations of global greenhouse gas emissions driven by U.S. households
  111. Urban food-energy-water nexus indicators: A review
  112. Spatial-temporal analysis of selected industrial aquatic heavy metal pollution in China
  113. Primary Suppliers Driving Atmospheric Mercury Emissions through Global Supply Chains
  114. Uncovering urban food-energy-water nexus based on physical input-output analysis: The case of the Detroit Metropolitan Area
  115. Understanding the tele-coupling mechanism of urban food-energy-water nexus: Critical sources, nodes, and supply chains
  116. Virtual water scarcity risk to global trade under climate change
  117. Input–output networks offer new insights of economic structure
  118. Regional water footprints and interregional virtual water transfers in China
  119. Supply chain sustainability risk and assessment
  120. Trans-provincial health impacts of atmospheric mercury emissions in China
  121. A two-tiered attribution structural decomposition analysis to reveal drivers at both sub-regional and sectoral levels: A case study of energy consumption in the Jing-Jin-Ji region
  122. Critical review of the energy-water-carbon nexus in cities
  123. Food-energy-water (FEW) nexus for urban sustainability: A comprehensive review
  124. Dynamic Carbon Emission Linkages Across Boundaries
  125. Determinants of Greenhouse Gas Emissions from Interconnected Grids in China
  126. Identifying critical sectors and supply chain paths for the consumption of domestic resource extraction in China
  127. Quantifying the Urban Food–Energy–Water Nexus: The Case of the Detroit Metropolitan Area
  128. Atmospheric Mercury Outflow from China and Interprovincial Trade
  129. Deriving hazardous material flow networks: A case study of lead in China
  130. Modeling domestic geographical transfers of toxic substances in WEEE: A case study of spent lead-acid batteries in China
  131. Virtual CO2 Emission Flows in the Global Electricity Trade Network
  132. Resource footprints of humanity
  133. How real time pricing modifies Chinese households’ electricity consumption
  134. Resource impacts of municipal solid waste treatment systems in Chinese cities based on hybrid life cycle assessment
  135. China high resolution emission database (CHRED) with point emission sources, gridded emission data, and supplementary socioeconomic data
  136. Trade-Induced Atmospheric Mercury Deposition over China and Implications for Demand-Side Controls
  137. Virtual Water Scarcity Risk to the Global Trade System
  138. Emergy Perspectives on the Environmental Performance and Sustainability of Small-Scale Gold Production Systems in Ghana
  139. Correction to CO2 Emissions Embodied in Interprovincial Electricity Transmissions in China
  140. Virtual Special Issue on Resource Footprints of Humanity: Call for Papers
  141. Consumption-based human health impacts of primary PM 2.5 : The hidden burden of international trade
  142. Tracing the inter-regional coal flows and environmental impacts in Jing-Jin-Ji region
  143. CO2 Emissions Embodied in Interprovincial Electricity Transmissions in China
  144. Structural analysis of material flows in China based on physical and monetary input-output models
  145. A Quasi-Input-Output model to improve the estimation of emission factors for purchased electricity from interconnected grids
  146. Emerging challenges and opportunities for the food–energy–water nexus in urban systems
  147. Final production-based emissions of regions in China
  148. Virtual scarce water embodied in inter-provincial electricity transmission in China
  149. Environmental impact and economic assessment of secondary lead production: Comparison of main spent lead-acid battery recycling processes in China
  150. Trade-off between carbon reduction benefits and ecological costs of biomass-based power plants with carbon capture and storage (CCS) in China
  151. Review of life cycle assessment studies on municipal solid waste management
  152. Mercury Flows in China and Global Drivers
  153. Income-based Greenhouse Gas Emissions of Nations
  154. Temporal Trend and Spatial Distribution of Speciated Atmospheric Mercury Emissions in China During 1978–2014
  155. The disposal and willingness to pay for residents’ scrap fluorescent lamps in China: A case study of Beijing
  156. Developing the Chinese Environmentally Extended Input-Output (CEEIO) Database
  157. Socioeconomic Drivers of Greenhouse Gas Emissions in the United States
  158. Forecast Modelling via Variations in Binary Image-Encoded Information Exploited by Deep Learning Neural Networks
  159. Scaling of global input–output networks
  160. Global Drivers of Russian Timber Harvest
  161. Betweenness-Based Method to Identify Critical Transmission Sectors for Supply Chain Environmental Pressure Mitigation
  162. Eco-efficiency analysis of municipal solid waste recycling systems by using life cycle approaches
  163. Environmental input-output analysis in industrial ecology
  164. Four system boundaries for carbon accounts
  165. Life cycle assessment of High Speed Rail in China
  166. Greenhouse gas emission factors of purchased electricity from interconnected grids
  167. Targeted opportunities to address the climate–trade dilemma in China
  168. Atmospheric Mercury Footprints of Nations
  169. Big Data and Industrial Ecology
  170. Structure of the Global Virtual Carbon Network: Revealing Important Sectors and Communities for Emission Reduction
  171. A dual strategy for controlling energy consumption and air pollution in China's metropolis of Beijing
  172. Temporal and spatial variations in consumption-based carbon dioxide emissions in China
  173. Lifting China’s Water Spell
  174. Revisiting drivers of energy intensity in China during 1997–2007: A structural decomposition analysis
  175. Virtual Atmospheric Mercury Emission Network in China
  176. Decoupling Analysis and Socioeconomic Drivers of Environmental Pressure in China
  177. Reference and functional unit can change bioenergy pathway choices
  178. Unintended Environmental Consequences and Co-benefits of Economic Restructuring
  179. Waste management of urban agglomeration on a life cycle basis
  180. Carbon dioxide mitigation target of China in 2020 and key economic sectors
  181. Carbon dioxide emission drivers for a typical metropolis using input–output structural decomposition analysis
  182. Reutilisation-extended material flows and circular economy in China
  183. Socioeconomic Drivers of Mercury Emissions in China from 1992 to 2007
  184. Waste oil derived biofuels in China bring brightness for global GHG mitigation
  185. Investigating Reasons for Differences in the Results of Environmental, Physical, and Hybrid Input-Output Models
  186. Life cycle assessment of biodiesel production in China
  187. How to Deal with Resource Productivity
  188. Unintended consequences of bioethanol feedstock choice in China
  189. Sustainable Urban Solid Waste Management from both Life Cycle and Urban Metabolism Perspectives
  190. Sustainable urban materials management for air pollutants mitigation based on urban physical input–output model
  191. Clustering economic sectors in China on a life cycle basis to achieve environmental sustainability
  192. Comparisons of four categories of waste recycling in China’s paper industry based on physical input–output life-cycle assessment model
  193. Comparing urban solid waste recycling from the viewpoint of urban metabolism based on physical input–output model: A case of Suzhou in China
  194. Features, trajectories and driving forces for energy-related GHG emissions from Chinese mega cites: The case of Beijing, Tianjin, Shanghai and Chongqing
  195. Interactions of energy technology development and new energy exploitation with water technology development in China
  196. What is driving CO2 emissions in a typical manufacturing center of South China? The case of Jiangsu Province
  197. Data Acquisition for Applying Physical Input-Output Tables in Chinese Cities
  198. Achieving Dewaterization in Industrial Parks
  199. Managing urban energy system: A case of Suzhou in China
  200. Urban Metabolism in China Achieving Dematerialization and Decarbonization in Suzhou
  201. An improved input–output model for energy analysis: A case study of Suzhou
  202. Three-dimensional hybrid enterprise input–output model for material metabolism analysis: a case study of coal mines in China