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  • 1
    Language: English
    Pages: 1 Online-Ressource (41 pages)
    Parallel Title: Erscheint auch als Dasgupta, Susmita Scalable Tracking of CO2 Emissions: A Global Analysis with Satellite Data
    Keywords: Air Quality and Clean Air ; Co2 Emissions ; Environment ; Local and Regional Co2 Tracking ; OCO-2 ; Satellite-Based Carbon Dioxide Measurement ; Urban Emissions Tracking ; Urban Pollution
    Abstract: This paper extends recent research on satellite-based carbon dioxide measurement to an easily updated template for tracking changes in carbon dioxide concentrations at local and regional scales. Using data from the National Aeronautics and Space Administration's Orbiting Carbon Observatory-2 satellite platform and a large sample of urban areas, a comparison of trend estimation models suggests that the template can use a simple model that estimates trends directly from satellite data pre-filtered to isolate local concentration anomalies. Illustrative applications are developed for a long-period trend model and a short-period model focused on change in the most recent year. In addition, the paper estimates carbon dioxide emissions for thousands of urban areas and identifies cities whose emissions performance is above or below expectation. Although the tracking model is "simple," it requires software and hardware that are beyond the means of many interested stakeholders. For this reason, the World Bank's Development Economics Vice Presidency has established an open web facility that pre-filters data from the National Aeronautics and Space Administration's Orbiting Carbon Observatory-2satellite and publishes monthly mean concentration anomalies for all terrestrial cells of a 25-kilometer global grid. The website will also publish annual carbon dioxide tracking reports for urban areas and provide information that links the 25-kilometer global grid cell IDs to IDs for urban areas and national administrative units (levels 0, 1, and 2)
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  • 2
    Language: English
    Pages: 1 Online-Ressource (36 pages)
    Parallel Title: Erscheint auch als Dasgupta, Susmita Identifying and Monitoring Priority Areas for Methane Emissions Reduction
    Keywords: Agriculture ; Agriculture Methane Pollution ; Environment ; Environmental Case Study ; Global Methane Pledge ; Methane Emission Reduction ; Oil Production Pollution ; Pollution Management and Control ; Rice Production Methane ; Satellite Methane Data
    Abstract: This paper identifies high-priority areas for methane emissions reduction and estimates recent emissions changes in those areas using atmospheric concentration data from the European Space Agency's Sentinel-5P satellite platform. The modeling approach is illustrated with three case studies: landfills in Spain (Madrid), irrigated rice production in India (Karnal district, Haryana state), and oil production in Iraq (Al Amarah district, Maysan governorate). For each case, the paper estimates two change models by fixed effects: the monthly trend in methane concentration from January 2019 to November 2022, and the difference between mean concentration in 2022 and the previous three years. The paper estimates the change models for 775 high-priority areas and finds that cases with decreasing methane emissions are outnumbered four to one by cases with increasing emissions. The paper also analyzes trends in high-priority areas for seven major methane source sectors (agricultural soils, livestock, gas, oil, coal, landfills, and wastewater) and finds only two where emissions decreases outnumber increases (gas and oil). Among World Bank income groups, decreases outnumber increases in high-income economies but increases are hugely dominant in the other three groups. The paper concludes with a presentation of summary emissions trend reports for all 775 high-priority areas, with accompanying maps and an Excel file. As satellite-based monitoring becomes more widely employed, such reports will provide a useful template for judging further progress toward fulfillment of the Global Methane Pledge
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  • 3
    Online Resource
    Online Resource
    Washington, D.C : The World Bank
    Language: English
    Pages: 1 Online-Ressource (41 pages)
    Parallel Title: Erscheint auch als Kahn, Matthew E Will the Developing World's Growing Middle Class Support Low-Carbon Policies?
    Keywords: Carbon Footprint ; Carbon Policy and Trading ; Climate Change ; Climate Change Mitigation and Green House Gases ; Energy ; Energy Consumption ; Environment ; Environmental Protection Policy ; Environmentalism ; Greenhouse Gas Reduction Policy ; International Co-Operation ; Middle-Class Consumption ; Sustainable Development
    Abstract: As billions of people in the developing world seek to increase their living standards, their aspirations pose a challenge to global efforts to cut greenhouse gas emissions. The emerging middle class is buying and operating energy intensive durables ranging from vehicles to air conditioners to computers. Owners of these durables represent an interest group with a stake in opposing carbon pricing. The political economy of encouraging middle class support for carbon pricing hinges on offsetting its perceived negative income effects. Rising environmentalism in the developing world could also increase support for credible greenhouse gas reduction policy. This paper quantifies these effects by estimating Engel curves of durables ownership, comparing the grid's carbon intensity by nation, and studying the demographic correlates of support for prioritizing environmental protection
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  • 4
    Online Resource
    Online Resource
    Washington, D.C : The World Bank
    Language: English
    Pages: 1 Online-Ressource (53 pages)
    Parallel Title: Erscheint auch als Print Version: Dasgupta, Susmita Urban CO2 Emissions: A Global Analysis with New Satellite Data
    Keywords: Carbon Dioxide Emissions ; City Carbon Performance ; Climate Change Mitigation and Green House Gases ; Environment ; Environment Kuznets Curve ; Environmental Economics and Policies ; Greenhouse Gas Emissions ; Railways Transport ; Satellite Date ; Subway ; Transport ; Urban Development ; Urban Environment ; Urban Pollution
    Abstract: This paper estimates an urban carbon dioxide emissions model using satellite-measured carbon dioxide concentrations from 2014 to 2020, for 1,236 cities in 138 countries. The model incorporates the global trend in carbon dioxide concentration, seasonal fluctuations by hemisphere, and a large set of georeferenced variables that incorporate carbon dioxide-intensive industry structure, emissions from agricultural and forest fires in neighboring areas, demography, the component of income that is uncorrelated with industry structure, and relevant geographic conditions. The income results provide the first test of an Environmental Kuznets Curve relationship for carbon dioxide based on actual observations. They suggest an environmental Kuznets curve that reaches a peak near or above USD 40,000 per capita, which is at the 90th percentile internationally. The research also finds that economic development has a significant effect on the direction of the relationship between population density and carbon dioxide emissions. The relationship is positive at very low incomes but becomes negative at higher incomes. The paper also uses cities' mean regression residuals to index their carbon dioxide emissions performance within and across regions, decomposes model carbon dioxide predictions into broad source categories for each city, and uses the regression residuals to explore the impact of subway systems. The findings show significantly lower carbon dioxide emissions for subway cities
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  • 5
    Online Resource
    Online Resource
    Washington, D.C : The World Bank
    Language: English
    Pages: Online-Ressource (1 online resource (28 p.))
    Edition: Online-Ausg. World Bank E-Library Archive
    Parallel Title: Lall, Somik Valuing Water for Chinese Industries
    Keywords: Economic Theory and Research ; Energy ; Energy Production and Transportation ; Environment ; Environmental Economics and Policies ; Groundwater ; Industrial Sector ; Industrial Use ; Industrial Water ; Industrial Water Demand ; Industrial Water Use ; Industry ; Industry ; Infrastructure Economics and Finance ; Infrastructure Regulation ; Macroeconomics and Economic Growth ; Municipal Wastewater ; Pollution ; Production Process ; Research ; River Basins ; Rivers ; Town Water Supply and Sanitation ; Water ; Water Conservation ; Water Conservation ; Water Recycling ; Water Resources ; Water Shortage ; Water Shortages ; Water Supply ; Water Supply and Sanitation ; Water Supply and Sanitation Governance and Institutions ; Water Supply and Systems ; Water Treatment ; Water Use ; Water and Industry ; Economic Theory and Research ; Energy ; Energy Production and Transportation ; Environment ; Environmental Economics and Policies ; Groundwater ; Industrial Sector ; Industrial Use ; Industrial Water ; Industrial Water Demand ; Industrial Water Use ; Industry ; Industry ; Infrastructure Economics and Finance ; Infrastructure Regulation ; Macroeconomics and Economic Growth ; Municipal Wastewater ; Pollution ; Production Process ; Research ; River Basins ; Rivers ; Town Water Supply and Sanitation ; Water ; Water Conservation ; Water Conservation ; Water Recycling ; Water Resources ; Water Shortage ; Water Shortages ; Water Supply ; Water Supply and Sanitation ; Water Supply and Sanitation Governance and Institutions ; Water Supply and Systems ; Water Treatment ; Water Use ; Water and Industry
    Abstract: The marginal productivity of water used for industry varies among sectors in China, but there is great potential for the Chinese government to save water by raising water prices to industry, to encourage water conservation. - Using plant-level data on more than 1,000 Chinese industrial plants, Wang and Lall estimate a production function treating capital, labor, water, and raw material as inputs to industrial production. They then estimate the marginal productivity of water based on the estimated production function. Using the marginal productivity approach to valuing water for industrial use, they also derive a model and estimates for the price elasticity of water use by Chinese industries. Previous studies used water demand functions and total cost functions to estimate firms' willingness to pay for water use. They find that the marginal productivity of water varies among sectors in China, with an industry average of 2.5 yuan per cubic meter of water. The average price elasticity of industrial water demand is about -1.0, suggesting a great potential for the Chinese government to use pricing policies to encourage water conservation in the industrial sector. Increasing water prices would reduce water use substantially. This paper - a product of Infrastructure and Environment, Development Research Group - is part of a larger effort in the group to understand the economics of industrial pollution control in developing countries
    URL: Volltext  (Deutschlandweit zugänglich)
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