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  • 1
    Language: English
    Pages: Online-Ressource (1 online resource (28 p.))
    Edition: Online-Ausg. World Bank E-Library Archive
    Parallel Title: Wang, Jinxia How China's Farmers Adapt To Climate Change
    Keywords: Agriculture ; Climate Change ; Common Property Resource Development ; Cotton ; Crop ; Crops and Crop Management Systems ; Environment ; Farmers ; Maize ; Oil crops ; Potatoes ; Poverty Reduction ; Rice ; Rural Development ; Rural Poverty Reduction ; Sugar ; Vegetables ; Wheat ; Agriculture ; Climate Change ; Common Property Resource Development ; Cotton ; Crop ; Crops and Crop Management Systems ; Environment ; Farmers ; Maize ; Oil crops ; Potatoes ; Poverty Reduction ; Rice ; Rural Development ; Rural Poverty Reduction ; Sugar ; Vegetables ; Wheat ; Agriculture ; Climate Change ; Common Property Resource Development ; Cotton ; Crop ; Crops and Crop Management Systems ; Environment ; Farmers ; Maize ; Oil crops ; Potatoes ; Poverty Reduction ; Rice ; Rural Development ; Rural Poverty Reduction ; Sugar ; Vegetables ; Wheat
    Abstract: This paper uses a cross sectional method to analyze irrigation choice and crop choice across 8,405 farmers in 28 provinces in China. The findings show that Chinese farmers are more likely to irrigate when facing lower temperatures and less precipitation. Farmers in warmer places are more likely to choose oil crops, maize, and especially cotton and wheat, and are less likely to choose vegetables, potatoes, sugar, and especially rice and soybeans. In wetter locations, farmers are more likely to choose soybeans, oil crops, sugar, vegetables, cotton, and especially rice, and they are less likely to choose potatoes, wheat, and especially maize. The analysis of how Chinese farmers have adapted to current climate, provides insight into how they will likely adapt when climate changes. Future climate scenarios will cause farmers in China to want to reduce irrigation and shift toward oil crops, wheat, and especially cotton. In turn, farmers will shift away from potatoes, rice, vegetables, and soybeans. However, adaptation will likely vary greatly from region to region. Policy makers should anticipate that adaptation is important, that the magnitude of changes depends on the climate scenario, and that the desired changes depend on the location of each farm
    URL: Volltext  (Deutschlandweit zugänglich)
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  • 2
    Language: English
    Pages: Online-Ressource (52 p)
    Edition: 2012 World Bank eLibrary
    Parallel Title: Rahman, Shaikh M The Cost Structure of the Clean Development Mechanism
    Abstract: This paper examines the cost of producing emission reduction credits under the Clean Development Mechanism. Using project-specific data, cost functions are estimated using alternative functional forms. The results show that, in general, the distribution of projects in the pipeline does not correspond exclusively to the cost of generating anticipated credits. Rather, investment choices appear to be influenced by location and project type considerations in a way that is consistent with variable transaction costs and investor preferences among hosts and classes of projects. This implies that comparative advantage based on the marginal cost of abatement is only one of several factors driving Clean Development Mechanism investments. This is significant since much of the conceptual and applied numerical literature concerning greenhouse gas mitigation policies relies on presumptions about relative abatement costs. The authors also find that Clean Development Mechanism projects generally exhibit constant or increasing returns to scale. In contrast, they find variations among classes of projects concerning economies of time
    URL: Volltext  (Deutschlandweit zugänglich)
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  • 3
    Language: English
    Pages: Online-Ressource (24 p)
    Edition: 2010 World Bank eLibrary
    Parallel Title: Larson, Donald F Will the Clean Development Mechanism Mobilize Anticipated Levels of Mitigation ?
    Abstract: Under the Kyoto Protocol, developed countries can only tap mitigation opportunities in developing countries by investing in projects under the Clean Development Mechanism. Yet Clean Development Mechanism investments have so far failed to reach many of the high-potential sectors identified by the Intergovernmental Panel on Climate Change. This raises doubts about whether the Clean Development Mechanism can generate an adequate supply of credits from the limited areas where it has proved successful. This paper examines the current trajectory of mitigation projects entering the Clean Development Mechanism pipeline and projects it forward under the assumption that the diffusion of the Clean Development Mechanism will follow a path similar to other innovations. Projections are then compared with pre-Clean Development Mechanism predictions of the mechanism’s potential market size to discern whether limits on the types of projects entering the pipeline have limited the expected supply of certified emission reductions. Parameter tests suggest that this is not the case and that currently identified Clean Development Mechanism investments will generate offsets in excess of early model predictions. In particular, under favorable circumstances, the mechanism is on track to deliver an average annual flow of roughly 700 million certified emission reductions by the close of 2012 and nearly to 1,100 million certified emission reductions by 2020
    URL: Volltext  (Deutschlandweit zugänglich)
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  • 4
    Language: English
    Pages: Online-Ressource (1 online resource (41 p.))
    Edition: Online-Ausg. World Bank E-Library Archive
    Parallel Title: Wang, Jinxia Can China Continue Feeding Itself ?
    Keywords: Agricultural Commodities ; Agriculture ; Climate ; Climate Change ; Climate Change ; Climate Changes ; Common Property Resource Development ; Crops and Crop Management Systems ; Environment ; Forestry ; Global Environment ; Global Warming ; Greenhouse Gases ; Ipcc ; Precipitation ; Rural Development ; Rural Development Knowledge and Information Systems ; Temperature ; Agricultural Commodities ; Agriculture ; Climate ; Climate Change ; Climate Change ; Climate Changes ; Common Property Resource Development ; Crops and Crop Management Systems ; Environment ; Forestry ; Global Environment ; Global Warming ; Greenhouse Gases ; Ipcc ; Precipitation ; Rural Development ; Rural Development Knowledge and Information Systems ; Temperature ; Agricultural Commodities ; Agriculture ; Climate ; Climate Change ; Climate Change ; Climate Changes ; Common Property Resource Development ; Crops and Crop Management Systems ; Environment ; Forestry ; Global Environment ; Global Warming ; Greenhouse Gases ; Ipcc ; Precipitation ; Rural Development ; Rural Development Knowledge and Information Systems ; Temperature
    Abstract: Several studies addressing the supply and demand for food in China suggest that the nation can largely meet its needs in the coming decades. However, these studies do not consider the effects of climate change. This paper examines whether near future expected changes in climate are likely to alter this picture. The authors analyze the effect of temperature and precipitation on net crop revenues using a cross section consisting of both rainfed and irrigated farms. Based on survey data from 8,405 households across 28 provinces, the results of the Ricardian analysis demonstrate that global warming is likely to be harmful to China but the impacts are likely to be very different in each region. The mid latitude region of China may benefit from warming but the southern and northern regions are likely to be damaged by warming. More precipitation is beneficial to Chinese farmers except in the wet southeast. Irrigated and rainfed farmers have similar responses to precipitation but not to temperature. Warmer temperatures may benefit irrigated farms but they are likely to harm rainfed farms. Finally, seasonal effects vary and are offsetting. Although we were able to measure the direct effect of precipitation and temperature, we could not capture the effects of change in water flow which will be very important in China. Can China continue feeding itself if climate changes? Based on the empirical results, the likely gains realized by some farmers will nearly offset the losses that will occur to other farmers in China. If future climate scenarios lead to significant reductions in water, there may be large damages not addressed in this study
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