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This book has the purpose of providing the "state of the arts" concerning bio-economic modelling dealing with agricultural systems. In most cases, the contributions use a methodology combining the use of biophysical and economic models, in all cases, an engineering production function approach is totally or partially applied. This practice is being developed in the last years as a response to concrete policy matters: agricultural policies are increasingly combined with environmental and natural resources policies, and this reality involves the need of an integrated assessment, that current economic models are not able to provide.
Ulrich Koester researches and teaches at the Institute for Agricultural Economics at the Christian-Albrechts-University of Kiel, Germany. He has been a member of the Scientific Advisory Board of the Ministry of Food, Agriculture and Forestry for over 20 years. Moreover, he gained experience working with the International Food Policy Research Institute in Washington D.C. and with numerous international organizations, including the World Bank, FAO, the European Commission, the European Parliament and the European Court of Auditors. His teaching experience is based on courses taught at more than ten universities in general economics and agricultural economics. Part I of the book lays the theoretical foundations for understanding price formation in product and factor markets. In addition to neoclassical theory, institutional economics is of particular importance. Part II presents and evaluates agricultural policy with special reference to the EU, whereby the evaluation framework goes beyond the usual welfare theory analysis. The book is also a valuable aid for students of economic policy, especially because of its detailed evaluation of individual agricultural market policy instruments. The book is aimed at students at universities, technical colleges as well as politicians interested in rational agricultural policy making.
To understand the impacts of support programs on global emissions, this paper considers the impacts of domestic subsidies, price distortions at the border, and investments in emission-reducing technologies on global greenhouse gas (GHG) emissions from agriculture. In a step towards a full evaluation of the impacts, it uses a counterfactual global model scenario showing how much emissions from agricultural production would change if agricultural support were abolished worldwide. The analysis indicates that, without subsidies paid directly to farmers, output of some emission-intensive activities and agricultural emissions would be smaller. Without agricultural trade protection, however, emissions would be higher. This is partly because protection reduces global demand more than it increases global agricultural supply, and partly because some countries that currently tax agriculture have high emission intensities. Policies that directly reduce emission intensities yield much larger reductions in emissions than those that reduce emission intensities by increasing overall productivity because overall productivity growth creates a rebound effect by reducing product prices and expanding output. A key challenge is designing policy reforms that effectively reduce emissions without jeopardizing other key goals such as improving nutrition and reducing poverty. While the scenario analysis in this paper does not propose any particular policy reform, it does provide an important building block towards a full understanding the impacts of repurposed agricultural support measures on mitigation of greenhouse gas emissions and adaptation to climate change. That full analysis is being undertaken in subsequent work, which will also take account of land-use change and alternative forms of agricultural policy support to align objectives of food security, farmers’ income security, production efficiency and resilience, and environmental protection.
Using economic models and empirical analysis, this volume examines a wide range of agricultural and biofuel policy issues and their effects on American agricultural and related agrarian insurance markets. Beginning with a look at the distribution of funds by insurance programs—created to support farmers but often benefiting crop processors instead—the book then examines the demand for biofuel and the effects of biofuel policies on agricultural price uncertainty. Also discussed are genetically engineered crops, which are assuming an increasingly important role in arbitrating tensions between energy production, environmental protection, and the global food supply. Other contributions discuss the major effects of genetic engineering on worldwide food markets. By addressing some of the most challenging topics at the intersection of agriculture and biotechnology, this volume informs crucial debates.
This volume in the 'Distortions to Agricultural Incentives' series focus on distortions to agricultural incentives from a global perspective.
This textbook integrates three related fields in economics, namely agricultural/forestry economics, environmental economics, and international trade, by foregrounding cost-benefit analysis as a significant policy tool. Exploring how welfare measures can be used in the analysis of agricultural, trade, and other economic policies, Applied Welfare Economics, Trade, and Agricultural Policy Analysis fills a gap in the literature on agricultural policy analysis by explaining the economic efficiency improvements and income transfers of various agricultural policy reforms in the United States, Canada, and the European Union. G. Cornelis van Kooten addresses methods of identifying and measuring economic surpluses (costs and benefits), the precautionary principle, identification of an appropriate discount rate, the importance of non-market values, and the role of agriculture in trade negotiations and climate change. Applied Welfare Economics, Trade, and Agricultural Policy Analysis draws on new research, brings attention to the existing literature, and includes review questions that challenge programming skills. The techniques developed in this text can be applied to the development and reform of agricultural policies in various regions in response to trade negotiations and many other situations involving government policy.
Types of economic deforestation models. Household and firm-level models. Regional-level models. National and macro-level models. Priority areas for future research.
This volume is written primarily for agricultural economists doing research on productivity. It includes discussions of the theoretical underpinnings of productivity measurement as well as the many practical considerations that go into translating this theory into actual measures of aggregated outputs and inputs. The unifying concept of agricultural productivity used across the chapters of this volume is aggregate total factor productivity (TFP) of the sector. The volume also contains detailed analysis of the underlying causes of agricultural productivity growth. Part I (chapters 2-6) examines agricultural productivity in high-income and transition countries. Part II (chapters 7-11) examines agricultural productivity growth and its driving forces in five important agricultural producers in Asia and Latin America. Part III (chapters 12-14) focuses on measuring and identifying constraints to agricultural productivity growth in sub-Saharan Africa. Part IV (chapters 15-16) gives a global perspective on agricultural productivity.
Using Microsoft Excel, the market leading spreadsheet package, this book combines theory with modelling aspects and spreadsheet analysis. Microeconomics Using Excel provides students with the tools with which to better understand microeconomic analysis.It focuses on solving microeconomic problems by integrating economic theory, policy analysis and