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Essays on Applied Resource Economics Using Bioeconomic Optimization Models.

机译:使用生物经济优化模型的应用资源经济学论文。

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摘要

With rising demographic growth, there is increasing interest in analytical studies that assess alternative policies to provide an optimal allocation of scarce natural resources while ensuring environmental sustainability. This dissertation consists of three essays in applied resource economics that are interconnected methodologically within the agricultural production sector of Economics.;The first chapter examines the sustainability of biofuels by simulating and evaluating an agricultural voluntary program that aims to increase the land use efficiency in the production of biofuels of first generation in the state of Alabama. The results show that participatory decisions may increase the net energy value of biofuels by 208% and reduce emissions by 26%; significantly contributing to the state energy goals.;The second chapter tests the hypothesis of overuse of fertilizers and pesticides in U.S. peanut farming with respect to other inputs and address genetic research to reduce the use of the most overused chemical input. The findings suggest that peanut producers overuse fungicide with respect to any other input and that fungi resistant genetically engineered peanuts may increase the producer welfare up to 36.2%.;The third chapter implements a bioeconomic model, which consists of a biophysical model and a stochastic dynamic recursive model that is used to measure potential economic and environmental welfare of cotton farmers derived from a rotation scheme that uses peanut as a complementary crop. The results show that the rotation scenario would lower farming costs by 14% due to nitrogen credits from prior peanut land use and reduce non-point source pollution from nitrogen runoff by 6.13% compared to continuous cotton farming.
机译:随着人口增长的增长,对评估替代政策以确保稀缺自然资源的最佳分配同时确保环境可持续性的分析研究越来越感兴趣。本论文由应用经济学中的三篇论文组成,它们在经济学的农业生产部门之间在方法上相互联系。第一章通过模拟和评估旨在提高生产中土地利用效率的农业自愿性计划,研究了生物燃料的可持续性。在阿拉巴马州的第一代生物燃料。结果表明,参与式决策可以使生物燃料的净能源价值提高208%,减少排放量达26%。第二章检验了美国花生种植中相对于其他投入过度使用化肥和杀虫剂的假设,并探讨了遗传研究以减少对过度使用的化学投入的使用。研究结果表明,花生生产者在任何其他投入方面都过度使用杀真菌剂,而抗真菌的基因工程花生可以使生产者的福利提高高达36.2%。;第三章实现了一种生物经济模型,该模型包括生物物理模型和随机动态模型递归模型,该模型用于衡量棉花种植者的潜在经济和环境福利,该模型源自采用花生作为辅助作物的轮作方案。结果表明,与连续种植棉花相比,轮作方案可将花生田先前的氮素利用减少了14%的耕作成本,并将氮素径流造成的面源污染减少了6.13%。

著录项

  • 作者

    Affuso, Ermanno.;

  • 作者单位

    Auburn University.;

  • 授予单位 Auburn University.;
  • 学科 Economics Environmental.;Economics Agricultural.;Natural Resource Management.;Sustainability.;Energy.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 106 p.
  • 总页数 106
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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