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Anaerobic digester adoption on animal feeding operations.

机译:在动物饲养操作中采用厌氧消化池。

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摘要

The livestock industry may create environmental problems such as nutrient pollution in water bodies and the discharge of greenhouse gases into the atmosphere, but anaerobic digestion could be a viable solution. In an anaerobic digester, microorganisms digest manure to produce biogas, which is mostly methane. While environmentally beneficial, limited economic feasibility has prevented them from being widely adopted. Most previous research on the economics of anaerobic digestion systems has been limited to site-specific case studies in the dairy industry.;The objectives of this research were 1) to determine the economic feasibility of anaerobic digesters and covered lagoons on swine operations, 2) to determine how government policies, co-product prices, peer group influence, farm characteristics, and farmer beliefs affect the decision to adopt anaerobic digesters, and 3) to develop a production function, a fixed cost function, and a variable cost function for methane production in an anaerobic digester. The objectives were accomplished by applying capital budgeting, contingent valuation, willingness-to-accept, and econometric methods to data collected from a nation-wide survey of dairy and hog producers.;Farm size and type were important variables for economic feasibility and for predicting the likelihood of adoption. Results showed that methane production exhibits increasing returns to scale, and average fixed and variable costs decrease with size. For swine farms, lower cost, passive systems, such as covered lagoons, could be a more promising investment when government grants and carbon trading are not available. Low-rate systems (e.g. plug flow and complete mix digesters) with higher capital costs are more economically feasible on dairy farms because of their increased productivity. While the environmental benefits of anaerobic digesters are important for predicting whether or not a producer will consider the technology for manure management, lower capital costs, co-product marketing, or government grants are needed in order to encourage more widespread adoption.
机译:畜牧业可能会造成环境问题,例如水体中的营养物质污染以及温室气体向大气中的排放,但是厌氧消化可能是一个可行的解决方案。在厌氧消化池中,微生物消化粪便产生沼气,其中沼气大部分为甲烷。虽然对环境有益,但有限的经济可行性阻止了它们的广泛采用。以前关于厌氧消化系统经济学的大多数研究仅限于乳制品行业的特定案例研究;该研究的目标是1)确定厌氧消化池和有盖泻湖在猪场上的经济可行性,2)确定政府政策,副产品价格,同伴群体的影响力,农场特征和农民的信念如何影响采用厌氧消化器的决定,以及3)开发甲烷的生产函数,固定成本函数和可变成本函数在厌氧消化池中生产。这些目标是通过将资本预算,或有估值,接受意愿和计量经济学方法应用于从全国范围内对奶牛和生猪生产者的调查中收集的数据而实现的;农场规模和类型是经济可行性和预测的重要变量。被采纳的可能性。结果表明,甲烷生产展现出规模收益的增加,平均固定成本和可变成本随着规模的增加而降低。对于养猪场,如果没有政府拨款和碳交易,则低成本,无源系统(如有盖泻湖)可能是更有希望的投资。具有较高资本成本的低费率系统(例如塞流和完全混合蒸煮器)由于提高了生产率,因此在奶牛场上在经济上更可行。尽管厌氧消化池的环境效益对于预测生产者是否考虑将这种技术用于粪便管理很重要,但仍需要较低的资本成本,副产品营销或政府拨款,以鼓励更广泛的采用。

著录项

  • 作者

    Cowley, Cortney Ann.;

  • 作者单位

    Oklahoma State University.;

  • 授予单位 Oklahoma State University.;
  • 学科 Agricultural economics.;Alternative Energy.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 212 p.
  • 总页数 212
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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