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Supporting Energy Transitions and Miscanthus Program Development at the University of Iowa.

机译:爱荷华大学支持能源转型和芒草计划开发。

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摘要

Miscanthus is a highly productive, low-input biofuel crop that supports agricultural diversification with improved performance for climate commitment, energy security, and water quality over first generation biofuels. Despite its high performance, no local or regional markets for the feedstock have formed in North America, and current climate-based productivity assessment methods lack the information farmers and decision-makers need to establish commercial scale bioenergy markets, programs, and thermal co-firing plans. This study develops a Miscanthus Suitability Rating and a transferable field-scale siting method, applied at 10 m resolution across the State of Iowa to assess miscanthus production potential and identify individual farms that are highly suitable for large-scale miscanthus cultivation while maintaining a majority of existing row cropping acreage. Results show that highly suitable fields within 50 miles (84 km) of each of Iowa's coal-fired electrical generating units (EGUs) can displace up to 43% of current coal consumption. Every EGU in Iowa has land resource to produce local miscanthus to co-fire with other solid fuels at industry-leading levels without significantly impacting local row crop production. Seven of the state's smaller facilities could even operate exclusively on local miscanthus with advancements in densification technology. The energy evaluation tool developed in this work estimates the energy return on investment (EROI) of Iowa miscanthus for existing thermal generation facilities between 37 and 59, depending on transportation requirements and chemical field applications. This transition would diversify local agribusiness and energy feedstocks, reduce greenhouse gas emissions and provide a sustainable, dispatchable, in-state fuel source to complement wind and solar energy.
机译:芒草是一种高产,低投入的生物燃料作物,与第一代生物燃料相比,通过改善气候承诺,能源安全和水质的表现,支持农业多样化。尽管具有高性能,但北美尚未形成本地或区域性原料市场,并且当前基于气候的生产力评估方法缺乏农民和决策者建立商业规模生物能源市场,计划和热电联产所需的信息计划。这项研究开发了芒氏适宜性等级和可转移的现场规模选址方法,该方法在爱荷华州以10 m的分辨率应用,评估了芒can的生产潜力,并确定了高度适合大规模芒mis种植并同时保持大部分芒of生长的单个农场。现有行间种植面积。结果表明,距离爱荷华州每个燃煤发电机组(EGU)50英里(84公里)内的高度合适的油田可替代当前煤炭消耗的43%。爱荷华州的每个EGU都有土地资源来生产当地的芒can,与其他固体燃料一起以行业领先的水平燃烧,而不会显着影响当地的行作物产量。随着致密化技术的进步,该州的七个较小的设施甚至可以仅在当地的山can上运行。在这项工作中开发的能源评估工具,根据运输要求和化学领域的应用,估算爱荷华州爱荷华州现有火力发电设施的能源投资回报(EROI)在37至59之间。这种过渡将使当地的农业综合企业和能源原料多样化,减少温室气体排放,并提供可持续的,可调度的州内燃料源来补充风能和太阳能。

著录项

  • 作者

    Lain, Kayley Christina.;

  • 作者单位

    The University of Iowa.;

  • 授予单位 The University of Iowa.;
  • 学科 Energy.;Engineering.
  • 学位 M.S.
  • 年度 2017
  • 页码 50 p.
  • 总页数 50
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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