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Modeling Future Biofuel Supply Chains using Spatially Explicit Infrastructure Optimization.

机译:使用空间显式基础架构优化对未来生物燃料供应链进行建模。

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摘要

Policies have been enacted that promote biofuels with the goal of reducing greenhouse gas emissions, reduce dependence on petroleum and to spur rural economic growth. The supply of biofuels that can meet these three goals is limited. The cost of this supply is influenced by the geography of the biomass resource and demand for fuels. Existing studies projecting the future supply have not accounted for the spatial aspects of the biofuel supply in detail.;This dissertation presents a spatially-explicit model of future biofuel supply chains in the United States, with the goal of providing supply curves of biofuels by resource-technology pathway with detailed accounting of the required infrastructure. The model is used to analyze the potential supply of biofuels for meeting the federal Renewable Fuel Standard (RFS2) and analyze biofuels from waste and residue resources in California at high resolution with accounting for air pollutant emissions.;The results of the national case study project that domestic biofuels can achieve the RFS2 mandates for 2022 at fuel prices of between ;Waste and residue biomass can provide quantities of biofuels that assist with policy goals. Nationally, waste and residue resources are projected to provide between 35 and 64 percent of the RFS2 mandate in both 2018 and 2022. In California, biofuels from waste and residue resources have limited potential for petroleum displacement, but could contribute 40-70% of the LCFS emissions reductions with mixed and uncertain results on air quality.
机译:已经制定了促进生物燃料的政策,其目标是减少温室气体排放,减少对石油的依赖并促进农村经济增长。可以实现这三个目标的生物燃料的供应是有限的。这种供应的成本受生物质资源的地理位置和对燃料的需求的影响。现有的预测未来供应的研究并未详细说明生物燃料供应的空间方面。本论文提出了美国未来生物燃料供应链的空间明晰模型,目的是按资源提供生物燃料的供应曲线。技术途径,详细说明所需的基础结构。该模型用于分析满足联邦可再生燃料标准(RFS2)的潜在生物燃料供应,并以高分辨率分析加利福尼亚州废物和残渣资源中的生物燃料,并考虑了空气污染物的排放。;国家案例研究项目的结果家用生物燃料可以达到2022年的RFS2要求,而燃料价格介于;垃圾和残余生物量可以提供有助于政策目标的大量生物燃料。在美国全国范围内,预计到2018年和2022年,废弃物和残余物资源将占RFS2任务的35%至64%。在加利福尼亚州,废弃物和残余物资源产生的生物燃料驱替石油的潜力有限,但可能贡献40%至70%的石油。降低LCFS排放,对空气质量的影响参差不齐。

著录项

  • 作者

    Parker, Nathan Chandler.;

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Alternative Energy.;Operations Research.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 273 p.
  • 总页数 273
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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