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Life-cycle Environmental and Cost Impacts of Using an Algal Turf Scrubber for Wastewater Treatment and Electricity Generation.

机译:使用藻类洗涤塔处理废水和发电的生命周期环境和成本影响。

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摘要

lgae have been discussed as a biofuel feedstock but recent economic assessments have determined that algal biofuels are not cost effective in current energy markets. Likewise, several life cycle assessments have shown that algae cultivated exclusively for fuel production can result in net GHG emissions and energy consumption. Some researchers suggest that using algae to treat wastewater and produce energy products simultaneously could overcome these challenges. Little research has been published, however, on the environmental impacts of algal wastewater treatment systems.;The purpose of the research reported in this thesis was to determine the life cycle energy, greenhouse gas emissions, eutrophication potential, and cost impacts of incorporating an algal turf scrubber (ATS) into a treatment process for dairy wastewater. The ATS is a shallow flow-way which supports a biofilm of algae and other microorganisms. A life cycle model was developed for a conceptual treatment facility in order to assess system impacts. The system utilizes two anaerobic digesters: one for secondary wastewater treatment and one for algae digestion. Biogas from these digesters is used to generate electricity and process heat; no liquid fuels are produced by the system. The results show that utilization of an ATS significantly reduces eutrophication impacts by reducing chemical oxygen demand (COD) and removing nitrogen and phosphorous from the wastewater. With low water recirculation rates and good algae productivity, inclusion of the ATS in the treatment system results in net displacement of grid electricity and GHG emissions. High water recirculation rates through the ATS and drying of the algae biosolids results in net energy consumption and GHG emissions. The cost of wastewater treatment using the ATS was estimated to be
机译:lgae已经作为一种生物燃料原料进行了讨论,但是最近的经济评估已经确定,藻类生物燃料在当前的能源市场中并不具有成本效益。同样,一些生命周期评估表明,专门用于燃料生产的藻类会导致温室气体净排放和能源消耗。一些研究人员建议,使用藻类处理废水并同时生产能源产品可以克服这些挑战。然而,关于藻类废水处理系统对环境的影响的研究很少。本论文报道的研究目的是确定生命周期能量,温室气体排放,富营养化潜力以及掺入藻类的成本影响。草坪洗涤器(ATS)进入乳品废水处理工艺。 ATS是一条浅水通道,可支撑藻类和其他微生物的生物膜。为概念处理设施开发了生命周期模型,以评估系统影响。该系统利用两个厌氧消化池:一个用于二次废水处理,另一个用于藻类消化。这些沼气池产生的沼气用于发电和处理热量。系统不生产液体燃料。结果表明,通过降低化学需氧量(COD)并从废水中去除氮和磷,利用ATS可以显着减少富营养化影响。由于水的再循环率低且藻类生产率高,在处理系统中包含ATS会导致电网电力和温室气体排放的净位移。通过ATS进行的高水循环率和藻类生物固体的干燥导致净能耗和温室气体排放。使用ATS进行废水处理的成本估计为

著录项

  • 作者

    Higgins, Brendan Thomas.;

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Engineering Civil.;Environmental Sciences.;Water Resource Management.;Engineering Electronics and Electrical.
  • 学位 M.S.
  • 年度 2011
  • 页码 125 p.
  • 总页数 125
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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