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Removal and utilization of wastewater nutrients for algae biomass and biofuels.

机译:藻类生物质和生物燃料的废水养分的去除和利用。

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摘要

The Logan City Environmental Department operates a facility that consists of 460 acres of fairly shallow lagoons (∼ 5'deep) for biological wastewater treatment that meets targets for primary and secondary treatments (solids, biological oxygen demand (BOD), and pathogen removal). Significant natural algal growth occurs in these lagoons, which improves BOD removal through oxygenation and also facilitates N removal through volatilization as ammonia under high pH conditions created by algal growth. Phosphorus, however, is non-volatile and stays in the water and likely cycles in and out of algal cells as they grow and die in the lagoons. In the near future, the regulatory limits on phosphorus released from the Logan wastewater treatment facility are likely to become significantly lower to counter potential downstream eutrophication. One way to potentially lower phosphorus levels in the wastewater effluent is through management of algal growth in the lagoons. As mentioned above, algae growth naturally occurs in the treatment lagoons and if the algal biomass is harvested when growth yields are highest, the phosphorus contained in the cells could be removed to obtain phosphorus-free water. The algal biomass could then be used for production of biofuels. This research focuses on laboratory and pilot assessments to show the ability of algae indigenous to the Logan lagoons to uptake phosphorus and produce biomass that can be used for biofuel production.
机译:洛根市环境部门运营的设施由460英亩的浅水泻湖(约5英尺深)组成,用于生物废水处理,可满足一级和二级处理(固体,生物需氧量(BOD)和病原体去除)的目标。在这些泻湖中发生了明显的天然藻类生长,这改善了通过氧合去除BOD的能力,并且还促进了藻类生长在高pH条件下氨气挥发形式的N的去除。但是,磷是非挥发性的,会滞留在水中,并可能随着藻类细胞在泻湖中的生长和死亡而循环进出藻类细胞。在不久的将来,对Logan废水处理设施释放的磷的监管限制可能会大大降低,以应对潜在的下游富营养化。降低废水中磷含量的一种方法是通过管理泻湖中的藻类生长。如上所述,藻类生长自然地发生在处理泻湖中,如果在生长产量最高时收获藻类生物质,则可以去除细胞中所含的磷以获得无磷的水。然后,藻类生物质可用于生产生物燃料。这项研究的重点是实验室和中试评估,以显示洛根泻湖原生的藻类吸收磷并产生可用于生物燃料生产的生物量的能力。

著录项

  • 作者

    Griffiths, Erick W.;

  • 作者单位

    Utah State University.;

  • 授予单位 Utah State University.;
  • 学科 Engineering Environmental.
  • 学位 M.S.
  • 年度 2010
  • 页码 71 p.
  • 总页数 71
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:36:46

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