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The impact of advanced wastewater treatment technologies and wastewater strength on the energy consumption of large wastewater treatment plants.

机译:先进的废水处理技术和废水强度对大型废水处理厂能耗的影响。

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摘要

Wastewater treatment is an energy intensive process often requiring the use of advanced treatment technologies. Stricter effluent standards have resulted in an increase in the number of wastewater treatment plants (WWTPs) with advanced treatment over time. Accordingly, associated energy consumption has also increased. Concerns about lowering operating costs for WWTPs and reducing associated greenhouse gas generation present an incentive to investigate energy use in WWTPs. This research investigated the impact of wastewater strength and the introduction of advanced treatment technologies, to replace traditional technologies on energy use to treat wastewater in WWTPs. Major unit processes were designed for a 100 MGD plant and variables controlling energy were identified and used to compute energy consumption.;Except for primary clarification and plate and frame press dewatering, energy consumption computed using fundamental equations are within values in the literature. Results show that energy consumption for dissolved air flotation thickeners, centrifuges, gravity thickeners, and aeration basins are heavily influence by wastewater strength. Secondary treatment and tertiary treatment require a significant amount of energy. Secondary treatment requires 104 times the energy of preliminary treatment, 17 times the energy of solids processing, and 2.5 times the energy of tertiary treatment. Secondary treatment requires 41 times the energy of preliminary treatment, and 7 times the energy of solids processing.;The results of this research provide a means of estimating energy consumption in the design and operation phase of a WWTP. By using the fundamental equations and methodology presented, alternative technologies can be compared or targeted for future energy savings implementation. Limitations of the methodology include design assumptions having to be made carefully, as well as assumptions of motor and equipment efficiencies.
机译:废水处理是一个能源密集型过程,通常需要使用先进的处理技术。严格的废水标准导致随着时间的流逝,废水处理厂(WWTP)数量的增加。因此,相关的能量消耗也增加了。对降低污水处理厂运营成本和减少相关温室气体产生的担忧促使人们调查污水处理厂的能源使用。这项研究调查了废水强度的影响,并介绍了先进的处理技术,以取代传统技术对污水处理厂的废水处理所消耗的能源。为一个100 MGD的工厂设计了主要的单元过程,并确定了控制能量的变量并用于计算能耗。除了基本澄清和板框压力机脱水以外,使用基本方程式计算的能耗在文献中范围内。结果表明,溶解气浮法浓缩机,离心机,重力浓缩机和曝气池的能耗受废水强度的影响很大。二级治疗和三级治疗需要大量能量。二级处理的能量是初级处理能量的104倍,固体处理能量的17倍,三级处理能量的2.5倍。二级处理的能量是预处理的41倍,是固体处理能量的7倍。这项研究的结果为估算污水处理厂的设计和运行阶段的能耗提供了一种方法。通过使用提出的基本方程式和方法,可以比较替代技术或将其作为目标,以实现未来的节能目标。该方法的局限性包括必须谨慎进行的设计假设以及电机和设备效率的假设。

著录项

  • 作者

    Newell, Timothy.;

  • 作者单位

    University of Nevada, Las Vegas.;

  • 授予单位 University of Nevada, Las Vegas.;
  • 学科 Engineering Civil.;Sustainability.;Energy.;Water Resource Management.
  • 学位 M.S.E.
  • 年度 2012
  • 页码 214 p.
  • 总页数 214
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:43:39

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