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Utilization of municipal wastewater for cooling in thermoelectric power plants: Evaluation of the combined cost of makeup water treatment and increased condenser fouling

机译:利用市政废水冷却热电厂:评估补充水处理和增加冷凝器结垢的综合成本

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摘要

A methodology is presented to calculate the TCC (total combined cost) of water sourcing, water treatment and condenser fouling in the recirculating cooling systems of thermoelectric power plants. The methodology is employed to evaluate the economic viability of using treated MWW (municipal waste-water) to replace the use of freshwater as makeup water to power plant cooling systems. Cost analyses are presented for a reference power plant and five different tertiary treatment scenarios to reduce the scaling tendencies of MWW. Results indicate that a 550 MW sub-critical coal fired power plant with a makeup water requirement of 29.3 ML/day has a TCC of $3.0-3.2 million/yr associated with the use of treated MWW for cooling. (All costs USD (United States dollars) 2009). This translates to a freshwater conservation cost of $0.29/kL, which is considerably lower than that of dry air cooling technology, $1.5/ kL, as well as the 2020 conservation cost target set by the U.S. Department of Energy, $0.74/kL Results also show that if the available price of freshwater exceeds that of secondary-treated MWW by more than $0.13-0.14/kL, it can be economically advantageous to purchase secondary MWW and treat it for utilization in the recirculating cooling system of a thermoelectric power plant.
机译:提出了一种方法来计算热电厂循环冷却系统中水源,水处理和冷凝器结垢的TCC(总成本)。该方法用于评估使用处理过的MWW(市政废水)代替淡水作为电厂冷却系统的补充水的经济可行性。提出了针对参考电厂和五种不同的三级处理方案的成本分析,以减少MWW的规模化趋势。结果表明,一个550 MW次临界燃煤电厂的补充水需求量为29.3 ML /天,与使用处理过的MWW进行冷却相关的TCC为3.0-320万美元/年。 (所有费用均为2009年的美元(美元))。这意味着淡水保护成本为$ 0.29 / kL,远低于干空气冷却技术的成本($ 1.5 / kL)以及美国能源部设定的2020年保护成本目标($ 0.74 / kL)。如果淡水的可用价格比二次处理的MWW的可用价格高出$ 0.13-0.14 / kL以上,则购买二次MWW并将其处理后用于热电厂的循环冷却系统在经济上是有利的。

著录项

  • 来源
    《Energy》 |2013年第1期|139-147|共9页
  • 作者单位

    Illinois Institute of Technology, Department of Chemical and Biological Engineering, 10 W. 33rd St RM 127 PH, Chicago, IL 60616, USA;

    Camegie Mellon University, Department of Civil and Environmental Engineering, 5000 Forbes Ave, PH 119, Pittsburgh, PA 15213, USA;

    Illinois Institute of Technology, Department of Chemical and Biological Engineering, 10 W. 33rd St RM 127 PH, Chicago, IL 60616, USA;

    Illinois Institute of Technology, Department of Chemical and Biological Engineering, 10 W. 33rd St RM 127 PH, Chicago, IL 60616, USA;

    Illinois Institute of Technology, Department of Chemical and Biological Engineering, 10 W. 33rd St RM 127 PH, Chicago, IL 60616, USA;

    Camegie Mellon University, Department of Civil and Environmental Engineering, 5000 Forbes Ave, PH 119, Pittsburgh, PA 15213, USA;

    Tamkang University, Water Resources Management and Policy Research Center, 151 Yingzhuan Rd, Danshui Dist., New Taipei City 251, Taiwan;

    US. Department of Energy, National Energy Technology Laboratory, 3610 Collins Ferry Rd PO Box 880, Morgantown, WV, USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Power; Electricity; Fouling; Water treatment; Wastewater; Freshwater conservation;

    机译:功率;电力;结垢;水处理;废水;淡水保护;
  • 入库时间 2022-08-18 00:18:43

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