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Improving the thermodynamic and economic efficiencies of desalination plants.

机译:提高海水淡化厂的热力学和经济效率。

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摘要

Reverse osmosis, distillation, and freeze desalination processes are analyzed using the first and second-laws of thermodynamics with particular attention to the minimum separation work requirement and the flow exergy. The minimum work of general complete separation processes is first investigated by considering reversible processes for which entropy generation and exergy destruction are zero. Minimum work relations for complete separation of mixtures are obtained and presented in various convenient forms. These relations are later employed to develop the minimum separation work for incomplete separation of saline water solution encountered in desalination plants. The minimum work input is determined for various salinities of incoming saline water and outgoing brine and product water, and the results are tabulated and plotted. The minimum work values show that a lower and an upper limit for the minimum work exist at corresponding recovery ratios of 0% and 100%. The plots of the minimum work versus recovery ratio at various salinities of the incoming saline water also show that there is an optimum value of the recovery ratio which decreases with increasing salinity. The analysis of the minimum separation work is also performed for the reverse osmosis and distillation processes as well as the freeze desalination process. It is shown that the minimum separation work is independent of any hardware or process and thus the same for all three processes. Next, the exergy analysis of typical ideal and actual reverse osmosis desalination processes is conducted together with the discussion of the minimum separation work requirement. The exergy changes of major components are calculated and illustrated using exergy flow diagrams.
机译:使用热力学的第一定律和第二定律分析反渗透,蒸馏和冷冻淡化过程,尤其要注意最小的分离工作要求和流能。首先通过考虑可逆过程的熵产生和(火用)破坏为零来研究一般完全分离过程的最小功。获得了混合物完全分离的最小功关系,并以各种方便的形式呈现。这些关系随后被用于开发最小分离工作,以最小化海水淡化厂中遇到的盐水溶液的分离。确定输入的盐水,流出的盐水和产水的各种盐度的最小功输入,并将结果制成表格并绘制成图。最小功值表明,最小功的下限和上限在对应的0%和100%的回收率下存在。进水盐水中各种盐度下的最小功与回收率的关系图也表明,有一个最佳回收率值,随盐度的增加而降低。还对反渗透和蒸馏过程以及冷冻淡化过程进行了最小分离功的分析。结果表明,最小的分离工作独立于任何硬件或过程,因此对于所有三个过程都相同。接下来,对典型的理想和实际反渗透淡化工艺进行了火用分析,并讨论了最小分离工作的要求。主要成分的火用变化通过火用流程图进行计算和说明。

著录项

  • 作者

    Cerci, Yunus.;

  • 作者单位

    University of Nevada, Reno.;

  • 授予单位 University of Nevada, Reno.;
  • 学科 Biology Oceanography.; Engineering Mechanical.; Environmental Sciences.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 122 p.
  • 总页数 122
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 海洋生物;机械、仪表工业;环境科学基础理论;
  • 关键词

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