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首页> 外文期刊>Clean >Assessment of the Intake and the Pretreatment Design in Existing Seawater Reverse Osmosis (SWRO) Plants by Hasse Diagram Technique (HDT)
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Assessment of the Intake and the Pretreatment Design in Existing Seawater Reverse Osmosis (SWRO) Plants by Hasse Diagram Technique (HDT)

机译:用Hasse图技术(HDT)评估现有海水反渗透(SWRO)植物的摄入量和预处理设计

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摘要

Seawater desalination is a rising technology intended to overcome water scarcity and is increasingly being used for the production of drinking water. A good quality pretreatment process is prominent to the successful operation of a Seawater Reverse Osmosis (SWRO) plant. The tasks of the intake and the pretreatment modules are to prevent fouling and to extend the lifetime of the reverse osmosis membranes. To practice the method of assessment design, 19 seawater plants with 11 different design strategies have been evaluated. The assessed strategies consist of: (i) Intake treatment, (ii) pretreatment aid (coagulation, flocculation, clarification), and (iii) pretreatment unit. Every possible combination of the design elements has been evaluated by a set of 15 attributes. The comparative evaluation has been conducted by Hasse diagram technique (HDT) using PyHasse software. The result of the HDT application includes 7 favorable incomparable design strategies. In order to solve the incomparability, the Condorcet-Kemeny-Young-Levenglick (C-K-Y-L) ranking procedure was additionally used and rendered the optimal design that is based on subsurface intake and membrane (ultrafiltration) pretreatment facilities. According to the results, both mathematical methods, i.e., the HDT in combination with the C-K-Y-L, procedure can be powerful and helpful tools to assist decisions concerning design strategies.
机译:海水淡化是一种旨在克服缺水的新兴技术,越来越多地用于生产饮用水。高质量的预处理过程对于海水反渗透(SWRO)工厂的成功运营至关重要。进气和预处理模块的任务是防止结垢并延长反渗透膜的使用寿命。为了实践评估设计方法,已经对具有11种不同设计策略的19家海水厂进行了评估。评估的策略包括:(i)摄入处理,(ii)预处理助剂(混凝,絮凝,澄清),以及(iii)预处理单元。设计元素的每种可能组合已通过15个属性集进行了评估。使用PyHasse软件通过Hasse图技术(HDT)进行了比较评估。 HDT应用程序的结果包括7种有利的无与伦比的设计策略。为了解决不可比性,还额外使用了Condorcet-Kemeny-Young-Levenglick(C-K-Y-L)排名程序,并基于地下摄入和膜(超滤)预处理设施提供了最佳设计。根据结果​​,两种数学方法(即HDT与C-K-Y-L结合)都可以成为有力且有用的工具,以协助进行有关设计策略的决策。

著录项

  • 来源
    《Clean》 |2011年第11期|p.933-940|共8页
  • 作者单位

    Department of Industrial Engineering and Management, Jerusalem College of Technology, 21 Havaad Haleumi St., Jerusalem 91160, Israel,Department of Chemical Engineering, Shenkar College of Engineering and Design, Ramat Gan, Israel;

    Leibniz-lnstitute of Freshwater Ecology and Inland Fisheries, Berlin, Germany;

    The Unit of Environmental Engineering, Faculty of Engineering Science, Ben-Gurion University of the Negev, Beer Sheva, Israel,Environment Water Resources, J. Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev, Kiryat Sde Boker, Israel;

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

    hasse diagram technique; partial order theory; reverse osmosis; seawater desalination; treatment selection;

    机译:哈希图技术;偏序理论反渗透;海水淡化治疗选择;

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