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Low cost synergistic desalination processes.

机译:低成本的协同淡化工艺。

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摘要

Desalination is a critical separation process for combating global water stress. In this thesis synergistic desalination processes are developed using process synthesis, integration, and techno-economic optimization.;Reverse osmosis (RO), accounts for 96% of desalinated water in the U.S. However, it is plagued by the problem of mineral scaling on membrane, which reduces the water recovery and increases the brine production. Novel hybrid RO desalination processes involving Ion Exchange (IEX) water softening and heating by direct injection of steam were developed and optimized. The IEX was regenerated with the concentrate from RO, eliminating the need for external regeneration chemicals. The hybrid processes developed at the scale of 1–96 million US gallons per day for concentrated brackish groundwater of southwest USA and for the Colorado River alleviated the problem of mineral scaling and improved the water recovery to as high as 96%. Annual savings amounting to US;Produced water is the largest volume byproduct stream in oil and gas production. USA produces about 7 barrel of produced water per barrel of oil. Produced water has an adverse environmental impact due to its complex composition and disposal costs can be as high as US;A novel hybrid Adsorption/IEX/RO process was developed for produced water purification. The adsorber removed the dissolved hydrocarbons while the IEX removed scale causing precursors. The adsorber was regenerated by a novel method. A part of the hydrocarbon free discharge from the adsorber is pressurized, heated to 160°C and then used to regenerate the adsorber. Improvement in water recovery (to 86%) translated into a predicted 22.8% decrease in costs amounting to US;The new high water recovery processes delineated in this work provide an array of novel options for desalination under different conditions. A generalized methodology for process synthesis, integration and optimization is presented.
机译:淡化是与全球水资源压力作斗争的关键分离过程。本文通过工艺综合,集成和技术经济优化来开发协同淡化工艺。;反渗透(RO)占美国淡化水的96%,但是它受到膜上矿物垢的困扰。 ,这会降低水的回收率并增加盐水的产量。开发和优化了包括离子交换(IEX)水软化和直接注入蒸汽加热的新型混合RO脱盐工艺。 IEX使用RO精矿进行再生,无需外部再生化学品。针对美国西南部的咸咸淡水和科罗拉多河,每天开发的混合工艺规模为1到9600万美制加仑,缓解了矿物结垢的问题,并将水的回收率提高到96%。每年节省的费用为美国;生产的水是石油和天然气生产中产量最高的副产品。美国每桶石油生产约7桶采出水。采出水由于其复杂的成分而对环境造成不利影响,处置费用可能高达美国;开发了一种新颖的混合吸附/ IEX / RO工艺来净化采出水。吸附器去除了溶解的碳氢化合物,而IEX去除了引起前体的水垢。吸附剂通过新方法再生。将来自吸附器的一部分无烃排放物加压,加热到160°C,然后用于再生吸附器。水回收率的提高(达到86%)意味着美国的成本预计降低了22.8%;这项工作中描述的新的高水回收率工艺为在不同条件下进行脱盐提供了一系列新颖的选择。提出了一种用于过程综合,集成和优化的通用方法。

著录项

  • 作者

    Venkatesan, Anand.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Engineering Chemical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 283 p.
  • 总页数 283
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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