Comprehensive analysis of a hybrid FO/crystallization/RO process for improving its economic feasibility to seawater desalination

  • Park, Kiho
  • Kim, Do Yeon
  • Jang, Yoon Hyuk
  • Kim, Min-gyu
  • Yang, Dae Ryook
  • ... Hong, Seungkwan
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초록

In this study, the FO/crystallization/RO hybrid process was analyzed comprehensively, including experimentation, modeling, and energy and cost estimation, to examine and improve its feasibility to seawater desalination. A new operating strategy by heating the FO process to 45 degrees C was suggested, and a detailed process design was conducted. A comparative analysis with the conventional seawater reverse osmosis (SWRO) process was performed in terms of specific energy consumption (SEC) and specific water cost (SWC). The hybrid process can produce fresh water with SWC of 0.6964 /m(3) and electrical SEC of 2.674 kWh/m(3)), the hybrid process can produce water with comparable cost and energy consumption. An economic feasibility study that utilized the waste heat and the developed FO technology was also carried out to investigate future developments of the hybrid process. The SWC can be reduced to 0.6435 $/m(3) with free waste heat energy. The permeate water quality of the hybrid process was about half that of the conventional SWRO process on molar basis. The results revealed that the FO/crystallization/RO hybrid process can be utilized as a competitive process for seawater desalination with high recovery and high water quality. (C) 2019 Elsevier Ltd. All rights reserved.

키워드

Seawater desalinationModelingEconomic analysisForward osmosisReverse osmosisINTERNAL CONCENTRATION POLARIZATIONREVERSE-OSMOSIS SYSTEMMEMBRANE DISTILLATIONOSMOTIC COEFFICIENTSMATHEMATICAL-MODELHIGH-PERFORMANCEWATER-TREATMENTFLUX BEHAVIORENERGYDESIGN
제목
Comprehensive analysis of a hybrid FO/crystallization/RO process for improving its economic feasibility to seawater desalination
저자
Park, KihoKim, Do YeonJang, Yoon HyukKim, Min-gyuYang, Dae RyookHong, Seungkwan
DOI
10.1016/j.watres.2019.115426
발행일
2020-03-15
유형
Article
저널명
Water Research
171