4.7 Article

Multistage vacuum membrane distillation (MSVMD) systems for high salinity applications

期刊

JOURNAL OF MEMBRANE SCIENCE
卷 497, 期 -, 页码 128-141

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.memsci.2015.09.009

关键词

GOR; Second law efficiency; VMD; High salinity; Multistage; ZLD; Produced water

资金

  1. Masdar Institute of Science and Technology (Masdar University), Abu Dhabi, UAE [02/MI/MI/CP/11/07633/GEN/G/00]
  2. Massachusetts Institute of Technology (MIT), Cambridge, MA, USA [02/MI/MI/CP/11/07633/GEN/G/00]
  3. MIT Rohsenow fellowship

向作者/读者索取更多资源

Multistage membrane distillation (MD) systems can have significantly higher efficiencies than their single stage counterparts. However, multistage MD system design has received limited attention. In this paper, the performance of a multistage vacuum membrane distillation (MSVMD) which is thermodynamically similar to a multi-stage flash distillation (MSF) is evaluated for desalination, brine concentration, and produced water reclamation applications. A wide range of solution concentrations were accurately modeled by implementing Pitzer's equations for NaCl-solution properties. The viability of MSVMD use for zero liquid discharge (ZLD) applications is investigated, by considering discharge salinities close to NaCl saturation conditions. Energy efficiency (gained output ratio or GOR), second law efficiency, and the specific membrane area were used to quantify the performance of the system. At high salinities, the increased boiling point elevation of the feed stream resulted in lower fluxes, larger heating requirements and lower GOR values. The second law efficiency, however, is higher under these conditions since the least heat for separation increases faster than the system's specific energy consumption with increase in salinity. Under high salinity conditions, the relative significance of irreversible losses is lower. Results indicate that MSVMD systems can be as efficient as a conventional MSF system, while using reasonable membrane areas and for a wide range of feed salinities. Given MD's advantages over MSF such as lower capital requirement and scalability, MSVMD can be an attractive alternative to conventional thermal desalination systems. (C) 2015 Elsevier B.V. All rights reserved.

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