4.7 Article

Can emerging membrane-based desalination technologies replace reverse osmosis?

期刊

DESALINATION
卷 500, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.desal.2020.114844

关键词

Seawater desalination; Reverse osmosis; Forward osmosis; Membrane distillation; Capacitive deionisation; Hybrid systems

资金

  1. EPSRC
  2. EPSRC [EP/S032258/1] Funding Source: UKRI

向作者/读者索取更多资源

Growing uncertainty in future freshwater availability has led to an increase in desalination installations. Reverse osmosis (RO) is the most widely adopted technique, but alternatives such as forward osmosis (FO), membrane distillation (MD) and capacitive deionisation (CDI) offer potential advantages and recent advancements in these fields are discussed.
Growing uncertainty in the future availability of freshwater sources has led to an increase in installations for desalination of seawater. Reverse osmosis (RO), currently the most widely adopted technique, has caused environmental concerns over the high associated greenhouse gas emissions and generation of large amounts of chemicals-containing brine. Significant consumption of electricity for RO desalination is an additional challenge, particularly in remote locations. In this review, forward osmosis (FO), membrane distillation (MD) and capacitive deionisation (CDI) are assessed as potential substitute technologies and the major recent advancements in each field are discussed. These emerging technologies offer significant advantages over RO, such as higher salt rejection (CDI, MD), higher recovery of water (MD), fewer pre-treatment stages (MD, FO) and the ability to use low-grade energy (MD, FO). In their current state, stand-alone technologies cannot compete with RO until certain challenges are addressed, including pore-wetting (MD) and high energy consumption (MD, CDI, FO). Hybrid systems that combine RO and emerging technologies may be useful for feed waters that cannot be treated by RO alone and their benefits may be able to offset the increase in capital costs. These and other aspects, such as operational stability should be considered in larger-scale, long-term studies.

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