4.7 Article

Economic analysis of desalination technologies in the context of carbon pricing, and opportunities for membrane distillation

Journal

DESALINATION
Volume 323, Issue -, Pages 66-74

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.desal.2013.03.033

Keywords

Membrane distillation; Desalination; Carbon tax; Price; Economics and waste heat

Funding

  1. CSIRO through CSIRO, Minerals Down Under Flagship Award
  2. Victoria University

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The economics of membrane distillation (MD) and common seawater desalination methods including multi effect distillation (MED), multistage flash (MSF) and reverse osmosis (RO) are compared. MD also has the opportunity to enhance RU recovery, demonstrated experimentally on RU concentrate from groundwater. MD concentrated RU brine to 361,000 mg/L total dissolved solids, an order of magnitude more saline than typical seawater, validating this potential. On a reference 30,000 m(3)/day plant, MD has similar economics with other thermal desalination techniques, but RU is more cost effective. With the inclusion of a carbon tax of $23 per tonne carbon in Australia, RU remained the economically favourable process. However, when heat comes at a cost equivalent of 10% of the value of the steam needed for MD and MED, under a carbon tax regime, the cost of MD reduces to $0.66/m(3) which is cheaper than RU and MED. The favour to MD was due to lower material cost. On low thermally, high electrically efficient installations MD can desalinate water from low temperature (<50 degrees C) heat sources at a cost of $0.57/m(3). Our assessment has found that generally, MD opportunities occur when heat is available at low cost, while extended recovery of RU brine is also viable. (C) 2013 Elsevier B.V. All rights reserved.

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