Analysis of energy, water, land and cost implications of zero and minimal liquid discharge desalination technologies

被引:0
|
作者
Margaret G. O’Connell [1 ]
Neha Rajendran [1 ]
Menachem Elimelech [2 ]
Jack Gilron [3 ]
Jennifer B. Dunn [1 ]
机构
[1] Northwestern University,Department of Chemical and Biological Engineering
[2] Yale University,Department of Chemical and Environmental Engineering
[3] Ben-Gurion University of the Negev,Zuckerberg Institute for Water Research
来源
Nature Water | 2024年 / 2卷 / 11期
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D O I
10.1038/s44221-024-00327-1
中图分类号
学科分类号
摘要
Desalination is increasingly essential to ensure access to water as climate change and population growth stress fresh water supplies. Already in use in water-stressed regions around the world, desalination generates fresh water from salty sources, and in doing so forms a concentrated brine that requires disposal. There is a growing push for the adoption of zero/minimal liquid discharge (ZLD/MLD) technologies that recover additional water from this brine, thereby reducing the liquid volumes requiring disposal. In this analysis, we evaluated the cost, energy and sustainability impacts of 7 overarching treatment trains with 75 different configurations. We found ZLD/MLD water recoveries ranging from 32.6% to 98.6%, but with steep energy and cost trade-offs that underscore the crucial roles of ion-specific separations, heat integration and clean energy sources. We explored the key trade-offs between cost, energy and water recovery, elucidating the increasingly tight connections that are central to the energy–water nexus and desalination.
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页码:1116 / 1127
页数:11
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