Literature DB >> 21076220

Managed aquifer recharge: rediscovering nature as a leading edge technology.

P Dillon1, S Toze, D Page, J Vanderzalm, E Bekele, J Sidhu, S Rinck-Pfeiffer.   

Abstract

Use of Managed Aquifer Recharge (MAR) has rapidly increased in Australia, USA, and Europe in recent years as an efficient means of recycling stormwater or treated sewage effluent for non-potable and indirect potable reuse in urban and rural areas. Yet aquifers have been relied on knowingly for water storage and unwittingly for water treatment for millennia. Hence if 'leading edge' is defined as 'the foremost part of a trend; a vanguard', it would be misleading to claim managed aquifer recharge as a leading edge technology. However it has taken a significant investment in scientific research in recent years to demonstrate the effectiveness of aquifers as sustainable treatment systems to enable managed aquifer recharge to be recognised along side engineered treatment systems in water recycling. It is a 'cross-over' technology that is applicable to water and wastewater treatment and makes use of passive low energy processes to spectacularly reduce the energy requirements for water supply. It is robust within limits, has low cost, is suitable from village to city scale supplies, and offers as yet almost untapped opportunities for producing safe drinking water supplies where they do not yet exist. It will have an increasingly valued role in securing water supplies to sustain cities affected by climate change and population growth. However it is not a universal panacea and relies on the presence of suitable aquifers and sources of water together with effective governance to ensure human health and environment protection and water resources planning and management. This paper describes managed aquifer recharge, illustrates its use in Australia, outlining economics, guidelines and policies, and presents some of the knowledge about aquifer treatment processes that are revealing the latent value of aquifers as urban water infrastructure and provide a driver to improving our understanding of urban hydrogeology.

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Year:  2010        PMID: 21076220     DOI: 10.2166/wst.2010.444

Source DB:  PubMed          Journal:  Water Sci Technol        ISSN: 0273-1223            Impact factor:   1.915


  5 in total

1.  Optimization of sampling strategy to determine pathogen removal efficacy of activated sludge treatment plant.

Authors:  Jatinder P S Sidhu; Warish Ahmed; Andrew Palmer; Kylie Smith; Leonie Hodgers; Simon Toze
Journal:  Environ Sci Pollut Res Int       Date:  2017-06-28       Impact factor: 4.223

2.  Comparison of recharge from drywells and infiltration basins: A modeling study.

Authors:  Salini Sasidharan; Scott A Bradford; Jiří Šimůnek; Stephen R Kraemer
Journal:  J Hydrol (Amst)       Date:  2021-03-01       Impact factor: 5.722

3.  Urban storm water infiltration systems are not reliable sinks for biocides: evidence from column experiments.

Authors:  Marcus Bork; Jens Lange; Markus Graf-Rosenfellner; Birte Hensen; Oliver Olsson; Thomas Hartung; Elena Fernández-Pascual; Friederike Lang
Journal:  Sci Rep       Date:  2021-03-31       Impact factor: 4.379

4.  Stepped-wedge cluster-randomised controlled trial to assess the cardiovascular health effects of a managed aquifer recharge initiative to reduce drinking water salinity in southwest coastal Bangladesh: study design and rationale.

Authors:  Abu Mohd Naser; Leanne Unicomb; Solaiman Doza; Kazi Matin Ahmed; Mahbubur Rahman; Mohammad Nasir Uddin; Shamshad B Quraishi; Shahjada Selim; Mohammad Shamsudduha; William Burgess; Howard H Chang; Matthew O Gribble; Thomas F Clasen; Stephen P Luby
Journal:  BMJ Open       Date:  2017-09-01       Impact factor: 2.692

5.  Clogging and Water Quality Change Effects of Typical Metal Pollutants under Intermittent Managed Aquifer Recharge Using Urban Stormwater.

Authors:  Siyao Ma; Yalin Song; Xueyan Ye; Xinqiang Du; Jingjia Ma
Journal:  Int J Environ Res Public Health       Date:  2021-12-16       Impact factor: 3.390

  5 in total

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