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This document is about the combination of ultrafiltration and reverse osmosis for the production of deionised water from surface waters.
CLEVER, M. ; JORDT, F. ; KNAUF, R. ; RABIGER, N. ; RUDEBUSCH, M. ; HILKER-SCHEIBEL, R. (2000): Process Water Production from River Water by Ultrafiltration and Reverse Osmosis . In: Desalination: Volume 131 , 325-336. URL [Accessed: 22.05.2019]![](/sites/default/files/reference_icons/PRACTICAL%20PLASTICS%20ny%20Product%20Cataloge.jpg)
This brochure gives an overview of the large assortment of water storage plastic tank products.
PRACTICAL PLASTICS (n.y): Product Catalogue. Darwin: Practical Plastics Ltd URL [Accessed: 22.05.2019]![](/sites/default/files/reference_icons/GRAHAM%20and%20VANDERSLICE%202007%20The%20Effectiveness%20of%20Large%20Household%20Water%20Storage%20Tanks.jpg)
This study evaluated changes in drinking water quality resulting from an intervention that provided large closed water storage tanks (2,500-gallons) to individual homes lacking a piped water supply.
GRAHAM, J.P. ; VANDERSLICE, J. (2007): The Effectiveness of Large Household Water Storage Tanks for Protecting the Quality of Drinking Water. In: Journal of Water and Health: , 307-313. URL [Accessed: 22.05.2019]![](/sites/default/files/reference_icons/SUBRAMANIAN%20Advanced%20Waste%20Water%20Treatment.jpg)
This document includes course contents on advanced treatment plants including suspended and dissolved solid removal, phosphate removal, dissolved organic compounds removal with different techniques.
SUBRAMANIAN, M.S. (n.y): Advanced Waste Water Treatment . Module 1.5. In: NPTEL: URL [Accessed: 22.05.2019]This website provides an introduction of membrane processes including microfiltration nanofiltration, and ultrafiltration.
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This document gives an overview on the role of chlorination in disinfecting drinking water. It includes information on chlorine and waterborne disease, disinfection by-products, and compares chlorine to alternative disinfection methods such as ozone and ultraviolet radiation.
C4 (2003): Drinking Water Chlorination. A Review of Disinfection Issues and Practices. Chlorine Chemistry Council (C3) and Canadian Chlorine Coordinating Committee (C4) URL [Accessed: 22.05.2019]![](/sites/default/files/reference_icons/EUROPEAN%20COMMISSION%202010%20Membrane%20Technologies%20for%20Water%20Applications.jpg)
This document summarises main advancements performed within European projects in the field of membrane technologies for water treatment
EC (2010): Membrane Technologies for Water Applications. Highlights from a selection of European research projects. Brussels: European Commission (EC) URL [Accessed: 22.05.2019]![](/sites/default/files/reference_icons/WALSH%202006%20Evaluating%20Membrane%20Processes%20for%20Drinking%20Water%20Treatment%20Design_0.jpg)
This case study outlines the activities of an engineering consulting firm that has been contracted to submit a preliminary design for a new water treatment plant for a rural community in Nova Scotia, Canada.
WALSH, M.E. GAGNON, G.A. (2006): Evaluating Membrane Processes for Drinking Water Treatment Design. Halifax, Canada: Association of Environmental Engineering & Science Professors URL [Accessed: 22.05.2019]![](/sites/default/files/reference_icons/OXFAM%202000%20Water%20Sanitation%20and%20Shelter%20Equipment.jpg)
These equipment packages have been devised by the Oxfam Public Health Engineering Team and others to help provide a reliable water supply, primarily for emergency situations such as in refugee camps and disaster-relief operations. The equipment is designed to be readily available, easily transported, simple to use, rapidly assembled, and fully self-contained, to provide an adequate water supply at moderate cost.
OXFAM (2000): Water, Sanitation, and Shelter Equipment. For Emergencies and Longer Term Use. Oxford: OXFAM URL [Accessed: 21.05.2019]![](/sites/default/files/reference_icons/MARGOT%20et%20al%202011%20Traitement%20des%20Micropolluants%20dans%20les%20Eaux%20Uses%20Rapport%20Final%20sur%20les%20Essais%20Pilotes%20.jpg)
This document presents the results of a pilot study aiming at removing water micropollutants at the Lausanne (Switzerland) wastewater treatment plant.
MARGOT, J. ; MAGNET, A. ; THONNEY, D. ; CHEVRE, N. ; ALENCASTRO, F. de ; ROSSI, L. (2011): Traitement des Micropolluants dans les Eaux Uses-Rapport Final sur les Essais Pilotes a la STEP de Vidy (Lausanne). In: Ed. Ville de Lausanne : URL [Accessed: 21.05.2019]![](/sites/default/files/reference_icons/CAWST%202009%20Household%20Water%20Treatment%20and%20Safe%20Storage%20Fact%20Sheets%20Academic%20Arsenic%20Removal%20Complexation.jpg)
Factsheet on the principles, construction, operation and maintenance of arsenic removal via complexation for drinking water treatment at household level.
CAWST (2009): Arsenic Removal. Complexation. (= Household Water Treatment and Safe Storage Fact Sheet - Academic ). Centre for Affordable Water and Sanitation Technology (CAWST) URL [Accessed: 21.05.2019]![](/sites/default/files/reference_icons/CAWST%202009%20Settling%20Fact%20Sheet.jpg)
A three-page factsheet containing introduction, operation procedure, treatment efficiency, operating criteria and other information related to settling.
CAWST (2009): Settling. (= Household Water Treatment and Safe Storage Fact Sheets ). Calgary: Centre for Affordable Water and Sanitation Technology (CAWST) URL [Accessed: 21.05.2019]This is the webpage of a producer of mobile compact water purification and desalination units from Switzerland.