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Physical Sciences and Engineering Chemical Engineering Filtration and Separation

Implications of humic acid, inorganic carbon and speciation on fluoride retention mechanisms in nanofiltration and reverse osmosis

Article ID Journal Published Year Pages File Type
4989150 Journal of Membrane Science 2017 28 Pages PDF
Keywords
Reverse OsmosisHumic acidFluorideNanofiltrationStreaming potentialinorganic carbonSpeciation
Related Topics
Physical Sciences and Engineering Chemical Engineering Filtration and Separation
Preview
Implications of humic acid, inorganic carbon and speciation on fluoride retention mechanisms in nanofiltration and reverse osmosis
Authors
Isaac Owusu-Agyeman, Azam Jeihanipour, Thomas Luxbacher, Andrea Iris Schäfer,
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Journal
Journal of Membrane Science
Journal: Journal of Membrane Science
Related Categories
Reverse Osmosis
Humic acid
Fluoride
Nanofiltration
Streaming potential
inorganic carbon
Speciation
Bioengineering
Catalysis
Chemical Engineering (General)
Chemical Health and Safety
Colloid and Surface Chemistry
Filtration and Separation
Fluid Flow and Transfer Processes
Process Chemistry and Technology
Related Journals
Journal of Water Process Engineering
Chemical Engineering Research and Design
Desalination
Filtration + Separation
Separation and Purification Technology
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