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Removal of Nutrients from Water Using Biosurfactant Micellar-Enhanced Ultrafiltration

Author(s): Binte Rafiq Era S; Mulligan CN;

The removal of NH4+, NO3-, and NH3- from wastewater can be difficult and expensive. Through physical, chemical, and biological processes, metals and nutrients can be extracted from wastewater. Very few scientific investigations have employed surfactants wit ...

Article GUID: 36838547


Surfactant-enhanced mobilization of persistent organic pollutants: Potential for soil and sediment remediation and unintended consequences

Author(s): Bolan S; Padhye LP; Mulligan CN; Alonso ER; Saint-Fort R; Jasemizad T; Wang C; Zhang T; Rinklebe J; Wang H; Siddique KHM; Kirkham MB; Bolan ...

This review aims to provide an overview of the sources and reactions of persistent organic pollutants (POPs) and surfactants in soil and sediments, the surfactant-enhanced solubilisation of POPs, a ...

Article GUID: 36265382


Utilization of a biosurfactant foam/nanoparticle mixture for treatment of oil pollutants in soil

Author(s): Vu KA; Mulligan CN;

Oil contamination has become a primary environmental concern due to increased exploration, production, and use. When oil enters the soil, it may attach or adsorb to soil particles and stay in the soil for an extended period, contaminating the soil and surro ...

Article GUID: 35834082


Remediation of oil-contaminated soil using Fe/Cu nanoparticles and biosurfactants

Author(s): Vu KA; Mulligan CN;

BSTRACTOil (or petroleum), consisting of a mixture of hydrocarbons, can be leaked from oil exploration, production, and use. Due to their complex mixture and interaction with the subsurface soil and water, they are hard to treat and can become a significant ...

Article GUID: 35361056


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