2020•American Water Works AssociationRequires access

Magnetic Powdered Activated Carbon: A Promising Adsorbent for Water Treatment?

Kim Maren Lompe, David Ménard, Benoît Barbeau

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Abstract

Key Takeaways While researchers have been proposing magnetic powdered activated carbon (MPAC) for more than a decade, these materials are not yet commercially available in North America (though they are in Japan). MPAC combines two important characteristics: efficient separation from water using a magnetic field and good adsorption properties for organic micropollutants. The slightly higher costs of MPAC can be offset by its separability and reusability. Easy recirculation of PAC would allow working at high enough PAC age to colonize it with heterotrophic and nitrifying bacteria. Magnetic separation of MPAC requires the use of high‐gradient magnetic separators, which might limit the adsorbent's application to low‐flow systems.

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What this paper is about

Key Takeaways While researchers have been proposing magnetic powdered activated carbon (MPAC) for more than a decade, these materials are not yet commercially available in North America (though they are in Japan). MPAC combines two important characteristics: efficient separation from water using a magnetic field and good adsorption properties for organic micropollutants. The slightly higher costs of MPAC can be offset by its separability and reusability. Easy recirculation of PAC would allow working at high enough PAC age to colonize it with heterotrophic and nitrifying bacteria. Magnetic separation of MPAC requires the use of high‐gradient magnetic separators, which might limit the adsorbent's application to low‐flow systems.

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Available abstract

Key Takeaways While researchers have been proposing magnetic powdered activated carbon (MPAC) for more than a decade, these materials are not yet commercially available in North America (though they are in Japan). MPAC combines two important characteristics: efficient separation from water using a magnetic field and good adsorption properties for organic micropollutants. The slightly higher costs of MPAC can be offset by its separability and reusability. Easy recirculation of PAC would allow working at high enough PAC age to colonize it with heterotrophic and nitrifying bacteria. Magnetic separation of MPAC requires the use of high‐gradient magnetic separators, which might limit the adsorbent's application to low‐flow systems.

Key concepts: Adsorption, Activated carbon, Water treatment, Powdered activated carbon treatment, Magnetic separation, Reusability, Environmental science, Portable water purification

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