2004Industrial & Engineering Chemistry ResearchRequires access

Removal of Phenol from Water by Adsorption Using Zeolites

Mohamed Khalid, G. Joly, Arlette Renaud, P. Magnoux

Open publisher page 232 citations

Abstract

Adsorption has been investigated to remove phenol from an aqueous solution (concentration range from 0.1 to 1.6 g·L -1 ). Zeolites were used as adsorbents, and adsorption properties were compared to those of an activated carbon. To adsorb phenol selectively from water, adsorbents must be hydrophobic, i.e., zeolites owning a high Si/Al ratio. Thus, purely siliceous BEA zeolite (Si/Al = ∞) was used with success; the adsorption capacity was slightly higher at low phenol concentration (≤1.6 g·L -1 ) than the one of activated carbon (surface area close to 1150 m 2 ·g -1 ). Furthermore, siliceous BEA zeolite appears as an efficient adsorbent able to be easily regenerated while keeping these initial properties.

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What this paper is about

Adsorption has been investigated to remove phenol from an aqueous solution (concentration range from 0.1 to 1.6 g·L -1 ). Zeolites were used as adsorbents, and adsorption properties were compared to those of an activated carbon. To adsorb phenol selectively from water, adsorbents must be hydrophobic, i.e., zeolites owning a high Si/Al ratio. Thus, purely siliceous BEA zeolite (Si/Al = ∞) was used with success; the adsorption capacity was slightly higher at low phenol concentration (≤1.6 g·L -1 ) than the one of activated carbon (surface area close to 1150 m 2 ·g -1 ). Furthermore, siliceous BEA zeolite appears as an efficient adsorbent able to be easily regenerated while keeping these initial properties.

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Available abstract

Adsorption has been investigated to remove phenol from an aqueous solution (concentration range from 0.1 to 1.6 g·L -1 ). Zeolites were used as adsorbents, and adsorption properties were compared to those of an activated carbon. To adsorb phenol selectively from water, adsorbents must be hydrophobic, i.e., zeolites owning a high Si/Al ratio. Thus, purely siliceous BEA zeolite (Si/Al = ∞) was used with success; the adsorption capacity was slightly higher at low phenol concentration (≤1.6 g·L -1 ) than the one of activated carbon (surface area close to 1150 m 2 ·g -1 ). Furthermore, siliceous BEA zeolite appears as an efficient adsorbent able to be easily regenerated while keeping these initial properties.

Key concepts: Adsorption, Zeolite, Phenol, Aqueous solution, Chemistry, Activated carbon, Carbon fibers, Chemical engineering

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