Literature DB >> 17367839

Arsenic removal by iron-modified activated carbon.

Weifang Chen1, Robert Parette, Jiying Zou, Fred S Cannon, Brian A Dempsey.   

Abstract

Iron-impregnated activated carbons have been found to be very effective in arsenic removal. Oxyanionic arsenic species such as arsenate and arsenite adsorb at the iron oxyhydroxide surface by forming complexes with the surface sites. Our goal has been to load as much iron within the carbon pores as possible while also rendering as much of the iron to be available for sorbing arsenic. Surface oxidation of carbon by HNO3/H2SO4 or by HNO3/KMnO4 increased the amount of iron that could be loaded to 7.6-8.0%; arsenic stayed below 10 ppb until 12,000 bed volumes during rapid small-scale tests (RSSCTs) using Rutland, MA groundwater (40-60 ppb arsenic, and pH of 7.6-8.0). Boehm titrations showed that surface oxidation greatly increased the concentration of carboxylic and phenolic surface groups. Iron impregnation by precipitation or iron salt evaporation was also evaluated. Iron content was increased to 9-17% with internal iron-loading, and to 33.6% with both internal and external iron loading. These iron-tailored carbons reached 25,000-34,000 bed volumes to 10 ppb arsenic breakthrough during RSSCTs. With the 33.6% iron loading, some iron peeled off.

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Year:  2007        PMID: 17367839     DOI: 10.1016/j.watres.2007.01.052

Source DB:  PubMed          Journal:  Water Res        ISSN: 0043-1354            Impact factor:   11.236


  25 in total

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4.  The removal of arsenate from water using iron-modified diatomite (D-Fe): isotherm and column experiments.

Authors:  M L Pantoja; H Jones; H Garelick; H G Mohamedbakr; M Burkitbayev
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5.  Removal of Trace Arsenic to Meet Drinking Water Standards Using Iron Oxide Coated Multiwall Carbon Nanotubes.

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7.  Synthesis and characterization of Fe-MCM-41 from rice husk silica by hydrothermal technique for arsenate adsorption.

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9.  Bioremoval of arsenic (V) from aqueous solutions by chemically modified fungal biomass.

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10.  Equilibrium and kinetics of adsorption of phosphate onto iron-doped activated carbon.

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