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Article Dans Une Revue Water Research Année : 2012

Polyaluminum chloride with high Al-30 content as removal agent for arsenic-contaminated well water

Résumé

Polyaluminum chloride (PACl) is a well-established coagulant in water treatment with high removal efficiency for arsenic. A high content of Al-30 nanoclusters in PACl improves the removal efficiency over broader dosage and pH range. In this study we tested PACl with 75% Al-30 nanoclusters (PACl(Al30)) for the treatment of arsenic-contaminated well water by laboratory batch experiments and field application in the geothermal area of Chalkidiki, Greece, and in the Pannonian Basin, Romania. The treatment efficiency was studied as a function of dosage and the nanoclusters' protonation degree. Acid-base titration revealed increasing deprotonation of PACl(Al30) from pH 4.7 to the point of zero charge at pH 6.7. The most efficient removal of As(III) and As(V) coincided with optimal aggregation of the Al nanoclusters at pH 7-8, a common pH range for groundwater. The application of PACl(Al30) with an Al-tot concentration of 1-5 mM in laboratory batch experiments successfully lowered dissolved As(V) concentrations from 20 to 230 mu g/L to less than 5 mu g/L. Field tests confirmed laboratory results, and showed that the WHO threshold value of 10 mu g/L was only slightly exceeded (10.8 mu g/L) at initial concentrations as high as 2300 mu g/L As(V). However, As(III) removal was less efficient (<40%), therefore oxidation will be crucial before coagulation with PACl(Al30). The presence of silica in the well water improved As(III) removal by typically 10%. This study revealed that the Al-30 nanoclusters are most efficient for the removal of As(V) from water resources at near-neutral pH. (C) 2011 Elsevier Ltd. All rights reserved.

Dates et versions

hal-01426189 , version 1 (04-01-2017)

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Jasmin Mertens, Barbara Casentini, Armand Masion, Rosemarie Poethig, Bernhard Wehrli, et al.. Polyaluminum chloride with high Al-30 content as removal agent for arsenic-contaminated well water. Water Research, 2012, 46 (1), pp.53-62. ⟨10.1016/j.watres.2011.10.031⟩. ⟨hal-01426189⟩
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