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Arsenite removal in groundwater treatment plants by sequential Permanganate-Ferric treatment

Ahmad, Arslan (författare)
KTH,Hållbarhet och miljöteknik,KWR Water Cycle Res Inst, Nieuwegein, Netherlands.;WUR, Dept Environm Technol, Wageningen, Netherlands.
Cornelissen, Emile (författare)
KWR Water Cycle Res Inst, Nieuwegein, Netherlands.;Nanyang Technol Univ, Nanyang Environm & Water Res Inst, Singapore Membrane Technol Ctr, Singapore, Singapore.;Univ Ghent, Particle & Interfacial Technol Grp, Ghent, Belgium.
van de Wetering, Stephan (författare)
Brabant Water NV Breda, Breda, Netherlands.
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van Dijk, Tim (författare)
Brabant Water NV Breda, Breda, Netherlands.
van Genuchten, Case (författare)
Univ Utrecht, Fac Geosci, Dept Earth Sci Geochem, Utrecht, Netherlands.
Bundschuh, Jochen (författare)
Univ Southern Queensland, Int Ctr Appl Climate Sci, West St, Toowoomba, Qld, Australia.;Univ Southern Queensland, Deputy Vice Chancellors Off Res & Innovat, Toowoomba, Qld, Australia.;Univ Southern Queensland, Fac Hlth Engn & Sci, Toowoomba, Qld, Australia.
van der Wal, Albert (författare)
WUR, Dept Environm Technol, Wageningen, Netherlands.;Evides Water Co NV Rotterdam, Rotterdam, Netherlands.
Bhattacharya, Prosun, 1962- (författare)
KTH,Hållbar utveckling, miljövetenskap och teknik,Univ Southern Queensland, Int Ctr Appl Climate Sci, West St, Toowoomba, Qld, Australia.
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 (creator_code:org_t)
ELSEVIER SCIENCE BV, 2018
2018
Engelska.
Ingår i: Journal of Water Process Engineering. - : ELSEVIER SCIENCE BV. - 2214-7144. ; 26, s. 221-229
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
Stäng  
  • The Dutch drinking water sector is actively investigating methods to reduce arsenic (As) to < 1 mu g/L in drinking water supply. We investigated (1) the effectiveness of sequential permanganate (MnO4-)-ferric (Fe(III)) dosing during aeration-rapid sand filtration to achieve < 1 mu g/L As (2) the influence of MnO4--Fe(III) dosing on preestablished removal patterns of As(III), Fe(II), Mn(II) and NH4+ in rapid sand filters and (3) the influence of MnO4--Fe(III) dosing on the settling and molecular-scale structural properties of the filter backwash solids. We report that MnO4--Fe(III) dosing is an effective technique to improve arsenite [As(III)] removal at groundwater treatment plants. At a typical aeration-rapid sand filtration facility in the Netherlands effluent As concentrations of < 1 mu g/L were achieved with 1.2 mg/L MnO4--and 1.8 mg/L Fe(III). The optimized combination of MnO4-and Fe(III) doses did not affect the removal efficiency of Fe(II), Mn(II) and NH4+ in rapid sand filters, however, the removal patterns of Fe(II) and Mn(II) in rapid sand filter were altered, as well as the settling behaviour of backwash solids. The characterization of backwash solids by Fe K-edge X-ray absorption spectroscopy (XAS) and X-ray diffraction (XRD) showed that the changed settling velocity of backwash solids with MnO4-Fe(III) in place was not due to changes in the molecular-scale structure of Fe-precipitates that constitute the major portion of the backwash solids.

Ämnesord

NATURVETENSKAP  -- Geovetenskap och miljövetenskap (hsv//swe)
NATURAL SCIENCES  -- Earth and Related Environmental Sciences (hsv//eng)

Nyckelord

Arsenic removal
Arsenite oxidation
Drinking water
Groundwater treatment
Permanganate
Rapid sand filtration

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