Colloidal organic matter from wastewater treatment plant effluents: Characterization and role in metal distribution

Colloidal organic matter from wastewater treatment plants was characterized and examined with respect to its role in metal distribution by using tangential flow ultrafiltration, liquid chromatography coupled with organic carbon and UV detectors, and an asymmetrical flow field-flow fractionation (AFl...

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Published inWater research (Oxford) Vol. 44; no. 1; pp. 340 - 350
Main Authors Worms, Isabelle A.M., Al-Gorani Szigeti, Zsofia, Dubascoux, Stephane, Lespes, Gaetane, Traber, Jacqueline, Sigg, Laura, Slaveykova, Vera I.
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Abstract Colloidal organic matter from wastewater treatment plants was characterized and examined with respect to its role in metal distribution by using tangential flow ultrafiltration, liquid chromatography coupled with organic carbon and UV detectors, and an asymmetrical flow field-flow fractionation (AFlFFF) multidetection platform. Results revealed that a humic-like fraction of low aromaticity with an average molar mass ranging from 1600 to 2600Da was the main colloidal component. High molar mass fractions (HMM), with molar mass ranges between 20 and 200kDa, were present in lower proportions. Ag, Cd, Cu, Cr, Mn and Zn were found mainly in the dissolved phase (<0.45μm) and their distribution between colloidal and truly dissolved fractions was strongly influenced by the distribution of dissolved organic carbon. AFlFFF coupled to ICP-MS showed that Ag, Cd, Cu, Cr, Mn and Zn associate to the low molar mass fraction of the colloidal pool, whereas Al, Fe and Pb were equally bound to low and high molar mass fractions.
AbstractList Colloidal organic matter from wastewater treatment plants was characterized and examined with respect to its role in metal distribution by using tangential flow ultrafiltration, liquid chromatography coupled with organic carbon and UV detectors, and an asymmetrical flow field-flow fractionation (AFlFFF) multidetection platform. Results revealed that a humic-like fraction of low aromaticity with an average molar mass ranging from 1600 to 2600Da was the main colloidal component. High molar mass fractions (HMM), with molar mass ranges between 20 and 200kDa, were present in lower proportions. Ag, Cd, Cu, Cr, Mn and Zn were found mainly in the dissolved phase (&lt;0.45microm) and their distribution between colloidal and truly dissolved fractions was strongly influenced by the distribution of dissolved organic carbon. AFlFFF coupled to ICP-MS showed that Ag, Cd, Cu, Cr, Mn and Zn associate to the low molar mass fraction of the colloidal pool, whereas Al, Fe and Pb were equally bound to low and high molar mass fractions.
Colloidal organic matter from wastewater treatment plants was characterized and examined with respect to its role in metal distribution by using tangential flow ultrafiltration, liquid chromatography coupled with organic carbon and UV detectors, and an asymmetrical flow field-flow fractionation (AFlFFF) multidetection platform. Results revealed that a humic-like fraction of low aromaticity with an average molar mass ranging from 1600 to 2600Da was the main colloidal component. High molar mass fractions (HMM), with molar mass ranges between 20 and 200kDa, were present in lower proportions. Ag, Cd, Cu, Cr, Mn and Zn were found mainly in the dissolved phase (<0.45μm) and their distribution between colloidal and truly dissolved fractions was strongly influenced by the distribution of dissolved organic carbon. AFlFFF coupled to ICP-MS showed that Ag, Cd, Cu, Cr, Mn and Zn associate to the low molar mass fraction of the colloidal pool, whereas Al, Fe and Pb were equally bound to low and high molar mass fractions.
Colloidal organic matter from wastewater treatment plants was characterized and examined with respect to its role in metal distribution by using tangential flow ultrafiltration, liquid chromatography coupled with organic carbon and UV detectors, and an asymmetrical flow field-flow fractionation (AFlFFF) multidetection platform. Results revealed that a humic-like fraction of low aromaticity with an average molar mass ranging from 1600 to 2600Da was the main colloidal component. High molar mass fractions (HMM), with molar mass ranges between 20 and 200kDa, were present in lower proportions. Ag, Cd, Cu, Cr, Mn and Zn were found mainly in the dissolved phase (<0.45 mu m) and their distribution between colloidal and truly dissolved fractions was strongly influenced by the distribution of dissolved organic carbon. AFlFFF coupled to ICP-MS showed that Ag, Cd, Cu, Cr, Mn and Zn associate to the low molar mass fraction of the colloidal pool, whereas Al, Fe and Pb were equally bound to low and high molar mass fractions.
Colloidal organic matter from wastewater treatment plants was characterized and examined with respect to its role in metal distribution by using tangential flow ultrafiltration, liquid chromatography coupled with organic carbon and UV detectors, and an asymmetrical flow field-flow fractionation (AFlFFF) multidetection platform. Results revealed that a humic-like fraction of low aromaticity with an average molar mass ranging from 1600 to 2600 Da was the main colloidal component. High molar mass fractions (HMM), with molar mass ranges between 20 and 200 kDa, were present in lower proportions. Ag, Cd, Cu, Cr, Mn and Zn were found mainly in the dissolved phase (<0.45 μm) and their distribution between colloidal and truly dissolved fractions was strongly influenced by the distribution of dissolved organic carbon. AFlFFF coupled to ICP-MS showed that Ag, Cd, Cu, Cr, Mn and Zn associate to the low molar mass fraction of the colloidal pool, whereas Al, Fe and Pb were equally bound to low and high molar mass fractions
Colloidal organic matter from wastewater treatment plants was characterized and examined with respect to its role in metal distribution by using tangential flow ultrafiltration, liquid chromatography coupled with organic carbon and UV detectors, and an asymmetrical flow field-flow fractionation (AFlFFF) multidetection platform. Results revealed that a humic-like fraction of low aromaticity with an average molar mass ranging from 1600 to 2600Da was the main colloidal component. High molar mass fractions (HMM), with molar mass ranges between 20 and 200kDa, were present in lower proportions. Ag, Cd, Cu, Cr, Mn and Zn were found mainly in the dissolved phase (<0.45microm) and their distribution between colloidal and truly dissolved fractions was strongly influenced by the distribution of dissolved organic carbon. AFlFFF coupled to ICP-MS showed that Ag, Cd, Cu, Cr, Mn and Zn associate to the low molar mass fraction of the colloidal pool, whereas Al, Fe and Pb were equally bound to low and high molar mass fractions.
Author Sigg, Laura
Worms, Isabelle A.M.
Dubascoux, Stephane
Lespes, Gaetane
Al-Gorani Szigeti, Zsofia
Traber, Jacqueline
Slaveykova, Vera I.
Author_xml – sequence: 1
  givenname: Isabelle A.M.
  surname: Worms
  fullname: Worms, Isabelle A.M.
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  givenname: Zsofia
  surname: Al-Gorani Szigeti
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  givenname: Stephane
  surname: Dubascoux
  fullname: Dubascoux, Stephane
  organization: LCABIE CNRS UMR 5254 IPREM, Université de Pau and des Pays de l'Adour, Helioparc, Avenue du Président Pierre Angot, 64053 Pau, France
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  givenname: Gaetane
  surname: Lespes
  fullname: Lespes, Gaetane
  organization: LCABIE CNRS UMR 5254 IPREM, Université de Pau and des Pays de l'Adour, Helioparc, Avenue du Président Pierre Angot, 64053 Pau, France
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  givenname: Jacqueline
  surname: Traber
  fullname: Traber, Jacqueline
  organization: Eawag, Swiss Federal Institute of Aquatic Science and Technology, Ueberlandstrasse 133, PO Box 611, CH-8600 Duebendorf, Switzerland
– sequence: 6
  givenname: Laura
  surname: Sigg
  fullname: Sigg, Laura
  organization: Eawag, Swiss Federal Institute of Aquatic Science and Technology, Ueberlandstrasse 133, PO Box 611, CH-8600 Duebendorf, Switzerland
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  givenname: Vera I.
  surname: Slaveykova
  fullname: Slaveykova, Vera I.
  email: vera.slaveykova@epfl.ch
  organization: Environmental Biophysical Chemistry, GR-SLV-IIE-ENAC, Ecole Polytechnique Fédérale de Lausanne (EPFL), Station 2, 1015 Lausanne, Switzerland
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Issue 1
Keywords Metal binding
Wastewater effluent
Tangential flow ultrafiltration
Asymmetrical flow field-flow fractionation
LC-OCD
Colloids
fractionation
Organic matter
Pollutant behavior
Liquid chromatography
Flow field
Sewage treatment plant
Asymmetrical flow field-flow
Waste water
Dissolved matter
Dissolved organic carbon
Membrane separation
Ultraviolet detector
ICP mass spectroscopy
Ultrafiltration
Lead
Colloid particle
Speciation
Language English
License CC BY 4.0
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SubjectTerms Analytical chemistry
Applied sciences
Asymmetrical flow field-flow fractionation
Cadmium
Carbon
Chemical Sciences
Chromium
Colloids
Colloids - analysis
Colloids - chemistry
Dissolution
Environmental Sciences
Exact sciences and technology
LC-OCD
Manganese
Metal binding
Metals - analysis
Other industrial wastes. Sewage sludge
Pollution
Silver
Tangential flow ultrafiltration
Ultrafiltration
Waste Disposal, Fluid - methods
Wastes
Wastewater effluent
Wastewater treatment
Water Pollutants, Chemical - analysis
Water Pollutants, Chemical - chemistry
Water treatment and pollution
Title Colloidal organic matter from wastewater treatment plant effluents: Characterization and role in metal distribution
URI https://dx.doi.org/10.1016/j.watres.2009.09.037
https://www.ncbi.nlm.nih.gov/pubmed/19836819
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https://hal.science/hal-01624861
Volume 44
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