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Changes in estrogenicity and micropollutant concentrations across unit processes in a biological wastewater treatment system

Jian Lin Chen, Shanthinie Ravindran, Simon Swift, Naresh Singhal
Available Online 7 February 2018, wst2018047; DOI: 10.2166/wst.2018.047
Jian Lin Chen
Department of Civil & Environmental Engineering, University of Auckland, Auckland 1142, New ZealandDepartment of Chemistry, City University of Hong Kong, Kowloon, Hong Kong SAR
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  • For correspondence: jiachen@cityu.edu.hk
Shanthinie Ravindran
Department of Civil & Environmental Engineering, University of Auckland, Auckland 1142, New Zealand
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Simon Swift
Department of Molecular Medicine and Pathology, University of Auckland, Auckland 1142, New Zealand
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Naresh Singhal
Department of Civil & Environmental Engineering, University of Auckland, Auckland 1142, New Zealand
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Abstract

The behavior of 10 micropollutants, i.e. four estrogens (estrone, 17β-estradiol, estriol, 17α-ethynylestradiol), carbamazepine (CBZ), sulfamethoxazole (SMX), triclosan, oxybenzone, 4-nonylphenol, and bisphenol A, was investigated in a typical domestic wastewater treatment plant. LC-MS and yeast estrogen screen bioassay were used to study the changes in micropollutants and estrogenicity across unit processes in the treatment system. Primary treatment via sedimentation showed that only 4-nonylphenol was removed, but led to no significant change in estrogenicity. Secondary treatment by the biological nitrification-dentrification process showed complete removal of oxybenzone and partial removal of the estrogens, which led to a decrease in estrogenic activity from 80 to 48 ng/L as estradiol equivalent (EEq). Ultraviolet treatment completely degraded the estrogens and triclosan, but failed to lower the concentrations of bisphenol A, SMX, and CBZ; a decrease in estrogenic activity from 48 to 5 ng/L EEq across the unit, a value that was only slightly larger than the observed EEq of 1 ng/L for the deionized control. Similarly, the anaerobic digestion of sludge completely degraded estrogens, oxybenzone, and SMX, but had no impact on bisphenol A, triclosan, and CBZ. The study emphasises the need to complement chemical analyses with estrogenic bioassays to evaluate the efficacy of waste water treatment plants.

  • endocrine-disrupting chemicals (EDCs)
  • estrogenicity
  • pharmaceuticals and personal care products (PPCPs)
  • wastewater treatment plant (WWTP)
  • yeast estrogen screen (YES)
  • First received 19 August 2017.
  • Accepted in revised form 22 January 2018.
  • © IWA Publishing 2018
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Changes in estrogenicity and micropollutant concentrations across unit processes in a biological wastewater treatment system
Jian Lin Chen, Shanthinie Ravindran, Simon Swift, Naresh Singhal
Water Science and Technology Feb 2018, wst2018047; DOI: 10.2166/wst.2018.047
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Changes in estrogenicity and micropollutant concentrations across unit processes in a biological wastewater treatment system
Jian Lin Chen, Shanthinie Ravindran, Simon Swift, Naresh Singhal
Water Science and Technology Feb 2018, wst2018047; DOI: 10.2166/wst.2018.047

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Keywords

endocrine-disrupting chemicals (EDCs)
estrogenicity
pharmaceuticals and personal care products (PPCPs)
Wastewater treatment plant (WWTP)
yeast estrogen screen (YES)
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