Biodegradation of the artificial sweetener acesulfame in biological wastewater treatment and sandfilters

被引:124
作者
Castronovo, Sandro [1 ]
Wick, Arne [1 ]
Scheurer, Marco [2 ]
Noedler, Karsten [2 ]
Schulz, Manoj [1 ]
Ternes, Thomas A. [1 ]
机构
[1] Fed Inst Hydrol, Mainzer Tor 1, D-56068 Koblenz, Germany
[2] DVGW Water Technol Ctr Karlsruhe TZW, Dept Anal & Water Qual, Karlsruher Str,84, D-76139 Karlsruhe, Germany
基金
欧洲研究理事会;
关键词
Acesulfame; Activated sludge; Sand filtration; Degradation; Transformation product; Wastewater tracer; SOLID-PHASE EXTRACTION; TANDEM MASS-SPECTROMETRY; AQUATIC ENVIRONMENT; TREATMENT PLANTS; TRANSFORMATION; REMOVAL; MICROPOLLUTANTS; ATTENUATION; GROUNDWATER; FATE;
D O I
10.1016/j.watres.2016.11.041
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
A considerable removal of the artificial sweetener acesulfame (ACE) was observed during activated sludge processes at 13 wastewater treatment plants (WWTPs) as well as in a full-scale sand filter of a water works. A long-term sampling campaign over a period of almost two years revealed that ACE removal in WWTPs can be highly variable over time. Nitrifying/denitrifying sequencing batch reactors (SBR) as well as aerobic batch experiments with activated sludge and filter sand from a water works confirmed that both activated sludge as well as filter sand can efficiently remove ACE and that the removal can be attributed to biologically mediated degradation processes. The lab results strongly indicated that varying ACE removal in WWTPs is not associated with nitrification processes. Neither an enhancement of the nitrification rate nor the availability of ammonium or the inhibition of ammonium monooxygenase by N-allylthiourea (ATU) affected the degradation. Moreover, ACE was found to be also degradable by activated sludge under denitrifying conditions, while being persistent in the absence of both dissolved oxygen and nitrate. Using ion chromatography coupled with high resolution mass spectrometry, sulfamic acid (SA) was identified as the predominant transformation product (TP). Quantitative analysis of ACE and SA revealed a closed mass balance during the entire test period and confirmed that ACE was quantitatively transformed to SA. Measurements of dissolved organic carbon (DOC) revealed an almost complete removal of the carbon originating from ACE, thereby further confirming that SA is the only relevant final TP in the assumed degradation pathway of ACE. A first analysis of SA in three municipal WWTP revealed similar concentrations in influents and effluents with maximum concentrations of up to 2.3 mg/L. The high concentrations of SA in wastewater are in accordance with the extensive use of SA in acid cleaners, while the degradation of ACE in WWTPs adds only a very small portion of the total load of SA discharged into surface waters. No removal of SA was observed by the biological treatment applied at these WWTPs. Moreover, SA was also stable in the aerobic batch 'experiments conducted with the filter sand from a water works. Hence, SA might be a more appropriate wastewater tracer than ACE due to its chemical and microbiological persistence, the negligible sorbing affinity (high negative charge density) and its elevated concentrations in WWTP effluents. (C) 2016 The Authors. Published by Elsevier Ltd.
引用
收藏
页码:342 / 353
页数:12
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共 57 条
  • [31] Suitability of artificial sweeteners as indicators of raw wastewater contamination in surface water and groundwater
    Ngoc Han Tran
    Hu, Jiangyong
    Li, Jinhua
    Ong, Say Leong
    [J]. WATER RESEARCH, 2014, 48 : 443 - 456
  • [32] Occurrence and fate of the angiotensin II receptor antagonist transformation product valsartan acid in the water cycle - A comparative study with selected β-blockers and the persistent anthropogenic wastewater indicators carbamazepine and acesulfame
    Noedler, Karsten
    Hillebrand, Olav
    Idzik, Krzysztof
    Strathmann, Martin
    Schiperski, Ferry
    Zirlewagen, Johannes
    Licha, Tobias
    [J]. WATER RESEARCH, 2013, 47 (17) : 6650 - 6659
  • [33] Determination of artificial sweeteners in water samples by solid-phase extraction and liquid chromatography-tandem mass spectrometry
    Ordonez, Edgar Y.
    Benito Quintana, Jose
    Rodil, Rosario
    Cela, Rafael
    [J]. JOURNAL OF CHROMATOGRAPHY A, 2012, 1256 : 197 - 205
  • [34] Biotransformation of the Antiviral Drugs Acyclovir and Penciclovir in Activated Sludge Treatment
    Prasse, Carsten
    Wagner, Manfred
    Schulz, Ralf
    Ternes, Thomas A.
    [J]. ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2011, 45 (07) : 2761 - 2769
  • [35] Removal of the Iodinated X-ray Contrast Medium Diatrizoate by Anaerobic Transformation
    Redeker, Maria
    Wick, Arne
    Meermann, Bjoern
    Ternes, Thomas A.
    [J]. ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2014, 48 (17) : 10145 - 10154
  • [36] THE METABOLISM OF INTENSE SWEETENERS
    RENWICK, AG
    [J]. XENOBIOTICA, 1986, 16 (10-11) : 1057 - 1071
  • [37] Determination of micropollutants in combined sewer overflows and their removal in a wastewater treatment plant (Seoul, South Korea)
    Ryu, Jaena
    Oh, Jeill
    Snyder, Shane A.
    Yoon, Yeomin
    [J]. ENVIRONMENTAL MONITORING AND ASSESSMENT, 2014, 186 (05) : 3239 - 3251
  • [38] Evaluating the environmental impact of artificial sweeteners: A study of their distributions, photodegradation and toxicities
    Sang, Ziye
    Jiang, Yanan
    Tsoi, Yeuk-Ki
    Leung, Kelvin Sze-Yin
    [J]. WATER RESEARCH, 2014, 52 : 260 - 274
  • [39] Transformation of the artificial sweetener acesulfame by UV light
    Scheurer, Marco
    Schmutz, Beat
    Happel, Oliver
    Brauch, Heinz-Juergen
    Wuelser, Richard
    Storck, Florian Ruediger
    [J]. SCIENCE OF THE TOTAL ENVIRONMENT, 2014, 481 : 425 - 432
  • [40] Structural elucidation of main ozonation products of the artificial sweeteners cyclamate and acesulfame
    Scheurer, Marco
    Godejohann, Markus
    Wick, Arne
    Happel, Oliver
    Ternes, Thomas A.
    Brauch, Heinz-Jurgen
    Ruck, Wolfgang K. L.
    Lange, Frank Thomas
    [J]. ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2012, 19 (04) : 1107 - 1118