» Articles » PMID: 23332673

Major Pharmaceutical Residues in Wastewater Treatment Plants and Receiving Waters in Bangkok, Thailand, and Associated Ecological Risks

Overview
Journal Chemosphere
Date 2013 Jan 22
PMID 23332673
Citations 21
Authors
Affiliations
Soon will be listed here.
Abstract

Pharmaceuticals have been frequently detected in aquatic environment worldwide and suspected for potential ecological consequences. However, occurrences, sources and potential risks of pharmaceutical residues have rarely been investigated in Bangkok, Thailand, one of most densely populated cities in the world. We collected water samples from five wastewater treatment plants (WWTPs), six canals, and in mainstream Chao Phraya River of Bangkok, in three sampling events representing different seasonal flow conditions, i.e., June and September 2011 and January 2012. Fourteen major pharmaceuticals including acetaminophen, acetylsalicylic acid, atenolol, caffeine, ciprofloxacin, diclofenac, ibuprofen, mefenamic acid, naproxen, roxithromycin, sulfamethazine, sulfamethoxazole, sulfathiazole and trimethoprim were analyzed. Levels of pharmaceutical residues in WWTP influents on average were the highest for acetylsalicylic acid (4700 ng L(-1)), followed by caffeine (2250 ng L(-1)) and ibuprofen (702 ng L(-1)). In effluents, the concentration of caffeine was the highest (307 ng L(-1)), followed by acetylsalicylic acid (261 ng L(-1)) and mefenamic acid (251 ng L(-1)). In surface water, acetylsalicylic acid showed the highest levels (on average 1360 ng L(-1) in canals and 313 ng L(-1) in the river). Removal efficiencies of WWTPs for roxithromycin, sulfamethoxazole and sulfamethazine were determined negligible. For several compounds, the concentrations in ambient water were higher than those detected in the effluents, implying contribution of the WWTPs to be negligible. Hazard quotients estimated for acetylsalicylic acid, ciprofloxacin, diclofenac and mefenamic acid in most of the canals and that of ciprofloxacin in the river, were greater than or close to 1, suggesting potential ecological risks. Ecological implications of the pharmaceutical residues in Bangkok waterway warrant further investigation.

Citing Articles

Assessment of cell death in the liver of Labeo rohita on exposure to an emerging contaminant aspirin: an immunofluorescent, flow cytometric and biochemical investigation.

Gayen T, Tripathi A, Mittal S, Kumari U Fish Physiol Biochem. 2024; 50(6):2551-2562.

PMID: 39292407 DOI: 10.1007/s10695-024-01405-7.


A Review on Fluoroquinolones' Toxicity to Freshwater Organisms and a Risk Assessment.

Pauletto M, De Liguoro M J Xenobiot. 2024; 14(2):717-752.

PMID: 38921651 PMC: 11205205. DOI: 10.3390/jox14020042.


Southeast Asia's environmental challenges: emergence of new contaminants and advancements in testing methods.

Bhagat J, Singh N, Shimada Y Front Toxicol. 2024; 6:1322386.

PMID: 38469037 PMC: 10925796. DOI: 10.3389/ftox.2024.1322386.


Determination and risk assessment of pharmaceutical residues in the urban water cycle in Selangor Darul Ehsan, Malaysia.

Mohd Hanafiah Z, Mohtar W, Abd Manan T, Bachi N, Abu Tahrim N, Hamid H PeerJ. 2023; 11:e14719.

PMID: 36748091 PMC: 9899055. DOI: 10.7717/peerj.14719.


Contaminants of emerging concerns (CECs) in a municipal wastewater treatment plant in Indonesia.

Astuti M, Notodarmojo S, Priadi C, Padhye L Environ Sci Pollut Res Int. 2022; 30(8):21512-21532.

PMID: 36272003 PMC: 9938049. DOI: 10.1007/s11356-022-23567-8.