Pharmaceutical Residues in Drinking Water - A Case Study on Pharmaceutical Concentration in Rådasjön and Its Impact on Human and Environmental Health
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Publicerad
Författare
Typ
Examensarbete för masterexamen
Master's Thesis
Master's Thesis
Modellbyggare
Tidskriftstitel
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Sammanfattning
In recent years, the occurrence of anthropogenic persistent substances, such as
pharmaceuticals, in aquatic environments has attracted global attention to find
solutions that both mitigate measured concentrations and address the significant
challenges they pose to public health and aquatic ecosystems. This study aimed to
identify and quantify pharmaceuticals in Lake Rådasjön, western Sweden, which act
as a primary drinking water source for Mölndal’s inhabitants.
The study identified metformin (MET) and gabapentin (GBP) as the main
pharmaceuticals in the lake water using Liquid Chromatography-Mass Spectrometry
(LC-MS) analytical method. The analysis showed that only MET was detected at high
concentrations in the drinking water treatment plant (DWTP) effluent, while GBP was
below the detection limit, indicating that the current treatment methods at Mölndal's
DWTP achieved high removal efficiency. MET, on the other hand, remained high,
indicating that current treatment processes were insufficient and other advanced
processes needed to be adapted.
This thesis was based on a literature review evaluating several treatment methods,
followed by laboratory experiments aimed at estimating the removal efficiency of
multiple treatment combinations, including ozonation alone, the combination of
ozonation and chlorination, and ozonation combined with Granular Activated Carbon
(GAC). The results showed that ozonation alone reduced MET concentrations by
52.5%, while the combination of ozonation and chlorination resulted in a similar
reduction of 52.9%. The most effective combination to reduce MET concentration,
promote human health, and improve the environment was ozonation followed by
GAC, which gave a reduction of up to 88.4%.
The calculation of the risk assessment showed that the MET concentration found in
DWTP effluent posed no risk to human health. Similarly, the MET concentration in
the lake did not pose any risk to fish. However, GBP posed a moderate risk to fish and
potentially caused oxidative damage. Finally, further research is necessary to better
understand the impacts and risks of GBP and MET and to ensure safe water quality.
Beskrivning
Ämne/nyckelord
Metformin, Gabapentin, Rådasjön, Ozonation, GAC, Chlorination, Drinking Water Treatment, Pharmaceutical Residues, Removal Efficiency
