This review analyzes the global occurrence, sources, fate, and health impacts of pesticides in drinking water. It details how pesticides from agriculture and urban areas contaminate surface and groundwater, posing risks such as endocrine disruption, carcinogenicity, and developmental effects. The article reviews conventional and advanced treatment methods, highlighting the limitations of traditional approaches and the promise of Advanced Oxidation Processes (AOPs) for effective pesticide removal. The authors call for improved monitoring, regulation, and adoption of advanced treatment technologies to ensure safe drinking water.
Author(s): Syafrudin, Muhammad; Kristanti, Risky A.; Yuniarto, Adhi; Hadibarata, Tony; Rhee, Jongtae; Al-onazi, Wedad A.; Algarni, Tahani S.; Almarri, Abdulhadi H.; Al-Mohaimeed, Amal M.
Published: 2021
Language: English
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Additional Information
The ubiquitous problem of pesticide in aquatic environment are receiving worldwide
concern as pesticide tends to accumulate in the body of the aquatic organism and sediment soil,
posing health risks to the human. Many pesticide formulations had introduced due to the rapid
growth in the global pesticide market result from the wide use of pesticides in agricultural and
non-agricultural sectors. The occurrence of pesticides in the water body is derived by the runoff
from the agricultural field and industrial wastewater. Soluble pesticides were carried away by
water molecules especially during the precipitation event by percolating downward into the soil
layers and eventually reach surface waters and groundwater. Consequently, it degrades water
quality and reduces the supply of clean water for potable water. Long-time exposure to the low
concentration of pesticides had resulted in non-carcinogenic health risks. The conventional method
of pesticide treatment processes encompasses coagulation-flocculation, adsorption, filtration and
sedimentation, which rely on the phase transfer of pollutants. Those methods are often incurred
with a relatively high operational cost and may cause secondary pollution such as sludge formation.
Advanced oxidation processes (AOPs) are recognized as clean technologies for the treatment of
water containing recalcitrant and bio-refractory pollutants such as pesticides. It has been adopted as recent water purification technology because of the thermodynamic viability and broad spectrum of applicability. This work provides a comprehensive review for occurrence of pesticide in the drinking water and its possible treatment.