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April 8, 2026Water3 citationsOpen Access

Emerging Contaminants in Wastewater: Mitigation Approaches for Environmental Management and Future Sustainability

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PSPodila Sujan SaiKKKokkanti Hemanth KumarASAlapati Nidhi Sri

Key Points

  • This research aims to systematically review emerging contaminants, their sources, environmental impacts, and mitigation strategies.
  • Holistic literature review covering the last five years
  • Assessment of classification, sources, and pathways of ECs
  • Review of advances in detection technologies
  • Exploration of management strategies like advanced oxidation and membrane filtration
  • Analysis of global and regional policy frameworks
  • Identified serious risks to ecosystems and human health due to unregulated ECs
  • Highlighted regulatory gaps and need for standardized monitoring
  • Discussed effective management strategies that can mitigate risks
  • Emphasized integrated approaches combining technology, governance, and public engagement

Abstract

Emerging contaminants (ECs) are a diversely mounting group of chemicals and biological compounds found in air, water, and soil, which include pharmaceuticals, personal care products, per- and poly-fluoroalkyl substances (PFASs), microplastics, endocrine-disrupting chemicals, and various other industrial compounds. Unlike conventional pollutants, ECs are usually unregulated, found in very small amounts, and can persist and build up in living organisms, resulting in toxic risks for both ecosystems and human health. These contaminants originate from various anthropogenic activities and enter the environment through wastewater, stormwater, landfill leaching, and atmospheric deposition. This article documents a holistic literature review of ECs available from the last five years, covering classification, sources and pathways of contamination, and environmental behavior, while assessing their ecological, human health, and socioeconomic impacts. Advances in detection, including high-resolution mass spectrometry, non-target screening, real-time sensors, and AI-assisted monitoring, are addressed. Management strategies including advanced oxidation, membrane filtration, electrochemical treatments, and nature-based solutions are explored. It also analyses global and regional policy frameworks, highlighting regulatory gaps and the need for standardized monitoring. The study emphasizes integrated, multidisciplinary approaches combining scientific innovation, sustainable chemical design, predictive modeling, and public engagement. Synergizing technology, governance, and prevention could reduce the risks related to ECs and protect the environment. The novel contribution is an end-to-end, decision-oriented synthesis that links what monitoring can reliably infer to be feasible, integrated control strategies and sustainability outcomes, supporting risk-based prioritization, targeted pollution treatment, and prevention-focused management.

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Cite This Study

Sai et al. (2026) studied this question.

synapsesocial.com/papers/69d5f0d774eaea4b11a7a521https://doi.org/10.3390/w18070860
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