Skip to content
Review Open access

Microalgal and Nanotechnology‐Based Strategies for Sustainable Removal of Emerging Contaminants From Wastewater

Aug 2026 · Water environment research · Vol 98 · 0 citations · 121 references
Medicine

Abstract

The presence of emerging contaminants (ECs) such as pharmaceuticals, pesticides, flame retardants, and personal care products is a growing concern for aquatic systems and human health because these contaminants are persistent and difficult to remove using traditional wastewater treatment methods. Microalgae‐based systems have received a lot of attention in recent years as viable and effective methods for the removal of these pollutants. This review addresses the ability of microalgae as a versatile platform for EC removal via bioadsorption, bioaccumulation, and biodegradation. Biodegradation is one of these processes which has been proved to be very effective as it can be used to convert more complex contaminants into less toxic or innocuous compounds. The results show that under optimized growth conditions and higher enzymatic activities, the efficiency of contaminant removal can be significantly improved. Furthermore, the integration of nutrient recovery with microalgal treatment contributes to the overall sustainability and resource efficiency of the system. The review also highlights the new development of microbially synthesized nanoparticles as an eco‐friendly green technology to enhance the efficiency of algal‐based treatment systems. Overall, microalgal‐based processes are cost‐effective, environmentally friendly, and hold potential for the sustainable management of ECs in wastewater and water bodies.

Read PDF

Similar papers

Review Open access Sep 2026

CARBON AND ENZYME-BASED NANOBUD FOR ENVIRONMENTAL SUSTAINABILITY IN PHARMACEUTICAL WASTEWATER TREATMENT

The widespread occurrence of pharmaceutical contaminants in water bodies has become a major environmental concern due to their persistence, bioaccumulation potential, and adverse effects on aquatic ecosystems and human health. Conventional wastewater treatment technologies often exhibit limited efficiency in removing t...

Chaithanya ap, Saravanan Ravindran, Sebastin Varghese · 0 citations
Review Dec 2026

Nanotechnology in Wastewater Treatment: Evolution and Environmental Impact

Access to clean and safe water is a major global challenge due to population growth, industrialization, and increasing environmental pollution. Conventional filtration, sedimentation, and biological treatments have been widely used to improve water quality. However, these methods are often ineffective in removing emerg...

Basheer Abdul Basith, Nkopeleng Kganyago, M. Fathalla · 0 citations
Review Open access Aug 2026

Microalgae-Based Bioremediation of Microplastic-Contaminated Industrial Wastewater: Mechanisms and Challenges

Microalgae-based bioremediation presents a promising eco-friendly approach for removing microplastics (MPs) from industrial effluents. This review summarizes the current understanding on this subject. The article begins by describing the characteristics and origins of MPs in industrial discharges. It then reviews docum...

Yasmine Khalki, Selma El-Khayat, Ghita Radi Benjelloun et al. · 0 citations
Open access Sep 2026

A COMPARATIVE STUDY OF SUSTAINABLE REMOVAL OF MICROPLASTICS FROM YAMUNA RIVER WATER USING BIOSORBENTS

Microplastic (MP) pollution has emerged as one of the most pressing environmental concerns due to its widespread occurrence in aquatic ecosystems and its potential adverse effects on aquatic organisms, food chains, and human health. Conventional wastewater treatment technologies are not specifically designed to remove...

M. Singh, P. Sahni · 0 citations
Review Open access Aug 2026

Green-synthesized Nanoparticles for Industrial Effluent Remediation: A Systematic Review

The contamination of water bodies by industrial effluents is a major environmental challenge. Nanotechnology, particularly the use of nanoparticles (NPs), has emerged as a promising approach for wastewater remediation. However, conventional NP synthesis often relies on toxic reagents and energy-intensive processes, con...

D. A. Macena, Beatriz de Mello Massimino Rotta, Naiara Maria Pavani et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.