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The Role of Extracellular Polymeric Substances in Micropollutant Removal

Frontiers in Chemical Engineering 2022 64 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 45 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Antonio Melo, D. P. Mesquita Antonio Melo, D. P. Mesquita Cristina Quintelas, Cristina Quintelas, Cristina Quintelas, Eugénio C. Ferreira, Eugénio C. Ferreira, D. P. Mesquita Eugénio C. Ferreira, Eugénio C. Ferreira, D. P. Mesquita

Summary

This review examines the role of extracellular polymeric substances (EPS) in biological wastewater treatment systems, focusing on how EPS affect micropollutant removal and microbial aggregate structure. The authors find that EPS can act as a protective barrier for microbial communities under toxic conditions and may play an important role in sequestering pharmaceutical and pesticide micropollutants.

Study Type Environmental

In biological wastewater treatment (WWT), microorganisms live and grow held together by a slime matrix comprised of extracellular polymeric substances (EPS), forming a three-dimensional microbial structure of aggregates (flocs or granules) and by chemical binding forces. Furthermore, microscopic observations showed that microbial cells within the flocs were cross linked with EPS, forming a network of polymers with pores and channels. The EPS are typically composed of organic substances such as polysaccharides (PS), proteins (PNs), humic acid substances (HAS), nucleic acids, and lipids. It has been established that EPS play an essential role in aggregate flocculation, settling, and dewatering. Moreover, in the presence of toxic substances, such as pharmaceutical compounds and pesticides, EPS form a protective layer for the aggregated biomass against environmental disturbances that might play an important role in the transport and transformation of micropollutants. Some researchers indicated that there is an increase in EPS concentration under toxic conditions, which can induce an increase in the size of microbial aggregates. In this contribution, we critically review the available information on the impact of micropollutants on microbial EPS production and the relationship between EPS and microbial aggregate structure. Also, a general definition, composition, and factors that affect EPS production are presented.

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