Anaerobic treatment removing tetrabromobisphenol A and biota safety: How do tropical aquatic species respond to effluent toxicity over short‐ and long‐term exposures?

Author:

Bernegossi Aline Christine1,Castro Gleyson Borges1ORCID,Felipe Mayara Caroline1,de Souza Tallyson Tavares Cunha1,Macêdo Williane Vieira2,Gorni Guilherme Rossi3,Corbi Juliano José1

Affiliation:

1. Universidade de São Paulo Escola de Engenharia de São Carlos São Carlos Brazil

2. Aarhus Universitet Faculty of Technical Sciences Aarhus Denmark

3. Universidade de Araraquara Araraquara Brazil

Abstract

AbstractWastewater containing tetrabromobisphenol A (TBBPA), a commonly used flame retardant found in wastewater, can present significant toxic effects on biota, yet its impact on tropical freshwater environments is not well understood. This study explores the effectiveness of two independent anaerobic treatment systems, the acidogenic reactor (AR) and the methanogenic reactor (MR), for the ecotoxicity reduction of TBBPA‐rich wastewater in four tropical freshwater species. Despite presenting good physicochemical performance and reduced toxicity of the influent for most species, AR and MR treatments remain acute and chronic toxicity. Overall, MR exhibited greater efficacy in reducing influent toxicity compared with AR. TBBPA bioaccumulation was observed in Chironomus sancticaroli after short‐term exposure to 100% MR effluent. Multigenerational exposures highlighted changes in the wing length of C. sancticaroli, showing decreases after influent and AR exposures and increases after MR exposures. These findings underscore the need for ecotoxicological tools in studies of new treatment technologies, combining the removal of emerging contaminants with safeguarding aquatic biota.Practitioner Points Acidogenic and methanogenic reactors reduced the acute and chronic toxicity of wastewater containing tetrabromobisphenol A. Both treatments still exhibit toxicity, inducing short‐ and long‐term toxic effects on four native tropical species. The aquatic species Pristina longiseta was most sensitive to effluents from acidogenic and methanogenic reactors. TBBPA concentrations recovered from Chironomus sancticaroli bioaccumulation analysis ranged from 1.07 to 1.35 μg g−1. Evaluating new treatment technologies with multiple species bioassays is essential for a comprehensive effluent toxicity assessment and ensuring aquatic safety.

Funder

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Fundação de Amparo à Pesquisa do Estado de São Paulo

Publisher

Wiley

Reference88 articles.

1. Chironomus sancticaroli generation test: A new methodology with a Brazilian endemic insect

2. BSEF—The Internation Bromine COuncil. (2022).TBBPA information.https://www.bsef.com/about-us/about-bsef/

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