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Arsenic speciation and biotransformation pathways in the aquatic ecosystem: The significance of algae. | LitMetric

Arsenic speciation and biotransformation pathways in the aquatic ecosystem: The significance of algae.

J Hazard Mater

University of Wuppertal, School of Architecture and Civil Engineering, Institute of Foundation Engineering, Water, and Waste-Management, Laboratory of Soil- and Groundwater-Management, Pauluskirchstraße 7, Wuppertal 42285, Germany; Department of Environment, Energy and Geoinformatics, Sejong University, Seoul 05006, South Korea.

Published: February 2021

AI Article Synopsis

  • Arsenic contamination in aquatic systems is a major global health and environmental issue affecting over 115 countries, entering the food chain and posing risks to humans and other organisms.
  • The review highlights the various sources and distribution of arsenic in water, along with the factors influencing its behavior in these ecosystems, particularly focusing on the role of algae in biotransformation.
  • The findings suggest that algae could be utilized in bioremediation efforts to treat arsenic-contaminated water, providing a framework for government and water treatment agencies to follow.

Article Abstract

The contamination of aquatic systems with arsenic (As) is considered to be an internationally-important health and environmental issue, affecting over 115 countries globally. Arsenic contamination of aquatic ecosystems is a global threat as it can enter the food chain from As-rich water and cause harmful impacts on the humans and other living organisms. Although different factors (e.g., pH, redox potential, iron/manganese oxides, and microbes) control As biogeochemical cycling and speciation in water systems, the significance of algal species in biotransformation of As is poorly understood. The overarching attribute of this review is to briefly elaborate various As sources and its distribution in water bodies and factors affecting As biogeochemical behavior in aqueous ecosystems. This review elucidates the intriguing role of algae in biotransformation/volatilization of As in water bodies under environmentally-relevant conditions. Also, we critically delineate As sorption, uptake, oxidation and reduction pathways of As by algae and their possible role in bioremediation of As-contaminated water (e.g., drinking water, wastewater). The current review provides the updated and useful framework for government and water treatment agencies to implement algae in As remediation programs globally.

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Source
http://dx.doi.org/10.1016/j.jhazmat.2020.124027DOI Listing

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