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Synthesis, delineation and technological advancements of algae biochar for sustainable remediation of the emerging pollutants from wastewater-a review. | LitMetric

AI Article Synopsis

  • Algae are gaining researchers' interest for producing valuable products and biorefining due to their ability to photosynthesize, adaptability, and capacity to accumulate lipids and carbohydrates.
  • Algae biomass is cost-effective, sustainable, and more environmentally friendly compared to other sources, making it a great option for creating biochar with useful properties like high surface area and strong adsorption capacity.
  • This technical review focuses on the potential of algae biochar for removing pollutants from wastewater, exploring species-specific adsorption, production methods, and possible modifications to enhance its effectiveness in treating toxic contaminants.

Article Abstract

The use of algae for value-added product and biorefining applications is enchanting attention among researchers in recent years due to its remarkable photosynthetic ability, adaptability, and capacity to accumulate lipids and carbohydrates. Algae biomass, based on its low manufacturing costs, is relatively renewable, sustainable, environmentally friendly and economical in comparison with other species. High production rate of algae provides a unique opportunity for its conversion to biochar with excellent physicochemical properties, viz. high surface area and pore volume, high adsorption capacity, abundant functional groups over surface, etc. Despite several potential algal-biochar, a detailed study on its application for removal of emerging contaminants from wastewater is limited. Therefore, this technical review is being carried out to evaluate the specific elimination of inorganic and organic pollutants from wastewater, with a view to assessing adsorption performances of biochar obtained from various algae species. Species-specific adsorption of emerging pollutants from wastewater have been discussed in the present review. The promising methods like pyrolysis, gasification, dry and wet torrefaction for the production of algae biochar are highlighted. The strategies include chemical and structural modifications of algae biochar for the removal of toxic contaminants have also been considered in the current work. The overall aim of this review is to confer about the synthesis, technological advancements, delineation and application of algae biochar for the treatment of wastewater.

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Source
http://dx.doi.org/10.1016/j.envres.2024.119408DOI Listing

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