Sustainable treatment of paint industry wastewater: Current techniques and challenges.

J Environ Manage

Department of Civil Engineering, National Institute of Technology Karnataka, Surathkal, Mangalore, 575025, India. Electronic address:

Published: October 2021

AI Article Synopsis

  • Paint manufacturing generates wastewater with high chemical oxygen demand, turbidity, and harmful pollutants like heavy metals, requiring safe and sustainable treatment to protect the environment and support UN SDGs, especially Goal 14.
  • Existing literature has mainly focused on individual pollutants, but there's a lack of comprehensive reviews on treatment methods for paint industry wastewater as a whole.
  • The paper discusses various treatment techniques—physicochemical, biological, and advanced oxidation processes—highlighting the need for combining oxidation and biological methods to effectively reduce toxicity and manage sludge challenges.

Article Abstract

Paint manufacturing industries produce wastewater containing high chemical oxygen demand and turbidity, besides organic matter, suspended solids, and heavy metals that cause enormous environmental damages. Safely treating this wastewater before being disposed to the natural water sources is essential for attaining the UN SDGs, particularly Goal 14: Life under water. Besides being efficient, wastewater treatment techniques must be sustainable - environmentally, economically, and ethically. While a few papers have reviewed specific treatment methods for certain pollutants, such as heavy metals, oils, and azo dyes from industrial wastewater, a comprehensive review of various treatment methods for all the pollutants of a particular industrial wastewater - paint industry - is lacking. This paper reviews the current treatment methods used for treating paint industry wastewater including the physicochemical, biological, and chemical treatment techniques. The physicochemical techniques produce large amount of sludge making it difficult for disposal while biological treatment techniques are difficult to maintain because of the uncertainties in the chemical compositions of the paint wastewater. Advanced oxidation processes are emerging as preferred methods among the chemical methods for reducing the toxicity of the various components of the paint wastewater with reduced sludge quantity. The review of various emerging techniques of paint industry wastewater treatments in this paper points to the need for paying greater attention to combining the oxidation and biological processes as they are emerging as sustainable methods for effective reduction of toxicity in paint wastewater while also reducing the sludge management challenges.

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Source
http://dx.doi.org/10.1016/j.jenvman.2021.113105DOI Listing

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