Critical State of the Art of Sugarcane Industry Wastewater Treatment Technologies and Perspectives for Sustainability

Author:

Nouhou Moussa Abdoul Wahab1ORCID,Sawadogo Boukary1ORCID,Konate Yacouba1,Sidibe Sayon dit Sadio2ORCID,Heran Marc3

Affiliation:

1. Laboratoire Eaux Hydro-Systèmes et Agriculture (LEHSA), Institut International d’Ingénierie de l’Eau et de l’Environnement (2iE), Rue de la Science, Ouagadougou 01 BP 594, Burkina Faso

2. Laboratoire Energies Renouvelables et Efficacité Energétique (LaBEREE), Institut International d’Ingénierie de l’Eau et de l’Environnement (2iE), Rue de la Science, Ouagadougou 01 BP 594, Burkina Faso

3. Institut Européen des Membranes, IEM, UMR-5635, Université de Montpellier, CNRS, Place Eugène Bataillon, CEDEX 5, 34095 Montpellier, France

Abstract

The worldwide pressure on water resources is aggravated by rapid industrialization, with the food industry, particularly sugar factories, being the foremost contributor. Sugarcane, a primary source of sugar production, requires vast amounts of water, over half of which is discharged as wastewater, often mixed with several byproducts. The discharge of untreated wastewater can have detrimental effects on the environment, making the treatment and reuse of effluents crucial. However, conventional treatment systems may not be adequate for sugarcane industry effluent treatment due to the high organic load and variable chemical and mineral pollution. It is essential to explore pollution-remediating technologies that can achieve a nexus (water, energy, and food) approach and contribute to sustainable development. Based on the extensive literature, membrane technologies such as the membrane bioreactor have shown promising results in treating sugarcane industry wastewater, producing treated water of higher quality, and the possibility of biogas recovery. The byproducts generated from this treatment can also be recovered and used in agriculture for food security. To date, membrane technologies have demonstrated successful results in treating industrial wastewater. This critical review aims to evaluate the performance of traditional and conventional processes in order to propose sustainable perspectives. It also serves to emphasize the need for further research on operating conditions related to membrane bioreactors for valuing sugarcane effluent, to establish it as a sustainable treatment system.

Funder

DAAD

Publisher

MDPI AG

Subject

Filtration and Separation,Chemical Engineering (miscellaneous),Process Chemistry and Technology

Reference177 articles.

1. Josephson, P.R. (2015). Fish Sticks, Sports Bras, and Aluminum Cans: The Politics of Everyday Technologies, JHU Press.

2. OECD, and Food and Agriculture Organization of the United Nations (2019). Perspectives Agricoles de l’OCDE et de la FAO 2019–2028, OECD Publishing.

3. Life Cycle Assessment of Sugar Industry: A Review;Chauhan;Renew. Sustain. Energy Rev.,2011

4. Chemical Treatment Options of Wastewater from Sugarcane Industry and Its Priority Parameters Comparison as per Smart Rules of Sindh Environmental Protection Agency;Panhwar;Pak. J. Sci.,2021

5. Tshemese, Z., Deenadayalu, N., Linganiso, L.Z., and Chetty, M. (2023). An Overview of Biogas Production from Anaerobic Digestion and the Possibility of Using Sugarcane Wastewater and Municipal Solid Waste in a South African Context. Appl. Syst. Innov., 6.

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