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Article

Sustainable Co-Management of Acid Mine Drainage with Struvite Synthesis Effluent: Pragmatic Synergies in Circular Economy

by
Vhahangwele Masindi
1,2,3,*,
Ryneth Mbhele
3 and
Spyros Foteinis
3,4,*
1
Magalies Water, Scientific Services, Research & Development Division, Erf 3475, Stoffberg Street, Brits 0250, South Africa
2
Department of Environmental Sciences, College of Agriculture and Environmental Sciences, University of South Africa (UNISA), Florida 1710, South Africa
3
Council for Scientific and Industrial Research (CSIR), Smart Places, Water Centre, Pretoria 0001, South Africa
4
Research Centre for Carbon Solutions, School of Engineering and Physical Sciences, Heriot-Watt University, Edinburgh EH14 4AS, UK
*
Authors to whom correspondence should be addressed.
Environments 2023, 10(4), 60; https://doi.org/10.3390/environments10040060
Submission received: 13 February 2023 / Revised: 18 March 2023 / Accepted: 24 March 2023 / Published: 4 April 2023

Abstract

Herein, the alkaline supernatant of a struvite recovery system from municipal wastewater was successfully co-managed with acid mine drainage (AMD). Various ratios (v/v) of AMD to struvite supernatant were examined, and the quality of the passively co-treated effluent and of the generated sludge were examined using state-of-the-art analytical techniques including ICP-OES, FE-SEM/FIB/EDX, XRD, XRF, and FTIR. The optimum ratio was 1:9, where metals and sulphate were largely removed from AMD, i.e., from higher to lower score Fe (~100%) ≥ Pb (~100%) ≥ Ni (99.6%) ≥ Cu (96%) ≥ As (95%) ≥ Al (93.7%) ≥ Zn (92.7%) > Ca (90.5%) > Mn (90%) ≥ Cr (90%) > sulphate (88%) > Mg (85.7%), thus implying that opportunities for mineral recovery could be pursued. The pH of the final effluent was regulated to acceptable discharge levels, i.e., 6.5 instead of 2.2 (AMD) and 10.5 (struvite supernatant), while a notable reduction in the electrical conductivity further implied the attenuation of contaminants. Overall, results suggest the feasibility of the passive co-treatment of these wastewater matrices and that opportunities for direct scaling up exist (e.g., using waste stabilization ponds). Furthermore, apart from the initial recovery of struvite from municipal wastewater, metals could also be recovered from AMD and water could be reclaimed, therefore introducing circular economy and zero liquid discharge in wastewater treatment and management.
Keywords: magnesium ammonium phosphate (MAP); zero liquid discharge (ZLD) process; sustainable water and wastewater treatment; waste valorization and beneficiation; phosphate and ammonia recovery-recycling; UN SDG 6: clean water and sanitation magnesium ammonium phosphate (MAP); zero liquid discharge (ZLD) process; sustainable water and wastewater treatment; waste valorization and beneficiation; phosphate and ammonia recovery-recycling; UN SDG 6: clean water and sanitation

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MDPI and ACS Style

Masindi, V.; Mbhele, R.; Foteinis, S. Sustainable Co-Management of Acid Mine Drainage with Struvite Synthesis Effluent: Pragmatic Synergies in Circular Economy. Environments 2023, 10, 60. https://doi.org/10.3390/environments10040060

AMA Style

Masindi V, Mbhele R, Foteinis S. Sustainable Co-Management of Acid Mine Drainage with Struvite Synthesis Effluent: Pragmatic Synergies in Circular Economy. Environments. 2023; 10(4):60. https://doi.org/10.3390/environments10040060

Chicago/Turabian Style

Masindi, Vhahangwele, Ryneth Mbhele, and Spyros Foteinis. 2023. "Sustainable Co-Management of Acid Mine Drainage with Struvite Synthesis Effluent: Pragmatic Synergies in Circular Economy" Environments 10, no. 4: 60. https://doi.org/10.3390/environments10040060

APA Style

Masindi, V., Mbhele, R., & Foteinis, S. (2023). Sustainable Co-Management of Acid Mine Drainage with Struvite Synthesis Effluent: Pragmatic Synergies in Circular Economy. Environments, 10(4), 60. https://doi.org/10.3390/environments10040060

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