Valorization of Acid Leaching Post-Consumer Gypsum Purification Wastewater

Author:

Castro-Díaz Miguel1ORCID,Cavalaro Sergio1,Osmani Mohamed1,Morsali Saeed1ORCID,Gutai Matyas1,Needham Paul2,Parker Bill3,Lovato Tatiana3

Affiliation:

1. School of Architecture, Building and Civil Engineering, Loughborough University, Loughborough LE11 3TU, UK

2. ENVA, Enviro Building, Private Road 4, Colwick Industrial Estate, Nottingham NG4 2JT, UK

3. British Gypsum, East Leake, Loughborough LE12 6JT, UK

Abstract

Industries are required to utilize treatment technologies to reduce contaminants in wastewater prior to discharge and to valorize by-products to increase sustainability and competitiveness. Most acid leaching gypsum purification studies have obviated the treatment of the highly acidic wastewater produced. In this work, acidic wastewater from acid leaching purification of post-consumer gypsum was treated to recover a valuable solid product and reusable water. The main aims of this work were to determine the impact of recirculating acidic and treated wastewaters on the efficiency of the acid leaching purification process and to valorize the impurities in the wastewater. Samples were characterized through X-ray fluorescence and X-ray diffraction. SimaPro 9.5 and the ReCiPe 2016 midpoint method were used for the life cycle assessment of three sustainable wastewater management approaches. The reuse of the acidic wastewater did not improve the chemical purity of gypsum. Soluble impurities were precipitated at pH 10.5 as a magnesium-rich gypsum that could be commercialized as fertilizer or soil ameliorant. The alkaline-treated water was reused for six acid leaching purification cycles without impacting the efficiency of the purification process. An acid leaching–neutralization–filtration–precipitation approach demonstrated superior overall environmental performance. Barriers and enabling measures for the implementation of an in-house wastewater treatment were identified.

Funder

European Union’s Horizon 2020 research and innovation program

Publisher

MDPI AG

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3. EEA Report No 23/2018 (2019). Industrial Waste Water Treatment–Pressures on Europe’s Environment, European Environment Agency. Available online: https://op.europa.eu/en/publication-detail/-/publication/aa63a387-d8fe-11e9-9c4e-01aa75ed71a1/language-en.

4. (2023, September 14). Directive 2000/60/EC of the European Parliament and of the Council of 23 October 2000 Establishing a Framework for Community Action in the Field of Water Policy. Available online: http://data.europa.eu/eli/dir/2000/60/oj.

5. (2023, September 14). EPA’s Clean Water Act 1972, Available online: https://www.epa.gov/laws-regulations/summary-clean-water-act.

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