4.7 Article

Enhancing bauxite residue properties for plant growth: Gypsum and organic amendment effects on chemical properties of soil and leachate

Journal

JOURNAL OF ENVIRONMENTAL MANAGEMENT
Volume 337, Issue -, Pages -

Publisher

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jenvman.2023.117721

Keywords

Bauxite residue; Organic waste; Gypsum; Remediation; Leaching

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In this study, the effects of gypsum and local organic waste as amendments to non-weathered bauxite residue (BR) were assessed. The addition of gypsum reduced the exchangeable sodium percentage (ESP), while the addition of organic waste had smaller effects on ESP. The leachate pH of the amended BR ranged from 8.7 to 9.4, while the pH of the unamended BR was 10.3. Gypsum and organic waste amendments improved the chemical properties of BR, but the rehabilitation goals for pH and ESP were not achieved.
Here, we assess the effects of gypsum and local organic waste as amendments to non-weathered, filter-pressed bauxite residue (BR) to improve its properties and support plant growth. In addition, we monitored the leachate quality of the amended BR under progressive leaching that simulated precipitation conditions in Northern Brazil. Free-draining column tests consisting of BR amended with gypsum and organic waste, at 5% and 10% w/w, respectively, were leached for 8 weeks to assess the effects on the chemical composition of BR and the leachates. Adding gypsum to BR reduced the exchangeable sodium (Na) percentage (ESP) from approximately 79%-48%, whereas adding only organic waste had smaller effects on ESP (from similar to 79% to similar to 70%). The mean leachate pH ranged from 8.7 to 9.4 for the gypsum, and organic waste amended BR, while this was 10.3 in the leachate of the unamended BR. The treatments had similar trends of electrical conductivity throughout the experiments and were below 2 dS/cm after 8 weeks, when similar to 1.700 mm simulated precipitation had leached. Aluminium (Al), Arsenic (As), and Vanadium (V) concentrations in leachates of BR with gypsum, either alone or in combination with organic waste, were significantly lowered than in leachate of non-amended BR. By contrast, metal con-centrations increased if organic waste was added to BR. We conclude that amending BR with gypsum, in com-bination with organic waste, significantly improves the chemical properties of the solid phase and achieved rehabilitation goals for SAR and EC of the leachates after 8 weeks of leaching. However, despite high leaching rates, rehabilitation goals for pH and ESP were not achieved with gypsum either alone or combined with organic waste.

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