Transitions of CO2 from degassing to sequestration during chemical weathering of (ultra-)mafic mine tailings
ID:1524 View Protection:ATTENDEE Updated Time:2024-04-11 16:43:55 Hits:1735 Oral Presentation

Start Time:2024-05-20 10:50(Asia/Shanghai)

Duration:11min

Session:S2 主题2、地球化学 » S2-5主题2、地球化学 专题2.5(20日上午,214)

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Abstract
Weather-enhanced sulphide oxidation accelerates carbonate dissolution and releases CO2 into the atmosphere. Yet over extended geological timescales, transitions from CO2 degassing to sequestration may also occur for ultramafic/mafic magmatic minerals. Ultramafic/mafic mine tailings provide a unique opportunity to monitor carbon balance processes because mine waste undergoes instantaneous and rapid chemical weathering, which shortens the duration from CO2 degassing to absorption. In this study, we analysed 30 ultramafic/mafic (V-Ti-Fe ore) mine tailings ponds with varying cessation times in the Panxi region, China. These sites have outcrops of mega-mine waste from ~60 years of mineral excavation and dressing. Based on the analysis of anions, cations, saturation simulations, and 87Sr/86Sr, δ13C, and δ34S isotopic fingerprints from mine tailings filtrates, it was found that the dissolution load of mine tailings may depend significantly on early-stage sulphide oxidation. Dolomite dominates chemical weathering (accounting for ~79.2% of the cationic load), despite the abundance of ultramafic/mafic minerals in tailings (~5.1% cationic flux sources from silicate weathering and ~15.7% from exotic input). In addition, owing to sulphuric-carbonate weathering, the filtrates undergo deacidification along with sulphide depletion. The data in this study suggests that pristine V-Ti-Fe tailings ponds should undergo CO2 degassing in the first two years, after which they can fix atmospheric CO2 along with SO42- at levels less than ~3000 μmol/L in the filtrates (or TDS ≤ 700 mg/L). Our results permit improved monitoring of weathering transitions and carbon balances in ultramafic and mafic rocks.
Keywords
Ultramafic/mafic weathering,Sulphide oxidation,CO2 transition,V-Ti-Fe mine tailings
Speaker
唐亮
讲师 成都理工大学

Submission Author
唐亮 成都理工大学
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Important Date
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    May 17

    2024

    to

    May 20

    2024

  • Mar 31 2024

    Draft paper submission deadline

  • Mar 31 2024

    Contribution Submission Deadline

  • May 20 2024

    Registration deadline

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青年地学论坛理事会
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厦门大学近海海洋环境科学国家重点实验室
中国科学院城市环境研究所
自然资源部第三海洋研究所
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