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Erschienen in: Environmental Earth Sciences 8/2024

01.04.2024 | Original Article

Study on the leaching behavior of antimony in stibnite under the action of different oxidants

verfasst von: Yong Jiao, Saijun Zhou, Jiarong Zou, Zhijie Zheng, Renjian Deng, Jianqun Wang

Erschienen in: Environmental Earth Sciences | Ausgabe 8/2024

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Abstract

In order to investigate the release process of antimony from stibnite under the leaching effect of rain and snow in Hunan Xikuangshan(XKS) mining area, some important environmental factors are selected: dissolved oxygen, Fe(III) and Pseudomonas sp. AO-1 (referred to as AO-1). The one-factor batch sequence experimental method is adopted to study the change law of pH, Sb(III), Sb(V) under different oxidizing conditions. The results show that dissolved oxygen, Fe(III) and AO-1 all can promote the dissolution and release of antimony, in which dissolved oxygen and AO-1 mainly affected the release process of antimony, while Fe(III) mainly affected the oxidation process of antimony. During the process, biomineralization occurs and produces (NH4)Mg(PO4)-6H2O and NaSb(OH)6. The common effect of AO-1 and Fe(III) can obviously promote the dissolution and oxidation of stibnite. The release rate of antimony under different oxidizing agents are as follows: AO-1&Fe(III) > Fe(III) > AO-1 > Dissolved Oxygen.

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Literatur
Zurück zum Zitat Álvarez-Ayuso E, Murciego A, Rodríguez M (2022) Antimony distribution and mobility in different types of waste derived from the exploitation of stibnite ore deposits. Sci Total Environ 816:151566CrossRef Álvarez-Ayuso E, Murciego A, Rodríguez M (2022) Antimony distribution and mobility in different types of waste derived from the exploitation of stibnite ore deposits. Sci Total Environ 816:151566CrossRef
Zurück zum Zitat Cappuyns V, Campen AV, Helser J (2021) Antimony leaching from soils and wine waste from the Mau Due antimony mine, North-Vietnam. J Geochem Exploration 220:106663CrossRef Cappuyns V, Campen AV, Helser J (2021) Antimony leaching from soils and wine waste from the Mau Due antimony mine, North-Vietnam. J Geochem Exploration 220:106663CrossRef
Zurück zum Zitat Casiot C, Ujević M, Munoz M, Seidel J, Elbaz-Poulichet F (2007) Antimony and arsenic mobility in a creek draining an antimony mine abandoned 85 years ago (upper Orb Basin, France). Appl Geochem 22(4):788–798CrossRef Casiot C, Ujević M, Munoz M, Seidel J, Elbaz-Poulichet F (2007) Antimony and arsenic mobility in a creek draining an antimony mine abandoned 85 years ago (upper Orb Basin, France). Appl Geochem 22(4):788–798CrossRef
Zurück zum Zitat Chmielewská E, Tylus W, Drábik M, Majzlan J, Kravčák J, Williams C, Čaplovičová M, Čaplovič Ľ (2017) Structure investigation of nano-FeO(OH) modified clinoptilolite tuff for antimony removal. Microporous Mesoporous Mater 248:222–233CrossRef Chmielewská E, Tylus W, Drábik M, Majzlan J, Kravčák J, Williams C, Čaplovičová M, Čaplovič Ľ (2017) Structure investigation of nano-FeO(OH) modified clinoptilolite tuff for antimony removal. Microporous Mesoporous Mater 248:222–233CrossRef
Zurück zum Zitat Deng R, Chen Y, Deng X, Huang Z, Zhou S, Ren B, Jin G, Hursthouse A (2021) A critical review of resistance and oxidation mechanisms of Sb-oxidizing bacteria for the bioremediation of Sb(III) pollution. Front Microbiol 12:738596CrossRef Deng R, Chen Y, Deng X, Huang Z, Zhou S, Ren B, Jin G, Hursthouse A (2021) A critical review of resistance and oxidation mechanisms of Sb-oxidizing bacteria for the bioremediation of Sb(III) pollution. Front Microbiol 12:738596CrossRef
Zurück zum Zitat Guo X, Wang K, He M, Liu Z, Yang H, Li S (2014) Antimony smelting process generating solid waste and dust: Characterization and leaching behaviors. J Environ Sci 26(7):1549–1556CrossRef Guo X, Wang K, He M, Liu Z, Yang H, Li S (2014) Antimony smelting process generating solid waste and dust: Characterization and leaching behaviors. J Environ Sci 26(7):1549–1556CrossRef
Zurück zum Zitat He M, Wang X, Wu F, Fu Z (2012) Antimony pollution in China. Sci Total Environ 421–422:41–50CrossRef He M, Wang X, Wu F, Fu Z (2012) Antimony pollution in China. Sci Total Environ 421–422:41–50CrossRef
Zurück zum Zitat Hu X, He M, Li S, Guo X (2017) The leaching characteristics and changes in the leached layer of antimony-bearing ores from China. J Geochem Explor 176:76–84CrossRef Hu X, He M, Li S, Guo X (2017) The leaching characteristics and changes in the leached layer of antimony-bearing ores from China. J Geochem Explor 176:76–84CrossRef
Zurück zum Zitat Jiang N, Li X, Zhou A, Huang Y, Pan G (2020) Effect of pH value and Fe(III) on the oxidative dissolution of stibnite. Geol Sci Technol Info 39(04):76–84 (in Chinese) Jiang N, Li X, Zhou A, Huang Y, Pan G (2020) Effect of pH value and Fe(III) on the oxidative dissolution of stibnite. Geol Sci Technol Info 39(04):76–84 (in Chinese)
Zurück zum Zitat Leng Y, Colston R, Soares A (2020) Understanding the biochemical characteristics of struvite bio-mineralising microorganisms and their future in nutrient recovery. Chemosphere 247:125799CrossRef Leng Y, Colston R, Soares A (2020) Understanding the biochemical characteristics of struvite bio-mineralising microorganisms and their future in nutrient recovery. Chemosphere 247:125799CrossRef
Zurück zum Zitat Li H, Yang Z, Yuan P, Deng L, Wang B, Su C (2011) Characteristics of antimony pollution in soils at mining areas in central Hunan province. Environ Sci Technol 34(1):70–74 Li H, Yang Z, Yuan P, Deng L, Wang B, Su C (2011) Characteristics of antimony pollution in soils at mining areas in central Hunan province. Environ Sci Technol 34(1):70–74
Zurück zum Zitat Li J, Wang Q, Li M, Yang B, Shi M, Guo W (2015) Proteomics and genetics for identification of a bacterial antimonite oxidase in Agrobacterium tumefaciens. Environ Sci Technol 49(10):5980–5989CrossRef Li J, Wang Q, Li M, Yang B, Shi M, Guo W (2015) Proteomics and genetics for identification of a bacterial antimonite oxidase in Agrobacterium tumefaciens. Environ Sci Technol 49(10):5980–5989CrossRef
Zurück zum Zitat Li L, Zhou J, Li W, Weng B, Ru J, Yu L, Su D (2018) Antimony release characteristics of waste rock from an extra large antimony mining area. Bull Geol Sci Technol 37(05):215–221 (in Chinese) Li L, Zhou J, Li W, Weng B, Ru J, Yu L, Su D (2018) Antimony release characteristics of waste rock from an extra large antimony mining area. Bull Geol Sci Technol 37(05):215–221 (in Chinese)
Zurück zum Zitat Li X, Deng R, Tang Z, Zhou S, Zeng X, Wang J, Hursthouse A (2021) A study of the adsorption and removal of Sb(III) from aqueous solution by Fe(III) modified proteus cibarius with mechanistic insights using response surface methodology. Processes 9(6):933CrossRef Li X, Deng R, Tang Z, Zhou S, Zeng X, Wang J, Hursthouse A (2021) A study of the adsorption and removal of Sb(III) from aqueous solution by Fe(III) modified proteus cibarius with mechanistic insights using response surface methodology. Processes 9(6):933CrossRef
Zurück zum Zitat Li H (2016) Study on the mineralization mechanism of biogenic struvite. University of Science and Technoogy of China (in Chinese) Li H (2016) Study on the mineralization mechanism of biogenic struvite. University of Science and Technoogy of China (in Chinese)
Zurück zum Zitat Long P, Deng R, Yang Y, Jing G, Huang Z, Zhou X, Wang X, Wang C (2023) Isolation and identification of antimony-oxidizing bacterium Pseudomonas sp. AO-1 and its oxidation properties for Sb(III). Environ Sci China 43(02):904–914 (in Chinese) Long P, Deng R, Yang Y, Jing G, Huang Z, Zhou X, Wang X, Wang C (2023) Isolation and identification of antimony-oxidizing bacterium Pseudomonas sp. AO-1 and its oxidation properties for Sb(III). Environ Sci China 43(02):904–914 (in Chinese)
Zurück zum Zitat Lu J, Lu X, Wang R, Li J, Zhu C, Gao J (2006) Pyrite surface after Thiobacillus ferrooxidans leaching at 30 ℃. Acta Geol Sin 80(3):451–455 Lu J, Lu X, Wang R, Li J, Zhu C, Gao J (2006) Pyrite surface after Thiobacillus ferrooxidans leaching at 30 ℃. Acta Geol Sin 80(3):451–455
Zurück zum Zitat Lu X, Li J, Liu H, Li W, Wang R, Lu J (2019) Microbial oxidation of metal sulfides and its consequences. Acta Petrol Sin 35(01):153–163 (in Chinese)CrossRef Lu X, Li J, Liu H, Li W, Wang R, Lu J (2019) Microbial oxidation of metal sulfides and its consequences. Acta Petrol Sin 35(01):153–163 (in Chinese)CrossRef
Zurück zum Zitat Luo J, Bai Y, Liang J, Qu J (2014) Metagenomic approach reveals variation of microbes with arsenic and antimony metabolism genes from highly contaminated soil. PLoS ONE 9(10):e108185CrossRef Luo J, Bai Y, Liang J, Qu J (2014) Metagenomic approach reveals variation of microbes with arsenic and antimony metabolism genes from highly contaminated soil. PLoS ONE 9(10):e108185CrossRef
Zurück zum Zitat Murciego A, Sánchez A, González M, Gil E, Gordillo C, Fernández J, Triguero T (2007) Antimony distribution and mobility in topsoils and plants (Cytisus striatus, Cistus ladanifer and Dittrichia viscosa) from polluted Sb-mining areas in Extremadura (Spain). Environ Pollut 145(1):15–21CrossRef Murciego A, Sánchez A, González M, Gil E, Gordillo C, Fernández J, Triguero T (2007) Antimony distribution and mobility in topsoils and plants (Cytisus striatus, Cistus ladanifer and Dittrichia viscosa) from polluted Sb-mining areas in Extremadura (Spain). Environ Pollut 145(1):15–21CrossRef
Zurück zum Zitat Özge G (2014) Catalytic production of antimonate through alkaline leaching of stibnite concentrate. Hydrometallurgy 149:23–30CrossRef Özge G (2014) Catalytic production of antimonate through alkaline leaching of stibnite concentrate. Hydrometallurgy 149:23–30CrossRef
Zurück zum Zitat Potin-Gautier M, Pannier F, Quiroz W, Pinochet H, Gregori I (2005) Antimony speciation analysis in sediment reference materials using high-performance liquid chromatography coupled to hydride generation atomic fluorescence spectrometry. Anal Chim Acta 553:214–222CrossRef Potin-Gautier M, Pannier F, Quiroz W, Pinochet H, Gregori I (2005) Antimony speciation analysis in sediment reference materials using high-performance liquid chromatography coupled to hydride generation atomic fluorescence spectrometry. Anal Chim Acta 553:214–222CrossRef
Zurück zum Zitat Qi W, Cao J (1991) Study on the background value of antimony (Sb) in soil environment. Chin J Soil Sci 22(5):209–211 (in Chinese) Qi W, Cao J (1991) Study on the background value of antimony (Sb) in soil environment. Chin J Soil Sci 22(5):209–211 (in Chinese)
Zurück zum Zitat Qu Y, Guo Q, Li S, Xuan L, Zhang X, Ma P (2022) Screening and Optimization of Bacillus subtilis HMB19198 fermentation medium. Chin J Pesticide Sci 24(3):509–519 Qu Y, Guo Q, Li S, Xuan L, Zhang X, Ma P (2022) Screening and Optimization of Bacillus subtilis HMB19198 fermentation medium. Chin J Pesticide Sci 24(3):509–519
Zurück zum Zitat Raschman P, Sminčáková E (2012) Kinetics of leaching of stibnite by mixed Na2S and NaOH solutions. Hydrometallurgy 113:60–66CrossRef Raschman P, Sminčáková E (2012) Kinetics of leaching of stibnite by mixed Na2S and NaOH solutions. Hydrometallurgy 113:60–66CrossRef
Zurück zum Zitat Satoshi M, Yoshio T, Yoichi S, Kei I (2009) Interaction of synthetic sulfate green rust with antimony(V). Environ Sci Technol 43(2):318–323CrossRef Satoshi M, Yoshio T, Yoichi S, Kei I (2009) Interaction of synthetic sulfate green rust with antimony(V). Environ Sci Technol 43(2):318–323CrossRef
Zurück zum Zitat Smichowski P (2008) Antimony in the environment as a global pollutant: a review on analytical methodologies for its determination in atmospheric aerosols. Talanta 75(1):2–14CrossRef Smichowski P (2008) Antimony in the environment as a global pollutant: a review on analytical methodologies for its determination in atmospheric aerosols. Talanta 75(1):2–14CrossRef
Zurück zum Zitat Tu B, Wang F, Li J, Sha J, Lu X, Han X (2013) Analysis of genes and proteins in acidithiobacillus ferrooxidans during growth and attachment on pyrite under different conditions. Geomicrobiol J 30(3):255–267CrossRef Tu B, Wang F, Li J, Sha J, Lu X, Han X (2013) Analysis of genes and proteins in acidithiobacillus ferrooxidans during growth and attachment on pyrite under different conditions. Geomicrobiol J 30(3):255–267CrossRef
Zurück zum Zitat U.S. EPA (1979) Water related fate of the 129 priority pollutants. United States. U.S. Environmental Protection Agency, Office of Water and Waste Management U.S. EPA (1979) Water related fate of the 129 priority pollutants. United States. U.S. Environmental Protection Agency, Office of Water and Waste Management
Zurück zum Zitat Ungureanu G, Santos S, Boaventura R, Botelho C (2015) Arsenic and antimony in water and wastewater: overview of removal techniques with special reference to latest advances in adsorption. J Environ Manage 151:326–334CrossRef Ungureanu G, Santos S, Boaventura R, Botelho C (2015) Arsenic and antimony in water and wastewater: overview of removal techniques with special reference to latest advances in adsorption. J Environ Manage 151:326–334CrossRef
Zurück zum Zitat Zhang JF (2018) A comparative evaluation of antimony(Sb) immobilization in contaminated soil by iron-based materials. Hunan Nonferrous Metals 34(04):54–58 (in Chinese) Zhang JF (2018) A comparative evaluation of antimony(Sb) immobilization in contaminated soil by iron-based materials. Hunan Nonferrous Metals 34(04):54–58 (in Chinese)
Zurück zum Zitat Zhou SJ, Li N, Ren BZ, Zhang P (2017) Release law of Sb, As, and Hg in antimony smelting slag Under simulated acid rain. Pol J Environ Stud 23(2):925–933CrossRef Zhou SJ, Li N, Ren BZ, Zhang P (2017) Release law of Sb, As, and Hg in antimony smelting slag Under simulated acid rain. Pol J Environ Stud 23(2):925–933CrossRef
Zurück zum Zitat Zhou SJ, Deng RJ, Hursthouse A (2020) Risk assessment of potentially toxic elements pollution from mineral processing steps at Xikuangshan antimony plant, Hunan, China. Processes 8(29):1–12 Zhou SJ, Deng RJ, Hursthouse A (2020) Risk assessment of potentially toxic elements pollution from mineral processing steps at Xikuangshan antimony plant, Hunan, China. Processes 8(29):1–12
Zurück zum Zitat Zhou SJ, Wang YX, Deng X, Deng R, Wang J, Reng B (2022) Elease law of Sb, As, and Hg in antimony mine wastes under simulated acid rain. J Civil Environ Eng 44(03):168–176 (in Chinese) Zhou SJ, Wang YX, Deng X, Deng R, Wang J, Reng B (2022) Elease law of Sb, As, and Hg in antimony mine wastes under simulated acid rain. J Civil Environ Eng 44(03):168–176 (in Chinese)
Zurück zum Zitat Zhu T, Lu X, Liu H, Li J, Zhu X, Lu J, Wang R (2014) Quantitative X-ray photoelectron spectroscopy-based depth profiling of bioleached arsenopyrite surface by acidithiobacillus ferrooxidans. Geochim Cosmochim Acta 127:120–139CrossRef Zhu T, Lu X, Liu H, Li J, Zhu X, Lu J, Wang R (2014) Quantitative X-ray photoelectron spectroscopy-based depth profiling of bioleached arsenopyrite surface by acidithiobacillus ferrooxidans. Geochim Cosmochim Acta 127:120–139CrossRef
Metadaten
Titel
Study on the leaching behavior of antimony in stibnite under the action of different oxidants
verfasst von
Yong Jiao
Saijun Zhou
Jiarong Zou
Zhijie Zheng
Renjian Deng
Jianqun Wang
Publikationsdatum
01.04.2024
Verlag
Springer Berlin Heidelberg
Erschienen in
Environmental Earth Sciences / Ausgabe 8/2024
Print ISSN: 1866-6280
Elektronische ISSN: 1866-6299
DOI
https://doi.org/10.1007/s12665-024-11569-3

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