New Eco-Friendly Xanthate-Based Flotation Agents
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2020
Authors
Milosavljević, Milutin M.
Marinković, Aleksandar D.
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Rančić, Milica
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Milentijević, Goran
Bogdanović, Aleksandra
Cvijetić, Ilija N.

Guresić, Dejan

Article (Published version)
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An optimal laboratory two-step procedure was developed for sodium/potassium O-alkyl carbonodithioate (sodium/potassium alkyl xanthates) production in the form of aqueous solutions. Sodium isopropyl xanthate (Na-iPrX), as the most effective salt in a real ore flotation process, was also produced at an industrial level and introduced as a collector for copper ores. In order to reduce toxicity of the flotation process and improve sustainability by minimising environmental impacts, collector efficiency and selectivity in the flotation process were studied in relation to possible synergism of xanthates combined with the derived biomass and biodegradable green reagents levulinic acid, 5-hydroxymethyl-2-furanacrylic acid (HMFA), and condensation product of hydroxymethylfurfural and levulinic acid. Optimal content of 30% of HMFA in the collector pointed to the possibility of substitution of commercial xanthate collector without significantly affecting its efficiency/selectivity. The density fu...nctional theory (DFT) calculations provided insights into the interaction mechanism of Na-iPrX and HMFA with cooper. The benefits of the presented method highlight production simplicity, mild reaction conditions, high purity and yield of products, no by-products, and technological applicability on an industrial scale.
Keywords:
levulinic acid / flotation / DFT / alkyl xanthate / 5-hydroxymethyl-2-furanacrylic acidSource:
Minerals, 2020, 10, 4Funding / projects:
- Studying climate change and its influence on environment: impacts, adaptation and mitigation (RS-MESTD-Integrated and Interdisciplinary Research (IIR or III)-43007)
- Ministry of Science, Technological Development and Innovation of the Republic of Serbia, institutional funding - 200169 (University of Belgrade, Faculty of Forestry) (RS-MESTD-inst-2020-200169)
- Ministry of Science, Technological Development and Innovation of the Republic of Serbia, institutional funding - 200135 (University of Belgrade, Faculty of Technology and Metallurgy) (RS-MESTD-inst-2020-200135)
DOI: 10.3390/min10040350
ISSN: 2075-163X
WoS: 000535581500058
Scopus: 2-s2.0-85084234912
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Šumarski fakultetTY - JOUR AU - Milosavljević, Milutin M. AU - Marinković, Aleksandar D. AU - Rančić, Milica AU - Milentijević, Goran AU - Bogdanović, Aleksandra AU - Cvijetić, Ilija N. AU - Guresić, Dejan PY - 2020 UR - https://omorika.sfb.bg.ac.rs/handle/123456789/1151 AB - An optimal laboratory two-step procedure was developed for sodium/potassium O-alkyl carbonodithioate (sodium/potassium alkyl xanthates) production in the form of aqueous solutions. Sodium isopropyl xanthate (Na-iPrX), as the most effective salt in a real ore flotation process, was also produced at an industrial level and introduced as a collector for copper ores. In order to reduce toxicity of the flotation process and improve sustainability by minimising environmental impacts, collector efficiency and selectivity in the flotation process were studied in relation to possible synergism of xanthates combined with the derived biomass and biodegradable green reagents levulinic acid, 5-hydroxymethyl-2-furanacrylic acid (HMFA), and condensation product of hydroxymethylfurfural and levulinic acid. Optimal content of 30% of HMFA in the collector pointed to the possibility of substitution of commercial xanthate collector without significantly affecting its efficiency/selectivity. The density functional theory (DFT) calculations provided insights into the interaction mechanism of Na-iPrX and HMFA with cooper. The benefits of the presented method highlight production simplicity, mild reaction conditions, high purity and yield of products, no by-products, and technological applicability on an industrial scale. T2 - Minerals T1 - New Eco-Friendly Xanthate-Based Flotation Agents IS - 4 VL - 10 DO - 10.3390/min10040350 UR - conv_1491 ER -
@article{ author = "Milosavljević, Milutin M. and Marinković, Aleksandar D. and Rančić, Milica and Milentijević, Goran and Bogdanović, Aleksandra and Cvijetić, Ilija N. and Guresić, Dejan", year = "2020", abstract = "An optimal laboratory two-step procedure was developed for sodium/potassium O-alkyl carbonodithioate (sodium/potassium alkyl xanthates) production in the form of aqueous solutions. Sodium isopropyl xanthate (Na-iPrX), as the most effective salt in a real ore flotation process, was also produced at an industrial level and introduced as a collector for copper ores. In order to reduce toxicity of the flotation process and improve sustainability by minimising environmental impacts, collector efficiency and selectivity in the flotation process were studied in relation to possible synergism of xanthates combined with the derived biomass and biodegradable green reagents levulinic acid, 5-hydroxymethyl-2-furanacrylic acid (HMFA), and condensation product of hydroxymethylfurfural and levulinic acid. Optimal content of 30% of HMFA in the collector pointed to the possibility of substitution of commercial xanthate collector without significantly affecting its efficiency/selectivity. The density functional theory (DFT) calculations provided insights into the interaction mechanism of Na-iPrX and HMFA with cooper. The benefits of the presented method highlight production simplicity, mild reaction conditions, high purity and yield of products, no by-products, and technological applicability on an industrial scale.", journal = "Minerals", title = "New Eco-Friendly Xanthate-Based Flotation Agents", number = "4", volume = "10", doi = "10.3390/min10040350", url = "conv_1491" }
Milosavljević, M. M., Marinković, A. D., Rančić, M., Milentijević, G., Bogdanović, A., Cvijetić, I. N.,& Guresić, D.. (2020). New Eco-Friendly Xanthate-Based Flotation Agents. in Minerals, 10(4). https://doi.org/10.3390/min10040350 conv_1491
Milosavljević MM, Marinković AD, Rančić M, Milentijević G, Bogdanović A, Cvijetić IN, Guresić D. New Eco-Friendly Xanthate-Based Flotation Agents. in Minerals. 2020;10(4). doi:10.3390/min10040350 conv_1491 .
Milosavljević, Milutin M., Marinković, Aleksandar D., Rančić, Milica, Milentijević, Goran, Bogdanović, Aleksandra, Cvijetić, Ilija N., Guresić, Dejan, "New Eco-Friendly Xanthate-Based Flotation Agents" in Minerals, 10, no. 4 (2020), https://doi.org/10.3390/min10040350 ., conv_1491 .