Eco-friendly collectors in apatite froth flotation: A review
The global reliance on phosphate rock for agriculture and other industries, coupled with chemical regulations in developed countries, has driven the search for green alternatives in apatite flotation. This review investigates eco-friendly collectors’ effectiveness in promoting sustainable mineral pr...
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Published in | International journal of mining science and technology Vol. 35; no. 4; pp. 539 - 551 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Elsevier B.V
01.04.2025
Elsevier |
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Abstract | The global reliance on phosphate rock for agriculture and other industries, coupled with chemical regulations in developed countries, has driven the search for green alternatives in apatite flotation. This review investigates eco-friendly collectors’ effectiveness in promoting sustainable mineral processing, guiding future alternatives to traditional reagents. The manuscript discussed the surface properties of apatite and its interaction with eco-friendly collectors, assessing existing fundamental studies. This study sought to: (1) define, organize, and classify “eco-friendly” collectors; (2) evaluate their effect in IEP and contact angle; (3) provide a better understanding of the adsorption behavior of the different fatty acid chains into apatite surface; (4) assess their ability to reversely and directly float apatite; (5) address gaps to achieve selectivity and process optimization. Outcomes demonstrated that fatty acids are largely applied, but other renewable sources of these reagents have been promisingly evaluated. In addition, other natural reagents have been tested, and new green synthetics have demonstrated synergistic effects when combined with fatty acids, yielding significant improvements in grade and recovery. However, collector effectiveness varies with ore characteristics, like particle size and surface properties, which remain underexplored. Future research should design tailored collectors that align with mineralogical differences to enhance selectivity. |
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AbstractList | The global reliance on phosphate rock for agriculture and other industries, coupled with chemical regulations in developed countries, has driven the search for green alternatives in apatite flotation. This review investigates eco-friendly collectors’ effectiveness in promoting sustainable mineral processing, guiding future alternatives to traditional reagents. The manuscript discussed the surface properties of apatite and its interaction with eco-friendly collectors, assessing existing fundamental studies. This study sought to: (1) define, organize, and classify “eco-friendly” collectors; (2) evaluate their effect in IEP and contact angle; (3) provide a better understanding of the adsorption behavior of the different fatty acid chains into apatite surface; (4) assess their ability to reversely and directly float apatite; (5) address gaps to achieve selectivity and process optimization. Outcomes demonstrated that fatty acids are largely applied, but other renewable sources of these reagents have been promisingly evaluated. In addition, other natural reagents have been tested, and new green synthetics have demonstrated synergistic effects when combined with fatty acids, yielding significant improvements in grade and recovery. However, collector effectiveness varies with ore characteristics, like particle size and surface properties, which remain underexplored. Future research should design tailored collectors that align with mineralogical differences to enhance selectivity. |
Author | Jolsterå, Rickard Budemberg, Gabriela Chelgani, Saeed Chehreh |
Author_xml | – sequence: 1 givenname: Gabriela orcidid: 0009-0006-2221-2292 surname: Budemberg fullname: Budemberg, Gabriela email: gabriela.budemberg@ltu.se organization: Minerals and Metallurgical Engineering, Swedish School of Mines, Dept. of Civil, Environmental and Natural Resources Engineering, Luleå University of Technology, Luleå SE-971 87, Sweden – sequence: 2 givenname: Rickard surname: Jolsterå fullname: Jolsterå, Rickard organization: Luossavaara-Kiirunavaara AB – LKAB, Luleå SE-971 28, Sweden – sequence: 3 givenname: Saeed Chehreh surname: Chelgani fullname: Chelgani, Saeed Chehreh organization: Minerals and Metallurgical Engineering, Swedish School of Mines, Dept. of Civil, Environmental and Natural Resources Engineering, Luleå University of Technology, Luleå SE-971 87, Sweden |
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Keywords | Apatite Flotation Adsorption Eco-friendly collectors Synergic interactions |
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SubjectTerms | Adsorption Apatite Centre - Centre for Advanced Mining & Metallurgy (CAMM) Centrumbildning - Centrum för avancerad gruvteknik och metallurgi (CAMM) Eco-friendly collectors Flotation Mineral Processing Mineralteknik Synergic interactions |
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Title | Eco-friendly collectors in apatite froth flotation: A review |
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