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PINTO, Thiago César de Souza et al. Process evaluation using the floatability component model approach. 2021, Anais.. Cape Town: The Southern African Institute of Mining and Metallurgy, 2021. . Acesso em: 27 jan. 2026.
APA
Pinto, T. C. de S., Leal Filho, L. de S., Geldenhuys, A. S., & Deglon, D. A. (2021). Process evaluation using the floatability component model approach. In IMPC2020 : proceedings. Cape Town: The Southern African Institute of Mining and Metallurgy.
NLM
Pinto TC de S, Leal Filho L de S, Geldenhuys AS, Deglon DA. Process evaluation using the floatability component model approach. IMPC2020 : proceedings. 2021 ;[citado 2026 jan. 27 ]
Vancouver
Pinto TC de S, Leal Filho L de S, Geldenhuys AS, Deglon DA. Process evaluation using the floatability component model approach. IMPC2020 : proceedings. 2021 ;[citado 2026 jan. 27 ]
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
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SAFARI, Mehdi et al. Investigating the effect of operational parameters on the flotation of itabirite iron ore in a pneumatic clotation cell. 2021, Anais.. Cape Town: The Southern African Institute of Mining and Metallurgy, 2021. . Acesso em: 27 jan. 2026.
APA
Safari, M., Hoseinian, F. S., Deglon, D. A., Leal Filho, L. de S., & Pinto, T. C. de S. (2021). Investigating the effect of operational parameters on the flotation of itabirite iron ore in a pneumatic clotation cell. In IMPC2020 : proceedings. Cape Town: The Southern African Institute of Mining and Metallurgy.
NLM
Safari M, Hoseinian FS, Deglon DA, Leal Filho L de S, Pinto TC de S. Investigating the effect of operational parameters on the flotation of itabirite iron ore in a pneumatic clotation cell. IMPC2020 : proceedings. 2021 ;[citado 2026 jan. 27 ]
Vancouver
Safari M, Hoseinian FS, Deglon DA, Leal Filho L de S, Pinto TC de S. Investigating the effect of operational parameters on the flotation of itabirite iron ore in a pneumatic clotation cell. IMPC2020 : proceedings. 2021 ;[citado 2026 jan. 27 ]
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GUZMÁN, Edison Marcavillaca Niño de e BERGERMAN, Maurício Guimarães e MASSOLA, Camila Peres. Development of a laboratory test for wear prediction in ore processing circuit. 2021, Anais.. Johannesburg: The Southern African Institute of Mining and Metallurgy, 2021. Disponível em: https://repositorio.usp.br/directbitstream/8ef94d63-e43e-49bb-a2a1-0fe63322ab05/Bergerman-2021-Development%20of%20a%20laboratory%20test%20for%20wear%20prediction.pdf. Acesso em: 27 jan. 2026.
APA
Guzmán, E. M. N. de, Bergerman, M. G., & Massola, C. P. (2021). Development of a laboratory test for wear prediction in ore processing circuit. In IMPC2020 : Congress proceedings. Johannesburg: The Southern African Institute of Mining and Metallurgy. Recuperado de https://repositorio.usp.br/directbitstream/8ef94d63-e43e-49bb-a2a1-0fe63322ab05/Bergerman-2021-Development%20of%20a%20laboratory%20test%20for%20wear%20prediction.pdf
NLM
Guzmán EMN de, Bergerman MG, Massola CP. Development of a laboratory test for wear prediction in ore processing circuit [Internet]. IMPC2020 : Congress proceedings. 2021 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/8ef94d63-e43e-49bb-a2a1-0fe63322ab05/Bergerman-2021-Development%20of%20a%20laboratory%20test%20for%20wear%20prediction.pdf
Vancouver
Guzmán EMN de, Bergerman MG, Massola CP. Development of a laboratory test for wear prediction in ore processing circuit [Internet]. IMPC2020 : Congress proceedings. 2021 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/8ef94d63-e43e-49bb-a2a1-0fe63322ab05/Bergerman-2021-Development%20of%20a%20laboratory%20test%20for%20wear%20prediction.pdf
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BARBOSA, P. A e BERGERMAN, Maurício Guimarães e FONSECA, E da. Evaluation of the LCPC test for geometallurgical applications: Sossego Mine case study. 2021, Anais.. Johannesburg: The Southern African Institute of Mining and Metallurgy, 2021. Disponível em: https://repositorio.usp.br/directbitstream/8c90a06a-bd77-40e7-a067-976e3b8775f6/Bergerman-2021-Evaluation%20of%20the%20LCPC%20test%20for%20geometallurgical.pdf. Acesso em: 27 jan. 2026.
APA
Barbosa, P. A., Bergerman, M. G., & Fonseca, E. da. (2021). Evaluation of the LCPC test for geometallurgical applications: Sossego Mine case study. In IMPC2020 : Congress proceedings. Johannesburg: The Southern African Institute of Mining and Metallurgy. Recuperado de https://repositorio.usp.br/directbitstream/8c90a06a-bd77-40e7-a067-976e3b8775f6/Bergerman-2021-Evaluation%20of%20the%20LCPC%20test%20for%20geometallurgical.pdf
NLM
Barbosa PA, Bergerman MG, Fonseca E da. Evaluation of the LCPC test for geometallurgical applications: Sossego Mine case study [Internet]. IMPC2020 : Congress proceedings. 2021 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/8c90a06a-bd77-40e7-a067-976e3b8775f6/Bergerman-2021-Evaluation%20of%20the%20LCPC%20test%20for%20geometallurgical.pdf
Vancouver
Barbosa PA, Bergerman MG, Fonseca E da. Evaluation of the LCPC test for geometallurgical applications: Sossego Mine case study [Internet]. IMPC2020 : Congress proceedings. 2021 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/8c90a06a-bd77-40e7-a067-976e3b8775f6/Bergerman-2021-Evaluation%20of%20the%20LCPC%20test%20for%20geometallurgical.pdf
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BERGERMAN, Maurício Guimarães et al. Impacts on energy consumption and wear in grinding circuits with a pre-concentration stage. 2019, Anais.. New York: Curran Associates, 2019. Disponível em: https://repositorio.usp.br/directbitstream/3450620c-b137-4625-9e08-2efa5661a06f/Bergerman-2019-Impacts%20on%20energy%20consumption%20and%20wear.pdf. Acesso em: 27 jan. 2026.
APA
Bergerman, M. G., José Neto, D., Mano, E. S., & Chaves, A. P. (2019). Impacts on energy consumption and wear in grinding circuits with a pre-concentration stage. In Proceedings: IMPC 2018. New York: Curran Associates. Recuperado de https://repositorio.usp.br/directbitstream/3450620c-b137-4625-9e08-2efa5661a06f/Bergerman-2019-Impacts%20on%20energy%20consumption%20and%20wear.pdf
NLM
Bergerman MG, José Neto D, Mano ES, Chaves AP. Impacts on energy consumption and wear in grinding circuits with a pre-concentration stage [Internet]. Proceedings: IMPC 2018. 2019 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/3450620c-b137-4625-9e08-2efa5661a06f/Bergerman-2019-Impacts%20on%20energy%20consumption%20and%20wear.pdf
Vancouver
Bergerman MG, José Neto D, Mano ES, Chaves AP. Impacts on energy consumption and wear in grinding circuits with a pre-concentration stage [Internet]. Proceedings: IMPC 2018. 2019 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/3450620c-b137-4625-9e08-2efa5661a06f/Bergerman-2019-Impacts%20on%20energy%20consumption%20and%20wear.pdf
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
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BERGERMAN, Maurício Guimarães et al. Impacts on energy consumption and wear in grinding circuits with a pre-concentration stage. 2018, Anais.. Moscow: Russian Academy of Sciences, 2018. Disponível em: https://repositorio.usp.br/directbitstream/f0aa5db1-78ca-4b3a-8b86-10816aa66560/Bergerman-2018-Impacts%20on%20energy%20consumption%20and%20wear-%20resumo.pdf. Acesso em: 27 jan. 2026.
APA
Bergerman, M. G., José Neto, D., Mano, E. S., & Chaves, A. P. (2018). Impacts on energy consumption and wear in grinding circuits with a pre-concentration stage. In IMPC 2018:book of abstracts. Moscow: Russian Academy of Sciences. Recuperado de https://repositorio.usp.br/directbitstream/f0aa5db1-78ca-4b3a-8b86-10816aa66560/Bergerman-2018-Impacts%20on%20energy%20consumption%20and%20wear-%20resumo.pdf
NLM
Bergerman MG, José Neto D, Mano ES, Chaves AP. Impacts on energy consumption and wear in grinding circuits with a pre-concentration stage [Internet]. IMPC 2018:book of abstracts. 2018 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/f0aa5db1-78ca-4b3a-8b86-10816aa66560/Bergerman-2018-Impacts%20on%20energy%20consumption%20and%20wear-%20resumo.pdf
Vancouver
Bergerman MG, José Neto D, Mano ES, Chaves AP. Impacts on energy consumption and wear in grinding circuits with a pre-concentration stage [Internet]. IMPC 2018:book of abstracts. 2018 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/f0aa5db1-78ca-4b3a-8b86-10816aa66560/Bergerman-2018-Impacts%20on%20energy%20consumption%20and%20wear-%20resumo.pdf
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BERGERMAN, Maurício Guimarães et al. Development of a laboratory test to design vertical stirred mills for iron ore regrind circuits. 2018, Anais.. Moscow: MAKO LLC, 2018. Disponível em: https://repositorio.usp.br/directbitstream/a7a4234e-df7a-4e82-b50e-e9a1cddeb651/Delboni-2018-Development%20of%20a%20laboratory%20test%20Resumo.pdf. Acesso em: 27 jan. 2026.
APA
Bergerman, M. G., Mazzinghy, D. B., Machado, L. C. R., & Delboni Júnior, H. (2018). Development of a laboratory test to design vertical stirred mills for iron ore regrind circuits. In Abstract book: IMPC 2018 - Innovative technologies are key to successful mineral processing. Moscow: MAKO LLC. Recuperado de https://repositorio.usp.br/directbitstream/a7a4234e-df7a-4e82-b50e-e9a1cddeb651/Delboni-2018-Development%20of%20a%20laboratory%20test%20Resumo.pdf
NLM
Bergerman MG, Mazzinghy DB, Machado LCR, Delboni Júnior H. Development of a laboratory test to design vertical stirred mills for iron ore regrind circuits [Internet]. Abstract book: IMPC 2018 - Innovative technologies are key to successful mineral processing. 2018 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/a7a4234e-df7a-4e82-b50e-e9a1cddeb651/Delboni-2018-Development%20of%20a%20laboratory%20test%20Resumo.pdf
Vancouver
Bergerman MG, Mazzinghy DB, Machado LCR, Delboni Júnior H. Development of a laboratory test to design vertical stirred mills for iron ore regrind circuits [Internet]. Abstract book: IMPC 2018 - Innovative technologies are key to successful mineral processing. 2018 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/a7a4234e-df7a-4e82-b50e-e9a1cddeb651/Delboni-2018-Development%20of%20a%20laboratory%20test%20Resumo.pdf
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
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SAFARI, Mehdi et al. Investigation of the reverse flotation of hematite in three different types of laboratory flotation cells. 2018, Anais.. Moscow: MAKO LLC, 2018. Disponível em: https://repositorio.usp.br/directbitstream/2292729d-c482-4c94-a6da-161c445ac25c/Leal_Filho-2018-INVESTIGATION_OF_THE_REVERSE_FLOTATION.pdf. Acesso em: 27 jan. 2026.
APA
Safari, M., Hoseinian, F. S., Deglon, D. A., Leal Filho, L. de S., & Pinto, T. C. de S. (2018). Investigation of the reverse flotation of hematite in three different types of laboratory flotation cells. In Abstract book: IMPC 2018 - Innovative technologies are key to successful mineral processing. Moscow: MAKO LLC. Recuperado de https://repositorio.usp.br/directbitstream/2292729d-c482-4c94-a6da-161c445ac25c/Leal_Filho-2018-INVESTIGATION_OF_THE_REVERSE_FLOTATION.pdf
NLM
Safari M, Hoseinian FS, Deglon DA, Leal Filho L de S, Pinto TC de S. Investigation of the reverse flotation of hematite in three different types of laboratory flotation cells [Internet]. Abstract book: IMPC 2018 - Innovative technologies are key to successful mineral processing. 2018 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/2292729d-c482-4c94-a6da-161c445ac25c/Leal_Filho-2018-INVESTIGATION_OF_THE_REVERSE_FLOTATION.pdf
Vancouver
Safari M, Hoseinian FS, Deglon DA, Leal Filho L de S, Pinto TC de S. Investigation of the reverse flotation of hematite in three different types of laboratory flotation cells [Internet]. Abstract book: IMPC 2018 - Innovative technologies are key to successful mineral processing. 2018 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/2292729d-c482-4c94-a6da-161c445ac25c/Leal_Filho-2018-INVESTIGATION_OF_THE_REVERSE_FLOTATION.pdf
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
ABNT
SAFARI, Mehdi et al. Investigation of the reverse flotation of hematite in three different types of laboratory flotation cells. 2018, Anais.. Moscow: IMPC/EUROCHEM, 2018. Disponível em: https://repositorio.usp.br/directbitstream/daf584b8-9625-4549-8073-82f9a34ded46/Leal_Filho-2018-Investigation_of_the_reverse.pdf. Acesso em: 27 jan. 2026.
APA
Safari, M., Hoseinian, F. S., Deglon, D. A., Leal Filho, L. de S., & Pinto, T. C. de S. (2018). Investigation of the reverse flotation of hematite in three different types of laboratory flotation cells. In [Proceedings]. Moscow: IMPC/EUROCHEM. Recuperado de https://repositorio.usp.br/directbitstream/daf584b8-9625-4549-8073-82f9a34ded46/Leal_Filho-2018-Investigation_of_the_reverse.pdf
NLM
Safari M, Hoseinian FS, Deglon DA, Leal Filho L de S, Pinto TC de S. Investigation of the reverse flotation of hematite in three different types of laboratory flotation cells [Internet]. [Proceedings]. 2018 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/daf584b8-9625-4549-8073-82f9a34ded46/Leal_Filho-2018-Investigation_of_the_reverse.pdf
Vancouver
Safari M, Hoseinian FS, Deglon DA, Leal Filho L de S, Pinto TC de S. Investigation of the reverse flotation of hematite in three different types of laboratory flotation cells [Internet]. [Proceedings]. 2018 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/daf584b8-9625-4549-8073-82f9a34ded46/Leal_Filho-2018-Investigation_of_the_reverse.pdf
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
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BERGERMAN, Maurício Guimarães et al. Development of a laboratory test to design vertical stirred mills for iron ore regrind circuits. 2018, Anais.. Moscow: IMPC/EUROCHEM, 2018. Disponível em: https://repositorio.usp.br/directbitstream/0a130738-c98c-426d-ad42-a5b4cb71c249/Delboni-2018-Development%20of%20a%20laboratory%20test%20to%20design%20vertical%20stirred%20mills%20for.pdf. Acesso em: 27 jan. 2026.
APA
Bergerman, M. G., Mazzinghy, D. B., Machado, L. C. de R., & Delboni Júnior, H. (2018). Development of a laboratory test to design vertical stirred mills for iron ore regrind circuits. In [Proceedings]. Moscow: IMPC/EUROCHEM. Recuperado de https://repositorio.usp.br/directbitstream/0a130738-c98c-426d-ad42-a5b4cb71c249/Delboni-2018-Development%20of%20a%20laboratory%20test%20to%20design%20vertical%20stirred%20mills%20for.pdf
NLM
Bergerman MG, Mazzinghy DB, Machado LC de R, Delboni Júnior H. Development of a laboratory test to design vertical stirred mills for iron ore regrind circuits [Internet]. [Proceedings]. 2018 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/0a130738-c98c-426d-ad42-a5b4cb71c249/Delboni-2018-Development%20of%20a%20laboratory%20test%20to%20design%20vertical%20stirred%20mills%20for.pdf
Vancouver
Bergerman MG, Mazzinghy DB, Machado LC de R, Delboni Júnior H. Development of a laboratory test to design vertical stirred mills for iron ore regrind circuits [Internet]. [Proceedings]. 2018 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/0a130738-c98c-426d-ad42-a5b4cb71c249/Delboni-2018-Development%20of%20a%20laboratory%20test%20to%20design%20vertical%20stirred%20mills%20for.pdf
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BERGERMAN, Maurício Guimarães e DELBONI JÚNIOR, Homero. Regrind of metallic ores with vertical mills: an overview of the existing plants in Brasil. 2014, Anais.. Santiago: GECAMIN, 2014. Disponível em: https://repositorio.usp.br/directbitstream/10f87929-3fa9-441e-8141-95f57e2d8423/Delboni-2014-Regrind%20of%20metallic%20ores%20with%20vertical%20mills.pdf. Acesso em: 27 jan. 2026.
APA
Bergerman, M. G., & Delboni Júnior, H. (2014). Regrind of metallic ores with vertical mills: an overview of the existing plants in Brasil. In IMPC 2014. Santiago: GECAMIN. Recuperado de https://repositorio.usp.br/directbitstream/10f87929-3fa9-441e-8141-95f57e2d8423/Delboni-2014-Regrind%20of%20metallic%20ores%20with%20vertical%20mills.pdf
NLM
Bergerman MG, Delboni Júnior H. Regrind of metallic ores with vertical mills: an overview of the existing plants in Brasil [Internet]. IMPC 2014. 2014 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/10f87929-3fa9-441e-8141-95f57e2d8423/Delboni-2014-Regrind%20of%20metallic%20ores%20with%20vertical%20mills.pdf
Vancouver
Bergerman MG, Delboni Júnior H. Regrind of metallic ores with vertical mills: an overview of the existing plants in Brasil [Internet]. IMPC 2014. 2014 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/10f87929-3fa9-441e-8141-95f57e2d8423/Delboni-2014-Regrind%20of%20metallic%20ores%20with%20vertical%20mills.pdf
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ULSEN, Carina et al. Removal of mica from crushed sand by high pressure washing. 2014, Anais.. Santiago: Escola Politécnica, Universidade de São Paulo, 2014. p. 1-9. Disponível em: https://www.gecaminpublications.com/impc2014/?noreload=1. Acesso em: 27 jan. 2026.
APA
Ulsen, C., Antoniassi, J. L., Kahn, H., Masini, E. A., & Tocchini, M. (2014). Removal of mica from crushed sand by high pressure washing. In Proceedings (p. 1-9). Santiago: Escola Politécnica, Universidade de São Paulo. Recuperado de https://www.gecaminpublications.com/impc2014/?noreload=1
NLM
Ulsen C, Antoniassi JL, Kahn H, Masini EA, Tocchini M. Removal of mica from crushed sand by high pressure washing [Internet]. Proceedings. 2014 ;1-9.[citado 2026 jan. 27 ] Available from: https://www.gecaminpublications.com/impc2014/?noreload=1
Vancouver
Ulsen C, Antoniassi JL, Kahn H, Masini EA, Tocchini M. Removal of mica from crushed sand by high pressure washing [Internet]. Proceedings. 2014 ;1-9.[citado 2026 jan. 27 ] Available from: https://www.gecaminpublications.com/impc2014/?noreload=1
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
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BERGERMAN, Maurício Guimarães et al. Copper concentrate regrind at Sossego plant using vertical mill: an evaluation on the first years of operation. 2012, Anais.. [New Delhi, India]: Indian Institute of Metals, 2012. Disponível em: https://repositorio.usp.br/directbitstream/9ac75a74-f162-4abd-93e0-6cc9d11ae222/Delboni-2012-Copper%20concentrate%20regrind%20at%20Sossego%20-Resumo.pdf. Acesso em: 27 jan. 2026.
APA
Bergerman, M. G., Machado, L. C. de R., Alves, V. K., & Delboni Júnior, H. (2012). Copper concentrate regrind at Sossego plant using vertical mill: an evaluation on the first years of operation. In Abstracts. [New Delhi, India]: Indian Institute of Metals. Recuperado de https://repositorio.usp.br/directbitstream/9ac75a74-f162-4abd-93e0-6cc9d11ae222/Delboni-2012-Copper%20concentrate%20regrind%20at%20Sossego%20-Resumo.pdf
NLM
Bergerman MG, Machado LC de R, Alves VK, Delboni Júnior H. Copper concentrate regrind at Sossego plant using vertical mill: an evaluation on the first years of operation [Internet]. Abstracts. 2012 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/9ac75a74-f162-4abd-93e0-6cc9d11ae222/Delboni-2012-Copper%20concentrate%20regrind%20at%20Sossego%20-Resumo.pdf
Vancouver
Bergerman MG, Machado LC de R, Alves VK, Delboni Júnior H. Copper concentrate regrind at Sossego plant using vertical mill: an evaluation on the first years of operation [Internet]. Abstracts. 2012 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/9ac75a74-f162-4abd-93e0-6cc9d11ae222/Delboni-2012-Copper%20concentrate%20regrind%20at%20Sossego%20-Resumo.pdf
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
ABNT
BERGERMAN, Maurício Guimarães et al. Copper concentrate regrind at Sossego plant using vertical mill: an evaluation on the first years of operation. 2012, Anais.. [New Delhi, India]: Indian Institute of Metals, 2012. Disponível em: https://repositorio.usp.br/directbitstream/d54fd7af-990c-4dfd-ad19-3e8f2735d2db/Delboni-2012-Copper%20concentrate%20regrind%20at%20Sossego%20plant%20using%20vertical.pdf. Acesso em: 27 jan. 2026.
APA
Bergerman, M. G., Machado, L. C. de R., Alves, V. K., & Delboni Júnior, H. (2012). Copper concentrate regrind at Sossego plant using vertical mill: an evaluation on the first years of operation. In Proceedings. [New Delhi, India]: Indian Institute of Metals. Recuperado de https://repositorio.usp.br/directbitstream/d54fd7af-990c-4dfd-ad19-3e8f2735d2db/Delboni-2012-Copper%20concentrate%20regrind%20at%20Sossego%20plant%20using%20vertical.pdf
NLM
Bergerman MG, Machado LC de R, Alves VK, Delboni Júnior H. Copper concentrate regrind at Sossego plant using vertical mill: an evaluation on the first years of operation [Internet]. Proceedings. 2012 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/d54fd7af-990c-4dfd-ad19-3e8f2735d2db/Delboni-2012-Copper%20concentrate%20regrind%20at%20Sossego%20plant%20using%20vertical.pdf
Vancouver
Bergerman MG, Machado LC de R, Alves VK, Delboni Júnior H. Copper concentrate regrind at Sossego plant using vertical mill: an evaluation on the first years of operation [Internet]. Proceedings. 2012 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/d54fd7af-990c-4dfd-ad19-3e8f2735d2db/Delboni-2012-Copper%20concentrate%20regrind%20at%20Sossego%20plant%20using%20vertical.pdf
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
ABNT
BALDOINO, Rogerio de Oliveira et al. Influence of temperature, water quality and collector type on flotation performance of a peruvian phosphate ore. 2012, Anais.. [New Delhi, India]: Indian Institute of Metals, 2012. Disponível em: https://repositorio.usp.br/directbitstream/3611ce74-23d2-495a-8e39-e23b4286bf00/Leal_Filho-2012-Influence_of_temperature__water_quality_and_collector_type_on_flotation.pdf. Acesso em: 27 jan. 2026.
APA
Baldoino, R. de O., Martins, M., Rodrigues, M. V. T., & Leal Filho, L. de S. (2012). Influence of temperature, water quality and collector type on flotation performance of a peruvian phosphate ore. In Proceedings. [New Delhi, India]: Indian Institute of Metals. Recuperado de https://repositorio.usp.br/directbitstream/3611ce74-23d2-495a-8e39-e23b4286bf00/Leal_Filho-2012-Influence_of_temperature__water_quality_and_collector_type_on_flotation.pdf
NLM
Baldoino R de O, Martins M, Rodrigues MVT, Leal Filho L de S. Influence of temperature, water quality and collector type on flotation performance of a peruvian phosphate ore [Internet]. Proceedings. 2012 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/3611ce74-23d2-495a-8e39-e23b4286bf00/Leal_Filho-2012-Influence_of_temperature__water_quality_and_collector_type_on_flotation.pdf
Vancouver
Baldoino R de O, Martins M, Rodrigues MVT, Leal Filho L de S. Influence of temperature, water quality and collector type on flotation performance of a peruvian phosphate ore [Internet]. Proceedings. 2012 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/3611ce74-23d2-495a-8e39-e23b4286bf00/Leal_Filho-2012-Influence_of_temperature__water_quality_and_collector_type_on_flotation.pdf
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ABNT
BALDOINO, Rogerio de Oliveira et al. Influence of temperature, water quality and collector type on flotation performance of a peruvian phosphate ore. 2012, Anais.. [New Delhi, India]: Indian Institute of Metals, 2012. Disponível em: https://repositorio.usp.br/directbitstream/2d2e34eb-0c6a-4939-bfe4-519156a58ab8/Leal_Filho-2012-Influence_of_temperature__water_quality_and_collector_-_resumo.pdf. Acesso em: 27 jan. 2026.
APA
Baldoino, R. de O., Martins, M., Rodrigues, M. V. T., & Leal Filho, L. de S. (2012). Influence of temperature, water quality and collector type on flotation performance of a peruvian phosphate ore. In Abstracts. [New Delhi, India]: Indian Institute of Metals. Recuperado de https://repositorio.usp.br/directbitstream/2d2e34eb-0c6a-4939-bfe4-519156a58ab8/Leal_Filho-2012-Influence_of_temperature__water_quality_and_collector_-_resumo.pdf
NLM
Baldoino R de O, Martins M, Rodrigues MVT, Leal Filho L de S. Influence of temperature, water quality and collector type on flotation performance of a peruvian phosphate ore [Internet]. Abstracts. 2012 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/2d2e34eb-0c6a-4939-bfe4-519156a58ab8/Leal_Filho-2012-Influence_of_temperature__water_quality_and_collector_-_resumo.pdf
Vancouver
Baldoino R de O, Martins M, Rodrigues MVT, Leal Filho L de S. Influence of temperature, water quality and collector type on flotation performance of a peruvian phosphate ore [Internet]. Abstracts. 2012 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/2d2e34eb-0c6a-4939-bfe4-519156a58ab8/Leal_Filho-2012-Influence_of_temperature__water_quality_and_collector_-_resumo.pdf
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ABNT
ULSEN, Carina et al. Mineral processing on the production of recycled sand from construction and demolition waste. 2012, Anais.. [New Delhi, India]: Indian Institute of Metals, 2012. Disponível em: https://repositorio.usp.br/directbitstream/3f8819c2-45ae-409b-bed6-237ec95c990d/Ulsen-2012-Mineral%20processing%20on%20the%20production.pdf. Acesso em: 27 jan. 2026.
APA
Ulsen, C., Kahn, H., Hawlitschek, G., & Masini, E. A. (2012). Mineral processing on the production of recycled sand from construction and demolition waste. In Proceedings. [New Delhi, India]: Indian Institute of Metals. Recuperado de https://repositorio.usp.br/directbitstream/3f8819c2-45ae-409b-bed6-237ec95c990d/Ulsen-2012-Mineral%20processing%20on%20the%20production.pdf
NLM
Ulsen C, Kahn H, Hawlitschek G, Masini EA. Mineral processing on the production of recycled sand from construction and demolition waste [Internet]. Proceedings. 2012 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/3f8819c2-45ae-409b-bed6-237ec95c990d/Ulsen-2012-Mineral%20processing%20on%20the%20production.pdf
Vancouver
Ulsen C, Kahn H, Hawlitschek G, Masini EA. Mineral processing on the production of recycled sand from construction and demolition waste [Internet]. Proceedings. 2012 ;[citado 2026 jan. 27 ] Available from: https://repositorio.usp.br/directbitstream/3f8819c2-45ae-409b-bed6-237ec95c990d/Ulsen-2012-Mineral%20processing%20on%20the%20production.pdf
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FOGGIATTO, Bianca et al. Beneficiation of nickel lateritic ore from Montes Claros de Goiás, Brazil. 2010, Anais.. Victoria: The Australasian Institute of Mining and Metallurgy, 2010. . Acesso em: 27 jan. 2026.
APA
Foggiatto, B., Tomaselli, B. Y., Delboni Júnior, H., & David, D. (2010). Beneficiation of nickel lateritic ore from Montes Claros de Goiás, Brazil. In Congress Proceedings IMPC2010. Victoria: The Australasian Institute of Mining and Metallurgy.
NLM
Foggiatto B, Tomaselli BY, Delboni Júnior H, David D. Beneficiation of nickel lateritic ore from Montes Claros de Goiás, Brazil. Congress Proceedings IMPC2010. 2010 ;[citado 2026 jan. 27 ]
Vancouver
Foggiatto B, Tomaselli BY, Delboni Júnior H, David D. Beneficiation of nickel lateritic ore from Montes Claros de Goiás, Brazil. Congress Proceedings IMPC2010. 2010 ;[citado 2026 jan. 27 ]
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BERGERMAN, Maurício Guimarães et al. Variability studies for the Sossego 41 ktpd grinding circuit. 2008, Anais.. Beijing, China: Science Press, 2008. . Acesso em: 27 jan. 2026.
APA
Bergerman, M. G., Morais, J., Castro, A., Nankran, M., & Delboni Júnior, H. (2008). Variability studies for the Sossego 41 ktpd grinding circuit. In Proceedings. Beijing, China: Science Press.
NLM
Bergerman MG, Morais J, Castro A, Nankran M, Delboni Júnior H. Variability studies for the Sossego 41 ktpd grinding circuit. Proceedings. 2008 ;[citado 2026 jan. 27 ]
Vancouver
Bergerman MG, Morais J, Castro A, Nankran M, Delboni Júnior H. Variability studies for the Sossego 41 ktpd grinding circuit. Proceedings. 2008 ;[citado 2026 jan. 27 ]
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CAMPOS, Antonio Rodrigues de e CHAVES, Arthur Pinto. Technological aspects on the beneficiation of Candiota coal. 1997, Anais.. Clausthal-Zellerfeld: GDMB, 1997. . Acesso em: 27 jan. 2026.
APA
Campos, A. R. de, & Chaves, A. P. (1997). Technological aspects on the beneficiation of Candiota coal. In Proceedings. Clausthal-Zellerfeld: GDMB.
NLM
Campos AR de, Chaves AP. Technological aspects on the beneficiation of Candiota coal. Proceedings. 1997 ;[citado 2026 jan. 27 ]
Vancouver
Campos AR de, Chaves AP. Technological aspects on the beneficiation of Candiota coal. Proceedings. 1997 ;[citado 2026 jan. 27 ]