{"id":null,"code":"493608S","name":{"valueFi":"Development of benefication processes","valueEn":"Development of benefication processes","valueSv":""},"credits":10.0,"minCredits":10,"maxCredits":10,"tags":[],"createdAt":1790534899889,"contentList":[{"title":{"valueFi":"Osaamistavoitteet","valueEn":"Learning outcomes","valueSv":""},"content":{"valueFi":"Upon completion of the course student is able to\r\n - Describe the development of the mineral processing chain starting from mineralogy and laboratory scale tests, proceeding to pilot and industrial scale process\r\n - Select the correct lab tests for the selected ore\r\n - Describe the essential parameters from process development and optimization points of view.\r\n - Analyze the reasons for the selection of processes based on raw material properties\r\n - Select the appropriate combination of methods for a particular application\r\n - Design the flowsheet and develop a process for the selected raw material\r\n - Integrate various processing techniques to elaborate a complete flowsheet to recover valuable minerals and metals from a particular ore\r\n - Design and size equipment appropriate to the flow rate of the material to be treated\r\n - Evaluate and report the results obtained from the experimental and fieldwork\r\n - Use specialized software for modelling and simulation applied to process design","valueEn":"Upon completion of the course student is able to\r\n - Describe the development of the mineral processing chain starting from mineralogy and laboratory scale tests, proceeding to pilot and industrial scale process\r\n - Select the correct lab tests for the selected ore\r\n - Describe the essential parameters from process development and optimization points of view.\r\n - Analyze the reasons for the selection of processes based on raw material properties\r\n - Select the appropriate combination of methods for a particular application\r\n - Design the flowsheet and develop a process for the selected raw material\r\n - Integrate various processing techniques to elaborate a complete flowsheet to recover valuable minerals and metals from a particular ore\r\n - Design and size equipment appropriate to the flow rate of the material to be treated\r\n - Evaluate and report the results obtained from the experimental and fieldwork\r\n - Use specialized software for modelling and simulation applied to process design","valueSv":""}},{"title":{"valueFi":"Sisältö","valueEn":"Content","valueSv":""},"content":{"valueFi":"Lectures:\r\n - Module 1 Mineral liberation case study\r\n - Module 2 Ore Characterization for comminution circuit design\r\n - Module 3 Process Circuit Design\r\n - Module 4 Comminution Circuit Design\r\n - Module 5 Batch And Locked cycle tests for the design of flotation circuits\r\n - Module 6 Flotation Circuit Design and Scale-up (HSC)\r\n - Module 7 Rules for selection of operation and processes\r\n - Module 8 Pulp potential and other components in flotation in control and design\r\n - Module 9 Design of beneficiation circuits (BFD or BFS, PFD, P&ID and symbols of the circuit\r\n - Module 10 Mass balance using HSC and scale-up from batch kinetic tests\r\n - Module 11 Mass balance using HSC and scale up from continuous batch flotation\r\n - Module 12 Design and start-up of mine water treatment plants\r\nLaboratory practice\r\n - Practice 1 Optical microscopy and MLA (trial mineral characterization)\r\n - Practice 2 Bond test\r\n - Practice 3 Kinetic Test to optimize parameter\r\n - Practice 4 Continuous cycle test one component\r\n - Practice 5 continuous cycle test for two minerals (optimization)\r\n - Practice 6 Analysis and scale-up from laboratory to plant","valueEn":"Lectures:\r\n - Module 1 Mineral liberation case study\r\n - Module 2 Ore Characterization for comminution circuit design\r\n - Module 3 Process Circuit Design\r\n - Module 4 Comminution Circuit Design\r\n - Module 5 Batch And Locked cycle tests for the design of flotation circuits\r\n - Module 6 Flotation Circuit Design and Scale-up (HSC)\r\n - Module 7 Rules for selection of operation and processes\r\n - Module 8 Pulp potential and other components in flotation in control and design\r\n - Module 9 Design of beneficiation circuits (BFD or BFS, PFD, P&ID and symbols of the circuit\r\n - Module 10 Mass balance using HSC and scale-up from batch kinetic tests\r\n - Module 11 Mass balance using HSC and scale up from continuous batch flotation\r\n - Module 12 Design and start-up of mine water treatment plants\r\nLaboratory practice\r\n - Practice 1 Optical microscopy and MLA (trial mineral characterization)\r\n - Practice 2 Bond test\r\n - Practice 3 Kinetic Test to optimize parameter\r\n - Practice 4 Continuous cycle test one component\r\n - Practice 5 continuous cycle test for two minerals (optimization)\r\n - Practice 6 Analysis and scale-up from laboratory to plant","valueSv":""}},{"title":{"valueFi":"Suoritustavat","valueEn":"Study Methods","valueSv":""},"content":{"valueFi":"Due to continuous assessment used in this course, it is highly recommended that students are present in all lectures\r\nContinuous assessment during lectures, exercises, practical work, seminar, reports. Major students participate in a seminar peer review as the assessment method. Intended learning outcomes will be assessed in a way as that the student being able to demonstrate the application of the learned skills. Also, problems discussion, but also through student’s performance during lab sessions and especially through final report presentation.The final report aims to present the results in detail and on that basis to elaborate and defend the choice of a realistic flowsheet with mass and recovery balancing of the metal of interest. The choice should be based on literature review, practical work and the discussion should be based on proposing alternative options.Therefore, it is foreseeable that the competences acquired during the course will be illustrated in a quite convincing manner.","valueEn":"Due to continuous assessment used in this course, it is highly recommended that students are present in all lectures\r\nContinuous assessment during lectures, exercises, practical work, seminar, reports. Major students participate in a seminar peer review as the assessment method. Intended learning outcomes will be assessed in a way as that the student being able to demonstrate the application of the learned skills. Also, problems discussion, but also through student’s performance during lab sessions and especially through final report presentation.The final report aims to present the results in detail and on that basis to elaborate and defend the choice of a realistic flowsheet with mass and recovery balancing of the metal of interest. The choice should be based on literature review, practical work and the discussion should be based on proposing alternative options.Therefore, it is foreseeable that the competences acquired during the course will be illustrated in a quite convincing manner.","valueSv":""}},{"title":{"valueFi":"Toteutustavat","valueEn":"Teaching Methods","valueSv":""},"content":{"valueFi":"Järjestämistapa\r\nLectures, exercises, modelling and simulation with HSC (use of laptops and software), laboratory practice and practical work in groups\r\nSimulation exercises supported by the contact-education, which consists of simulation exercises (32 hours of guided work + 16 hours of individual work = total 48 hours). The rest (approximately 87 hours) is individual work outside the lectures.","valueEn":"Mode of delivery\r\nLectures, exercises, modelling and simulation with HSC (use of laptops and software), laboratory practice and practical work in groups\r\nSimulation exercises supported by the contact-education, which consists of simulation exercises (32 hours of guided work + 16 hours of individual work = total 48 hours). The rest (approximately 87 hours) is individual work outside the lectures.","valueSv":""}},{"title":{"valueFi":"Oppimateriaalit","valueEn":"Learning material","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}},{"title":{"valueFi":"Lisätiedot","valueEn":"Further information","valueSv":""},"content":{"valueFi":"This course is not for exchange students at least have the prerequisite courses\r\nThe course is developed face-to-face if there are more than 5 students\r\nOpetuskieli: English\r\n\r\nAjoitus: Periods 3-4\r\n\r\nKohderyhmä: Master's of Mining Engineering and Mineral Processing / Mineral Processing study option\r\n\r\nVastuuhenkilö: Maria Sinche Gonzalez","valueEn":"This course is not for exchange students at least have the prerequisite courses\r\nThe course is developed face-to-face if there are more than 5 students\r\nLanguage of instruction: English\r\n\r\nTiming: Periods 3-4\r\n\r\nTarget group: Master's of Mining Engineering and Mineral Processing / Mineral Processing study option\r\n\r\nPerson responsible: Maria Sinche Gonzalez","valueSv":""}},{"title":{"valueFi":"Kurssikirjallisuus","valueEn":"Literature","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}},{"title":{"valueFi":"Esitietovaatimukset","valueEn":"Qualifications","valueSv":""},"content":{"valueFi":"Esitietovaatimukset It is compulsory to have previously approved the courses\r\n493605S Ore beneficiation technologies and\r\n491687S Process modeling in mineral processing","valueEn":"Prerequisites and co-requisites: It is compulsory to have previously approved the courses\r\nCourses 493605S Ore beneficiation technologies and 491687S Process modeling in mineral processing","valueSv":""}},{"title":{"valueFi":"Arviointiasteikko","valueEn":"Assessment scale","valueSv":""},"content":{"valueFi":"1-5/HYL","valueEn":"1-5/FAIL","valueSv":"1-5/FAIL"}},{"title":{"valueFi":"Arviointikriteerit","valueEn":"Assessment criteria","valueSv":""},"content":{"valueFi":"The course unit utilizes a numerical grading scale 1-5. In the numerical scale zero stands for a fail.\r\nFinal Exam\r\nAll tasks and reports must be submitted","valueEn":"The course unit utilizes a numerical grading scale 1-5. In the numerical scale zero stands for a fail.\r\nFinal Exam\r\nAll tasks and reports must be submitted","valueSv":""}},{"title":{"valueFi":"Arviointikriteerit 2","valueEn":"Evaluation criteria 2","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}},{"title":{"valueFi":"Arviointikriteerit 3","valueEn":"Evaluation criteria 3","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}},{"title":{"valueFi":"Arviointikriteerit 4","valueEn":"Evaluation criteria 4","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}},{"title":{"valueFi":"Pääasiallinen opetuskieli","valueEn":"Primary Teaching Language","valueSv":""},"content":{"valueFi":"englanti","valueEn":"English","valueSv":"engelska"}},{"title":{"valueFi":"Taso","valueEn":"Level","valueSv":""},"content":{"valueFi":"Syventävät opinnot","valueEn":"Advanced Studies","valueSv":"Syventävät opinnot"}},{"title":{"valueFi":"Oppiaine","valueEn":"Subject","valueSv":""},"content":{"valueFi":"Kaivos- ja rikastustekniikka","valueEn":"Mining Engineering and Mineral Processing","valueSv":""}},{"title":{"valueFi":"Vastuuhenkilöt","valueEn":"Person in charge","valueSv":""},"content":{"valueFi":"Maria Sinche Gonzalez, Kari Moisio","valueEn":"Maria Sinche Gonzalez, Kari Moisio","valueSv":"Maria Sinche Gonzalez, Kari Moisio"}},{"title":{"valueFi":"Luokittelu","valueEn":"Classification","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}},{"title":{"valueFi":"Linkit","valueEn":"Links","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}}]}