Kode Mata KuliahTA2204 / 3 SKS
Penyelenggara121 - Teknik Pertambangan / FTTM
KategoriKuliah
Bahasa IndonesiaEnglish
Nama Mata KuliahGenesa Bahan GalianGenesis of Mineral Deposit
Bahan Kajian
  1. Pendahuluan Morfologi badan bijih : Komposisi kerak bumi, siklus batuan dan konsentrasi Clarke, peranan ilmu genesa bahan galian dalam dunia pertambangan Beberapa bentuk-bentuk endapan (morfologi dan geometri).
  2. Klasifikasi endapan bahan galian Kontrol pengendapan dan larutan pembawa bijih : Beberapa klasifikasi endapan bahan galian : Niggli, Schneiderhöhn, Lindgren, Petrascheck. Diagram Eh-pH, diagram Niggli, kontrol pengendapan dan larutan pembawa bijih
  3. Mendala metalogenetik, definisi, serta beberapa terminologi : Intrusi batuan beku, tektonik, penyebaran endapan pada kerak bumi, definisi, istilah.
  4. Kristalisasi awal larutan pembawa bijih : Teori pembentukan endapan, unsur penting Fe, Cr, Ti, Pt, (V, Ir, Os, Pd), Intan
  5. Endapan magmatik cair (kristalisasi utama) : Teori pembentukan endapan dan contoh-contoh endapan bijih mis.:Bushveld (Cr), Sudbury (Ni), Kiruna (Fe)
  6. Endapan pegmatitik-pneumatolitik serta kontak metasomatisme : Teori pembentukan dan contoh endapan seperti endapan pegmatik, skarn dan greissen
  7. Endapan pegmatitik-pneumatolitik serta kontak metasomatisme : Teori pembentukan dan contoh endapan seperti endapan pegmatik, skarn dan greissen
  8. Endapan pada lingkungan hydrothermal : Kontribusi magma dalam pembentukan endapan pada lingkungan hydrothermal
  9. Endapan porfiri : Proses pembentukan endapan porfiri
  10. Endapan epithermal : Proses pembentukan endapan epithermal high sulfidasi dan low sulfidasi
  11. Endapan Sedimenter Endapan Lateritik : Proses pembentukan endapan sedimenter sebagai akibat pelapukan secara mekanis Proses pembentukan endapan lateritik sebagai akibat pelapukan mekanis dan kimiawi
  12. Endapan khusus : Beberapa endapan khusus seperti VMS, Evaporit, Tipe Carlin, Sedex, dll
  13. Bahan galian industri : Penjelasan beberapa komoditi endapan bahan galian industri.
  1. Introduction to Ore Body Morphology: Composition of the Earth's crust, the rock cycle, and Clarke's concentration, the role of mineral genesis in mining. Several deposit forms (morphology and geometry).
  2. Classification of Mineral Deposits. Control of Sedimentation and Ore-Bearing Solutions: Several classifications of mineral deposits: Niggli, Schneiderhöhn, Lindgren, and Petrascheck. Eh-pH diagram, Niggli diagram, control of sedimentation and ore-bearing solutions.
  3. Metallogenetics, definitions, and several terminologies: Igneous intrusions, tectonics, distribution of deposits in the Earth's crust, definitions, and terms.
  4. Initial crystallization of ore-bearing solutions: Deposition formation theory, key elements: Fe, Cr, Ti, Pt, (V, Ir, Os, Pd), and diamond.
  5. Liquid magmatic deposits (primary crystallization): Deposition formation theory and examples of ore deposits, e.g., Bushveld (Cr), Sudbury (Ni), Kiruna (Fe).
  6. Pegmatitic-pneumatolytic deposits and contact metasomatism: Formation theory and examples of deposits such as pegmatic, skarn, and greissen deposits.
  7. Pegmatitic-pneumatolytic deposits and contact metasomatism: Formation theory and examples of deposits such as pegmatic, skarn, and greissen deposits.
  8. Hydrothermal deposits: Contribution of magma to the formation of deposits in hydrothermal environments.
  9. Porphyry deposits: The formation process of porphyry deposits.
  10. Epithermal deposits: The formation process of high-sulfidation and low-sulfidation epithermal deposits.
  11. Sedimentary deposits: Lateritic deposits: Formation process. Sedimentary deposits resulting from mechanical weathering. The process of lateritic deposit formation resulting from mechanical and chemical weathering.
  12. Special deposits: Several special deposits such as VMS, Evaporites, Carlin Type, Sedex, etc.
  13. Industrial minerals: Explanation of several industrial mineral deposit commodities.
Capaian Pembelajaran Mata Kuliah (CPMK)
  1. Mahasiswa mampu mendeskripsikan genetik endapan
  2. Mahasiswa mampu mengklasifikasikan jenis endapan
  3. Mahasiswa mampu mengidentifikasi morfologi dan bentuk endapan
  4. Mahasiswa mampu menjelaskan karakterisasi endapan mineral
  5. Mahasiswa mampu meringkas model genetik endapan, khususnya beberapa endapan yang terdapat di Indonesia
  1. Students are able to describe the genetics of sediments.
  2. Students are able to classify sediment types.
  3. Students are able to identify the morphology and shape of sediments.
  4. Students are able to explain the characterization of mineral deposits.
  5. Students are able to summarize the genetic model of sediments, particularly those found in Indonesia.
Metode PembelajaranKuliah, Ekskursi, dan Presentasi Mahasiswa Dalam KelasLecture, field excursion, class presentation
Modalitas PembelajaranLuring SinkronIn person
Jenis NilaiABCDE
Metode PenilaianUTS, UAS, Tugas dan KuisMidterm exam, final exam, assignment, quiz
Catatan Tambahan