Difference between revisions of "Organic Geochemistry"
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+ | 서론, 강의소개 <br/> | ||
+ | Introduction | ||
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− | + | 중간 프로젝트 주제 정하기 <br/> | |
− | + | Determining the subject of the midterm project | |
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− | + | 유기화학의 기초 </br> | |
− | + | Basic organic geochemistry | |
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− | + | 유기물 명명법 <br/> | |
− | * | + | Namiming organic compounds |
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− | + | 생물에 의한 유기물 생성 <br/> | |
+ | Biogenic organic matter | ||
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+ | 스테레오 화학 <br/> | ||
+ | Stereochemistry | ||
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− | + | 탄소 순환 <br/> | |
− | + | Carbon cycle | |
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+ | 지권에서의 탄소 순환 조사<br/> | ||
+ | Study carbon cycle in the geosphere | ||
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Revision as of 11:59, 6 March 2015
{{#Customtitle:유기지구화학 Organic Geochemistry}}
Contents
공지사항 Notices
개요 Outlines
지권에서의 유기물의 집적과 변환에 대해 공부한다. 이 강의에서는 생물에 의한 유기물의 생산, 퇴적 유기물의 조성, 생화학적 및 열적 유기물의 변환, 석유 및 관련 물질의 생성, 유기물의 분석 방법, 유기물의 동위원소 조성, 그리고 근원암 평가 등에 대한 내용을 다룬다.
This course is to study accumulation and transformation of organic matter in the geoshpere. The lecture deals with biological production, the composition, biogeochemical and thermal transformation, petroleum and other related material generation, analtical methods, isotopic compositions and source rock evaluation of organic matter.
일반 과목 정보 General course information
- Course code: 188059
- Credit-Lecture-Lab work: 3-3-0
- Grading: With Midterm Exam (30%) + Final Exam (30%) + Assignment(30%) + Attendance (10%)
- Type of class: Lecture + Discussion
교재 및 참고서 Text & references
- Text: None
- References: Petroleum formation and occurrence (Tissot & Welte, Springer-Verlag),
Geochemistry in petroleum exploration (Waples, Klwer Academic Pub.)
수강 조건 Prerequisites
지질학(특히, 에너지 지질학) 및 유기화학 지식이 필요하다.
Knowledge in energy geology and organic geochemistry highly recommened
강의 계획 Lecture schedule
Week No. | Lecture title | Assignment | Lecture note | Reading Materials & Other Supplements |
1 |
서론, 강의소개 |
중간 프로젝트 주제 정하기 |
|
|
2 |
유기화학의 기초 |
유기물 명명법 |
|
|
3 |
생물에 의한 유기물 생성 |
스테레오 화학 |
|
|
4 |
탄소 순환 |
지권에서의 탄소 순환 조사 |
|
|
5 | Structure of atoms; how the electron configuration controls the properties of the elements | Calculation of the Gibbs free energy change as a function of temperature and pressure | ||
6 | Chemical bondings and crystal chemistry of minerals | Calculation of ionicities of bondings in various silicates | ||
7 | Radiogenic isotopes, Part 1; principles of radioactive decay and age dating | Caculation of Radius ratio range for a given coordination number | ||
8 | Radiogenic isotopes, Part 2; utilization of radiogenic isotopes in various geologic fields | Determination of absolute age | ||
9 | Stable isotopes, Part 1; isotope fractionation | |||
10 | Stable isotopes, Part 2; Utilization of stable isotopes in various geological fields | Calculation of isotope fractionation | ||
11 | Igeneous geochemistry, Part 1: Major element distribution | Extraction for stable isotope analysis | ||
12 | Igneous geochemistry, Part 2: Minor elelment distribution | Interpretation of stability diagrams | ||
13 | Low T aqueous geochemistry, Part 1; types of reactions and equilibrium | Analysis of REE patterns | ||
14 | Low T aqueous geochemistry, Part 2; Phase equilibria | Calculation of solubilities | ||
15 | Low T aqueous geochemistry, Part 3; Redox reactions | Eh-pH diagram |