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原位
含甲烷沉积物中自黄铁矿的制备及应用模拟器硫同位素分析
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Environment
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Environment
Preparation of Authigenic Pyrite from Methane-bearing Sediments for
In Situ
Sulfur Isotope Analysis Using SIMS
Please note that all translations are automatically generated.
Click here for the English version.
原位
含甲烷沉积物中自黄铁矿的制备及应用模拟器硫同位素分析
DOI:
10.3791/55970-v
•
09:31 min
•
August 31, 2017
•
Zhiyong Lin
3
,
Xiaoming Sun
2,3,4
,
Jörn Peckmann
,
Yang Lu
3
,
Harald Strauss
,
Li Xu
3
,
Hongfeng Lu
,
Barbara M.A. Teichert
1
School of Earth Sciences and Engineering
,
Sun Yat-sen University
,
2
School of Marine Sciences
,
Sun Yat-sen University
,
3
Guangdong Provincial Key Laboratory of Marine Resources and Coastal Engineering
,
4
South China Sea Bio-Resource Exploitation and Utilization Collaborative Innovation Center
,
5
Institut für Geologie
,
Universität Hamburg
,
6
Institut für Geologie und Paläontologie
,
Westfälische Wilhelms-Universität Münster
,
7
Guangzhou Marine Geological Survey
Chapters
00:05
Title
00:59
Sediment Core Sample Collection
02:48
Morphology Observation
04:17
Sample Preparation for SIMS Analysis
05:25
SIMS Analysis
06:47
Results: The Content and Sulfur Isotopic Compositions of Sulfide Minerals
08:29
Conclusion
Summary
Automatic Translation
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Automatic Translation
含甲烷沉积物中黄铁矿的硫同位素组成 (δ
34
) 的分析通常集中在散装样品上。在这里, 我们应用二次离子质谱分析了不同黄铁矿世代的δ
34
值, 以了解黄的成岩史。
Tags
Pyrite
Authigenic Pyrite
Methane-bearing Sediments
In Situ Sulfur Isotope Analysis
SIMS
Diagenetic History
Biogeochemical Processes
Organiclastic Sulfur Reduction
Sulfur-driven Anaerobic Oxidation Of Methane
High-resolution
Precision
Sediment Core
Sediment Separation
Pyrite Aggregate
Bulk Sulfur Extraction
Morphological Features
Textural Features
Sample Preparation
Article
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