会议论文详细信息
Padjadjaran Earth Dialogues, International Symposium on Geophysical Issues
Clay minerals in the sediments as useful paleoclimate proxy: Lake Sentarum case study, West Kalimantan, Indonesia
Dianto, A.^1 ; Subehi, L.^1 ; Ridwansyah, I.^1 ; Hantoro, W.S.^2
Research Center for Limnology, Indonesian Institute of Sciences, Cibinong Science Center, Jalan Raya Bogor Km 46, Cibinong, Bogor
16911, Indonesia^1
Research Center for Geotechnology, Indonesian Institute of Sciences, Jalan Sangkuriang No.19, Dago, Coblong, Kota Bandung
40135, Indonesia^2
关键词: Arid climates;    Chemical weathering;    Climate condition;    Climate history;    Lake sediments;    Paleoclimate conditions;    Paleoclimate proxy;    Weathering mechanisms;   
Others  :  https://iopscience.iop.org/article/10.1088/1755-1315/311/1/012036/pdf
DOI  :  10.1088/1755-1315/311/1/012036
来源: IOP
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【 摘 要 】

Lake Sentarum is a flood-plains lake that will dry and flood as climate cycle that is interesting to be studied climate change from the past to near the present. The objective of this study is to reveals paleoclimate conditions by analysing clay minerals that present in the lake sediments. The study investigated clay mineral in lake sediments from 70 cm long core, X-RD analysis was obtained to identify various of clay minerals. The clay minerals of Lake Sentarum comprises of illite, chlorite, and kaolinite. The relative change in abundance of clay minerals indicating climate conditions, besides numbers of chemistry and crystallinity of illite represents weathering mechanism. Our research reveals that climate history of Lake Sentarum from sediments core began cold and arid climate episode. This episode was characterized by low value of illite chemistry and illite crystallinity were 0.37-0.41 and 0.19°Δ2θ-0.2°Δ2θ, respectively, and slight decrease abundance of kaolinite. There was no significant changes until the middle of the sediments core. Significant changes of abundance of kaolinite and illite chemistry occurred in top of the core. The percentage of kaolinite and illite chemistry became the highest value that reflected strong chemical weathering occurred in the watershed with warm and high rainfall climate conditions.

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