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Assessing the saponification effect on the quantification of long chain alkenones and the U-37(K ') paleothermometer

Authors
Gal, Jong-KuKim, Jung-HyunKim, DaunKang, SujinShin, Kyung-Hoon
Issue Date
Aug-2018
Publisher
Business Center for Academic Societies Japan/Nihon Gakkai Jimu Senta
Keywords
alkenones; U-37(K '); sea surface temperature; saponification; Yellow Sea
Citation
Geochemical Journal, v.52, no.6, pp 497 - 507
Pages
11
Indexed
SCI
SCIE
SCOPUS
Journal Title
Geochemical Journal
Volume
52
Number
6
Start Page
497
End Page
507
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/8048
DOI
10.2343/geochemj.2.0538
ISSN
0016-7002
1880-5973
Abstract
In this study, we evaluated the saponification effect on alkenone quantification and the U-37(K') paleothermometer using two internal standards (2-nonadecanone and squalane) by analyzing in-house reference sediment and eleven surface sediments taken from the Yellow Sea. The C-37:3 and C-37:2 alkenone concentrations of the in-house reference sediment showed significant differences between before and after the saponification (Delta C-37:3 and Delta C-37:2) depending on the internal standards used. However, the differences in the U-37(K') and the estimated sea surface temperatures were insignificant. The Delta C-37:3 and Delta C-37:2 concentrations were larger when calculating based on 2-nonadecanone (46 +/- 26 and 136 +/- 67 ng/g, respectively) than those based on squalane (-7 +/- 4 and -12 +/- 10 ng/g, respectively) in the surface sediments. Interestingly, the Delta C-37:3 and Delta C-37:2 concentrations based on 2-nonadecanone showed a strong correlation with the loss of 2-nonadecanone that occurred during saponification. Accordingly, our study indicated that preferential loss of internal standards (e.g., 2-nonadecanone) can occur during saponification, which affects alkenone quantification and, thus, attention should be paid when choosing an internal standard.
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ERICA 공학대학 (ERICA 해양융합공학과)
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