Pleistocene glaciomarine laminated muds in the Central Basin of the northwestern Ross Sea and their palaeoceanographic records

IF 2.2 3区 地球科学 Q2 GEOSCIENCES, MULTIDISCIPLINARY Terra Nova Pub Date : 2023-10-20 DOI:10.1111/ter.12688
Boo‐Keun Khim, Young Kwan Sohn, Min Kyung Lee, Sunghan Kim, Jae Il Lee, Kyu Cheul Yoo
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Abstract

Abstract Glaciomarine laminated muds around the Antarctic continental margin are important in the marine geological record related to ice sheet dynamics. Microscopic observation and backscattered electron imagery of Pleistocene laminated muds in the Central Basin (Ross Sea) reveal that the light laminae comprise terrigenous angular to subangular silt‐sized particles, scattered diatom fragments, and eroded sand‐sized lumps of fossil‐bearing mud. In contrast, the dark laminae are clayey and biogenic with very tiny pieces of fossils. These laminated muds are interpreted to have been deposited by subglacial meltwater plumes underneath the advancing glaciers that torn off the earlier‐deposited and semi‐consolidated diatom‐rich sediments. Thus, most biogenic components of these laminated muds were recycled from older deposits, indicating that they are not related to enhanced biological production during the mud deposition. Our study suggests that the recycling of biogenic particles should be considered when interpreting the palaeoclimatic and palaeoceanographic implications of Antarctic environmental system.
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罗斯海西北部中部盆地更新世冰海叠层泥及其古海洋学记录
摘要南极大陆边缘冰川海洋层状泥在与冰盖动力学相关的海洋地质记录中具有重要意义。对中央盆地(罗斯海)更新世层状泥的显微观察和背散射电子成像表明,轻层状泥包括陆源角至亚角粉砂级颗粒、分散硅藻碎片和侵蚀砂级含化石泥块。相比之下,暗纹层是粘土的,是生物成因的,有非常小的化石碎片。这些层状的泥被解释为是由前进的冰川下面的冰下融水柱沉积的,这些融水柱撕裂了早期沉积的和半固结的富含硅藻的沉积物。因此,这些层状泥浆中的大多数生物成分都是从较老的沉积物中回收的,这表明它们与泥浆沉积期间生物产量的增加无关。我们的研究表明,在解释南极环境系统的古气候和古海洋意义时,应考虑生物颗粒的再循环。
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来源期刊
Terra Nova
Terra Nova 地学-地球科学综合
CiteScore
4.80
自引率
8.30%
发文量
59
审稿时长
2.3 months
期刊介绍: Terra Nova publishes short, innovative and provocative papers of interest to a wide readership and covering the broadest spectrum of the Solid Earth and Planetary Sciences. Terra Nova encompasses geology, geophysics and geochemistry, and extends to the fluid envelopes (atmosphere, ocean, environment) whenever coupling with the Solid Earth is involved.
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