Provenance of Sediments and Evidence of Hydrothermal Venting Adjacent to the Fonualei Rift and Spreading Center, Lau Basin, Southwest Pacific

Q4 Engineering
M. Kim, K. Hyeong, I. Seo, C. Yoo
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Abstract

The bulk and partition geochemistry was studied in two sediment cores collected from the axial valley of the north-central Fonualei Rift and Spreading Center (FRSC), Lau back-arc Basin, southwest Pacific. The sediments consist of mostly volcanic ash, although minor amounts of biogenic and other components were present in some intervals. The major element composition of bulk sediments recalculated to a carbonate-free basis was in good agreement with the magma compositions of the adjacent Tofua Arc and the FRSC, with only significant difference in Mn content. The enrichment of Mn and other associated elements (e.g. Cu, Co, Ni, and P) is attributed to hydrothermal input to the sediments, as evidenced by their significant partitioning in the non-detrital phases according to the partition geochemistry. Hydrogenetic and diagenetic inputs were assessed to be relatively insignificant. Estimated hydrothermal Mn fluxes during the Holocene ranged between 5.0 and 37.1 mg cm kyr, with the higher values in younger sediments, suggesting enhanced hydrothermal activity. The hydrothermal Mn fluxes comparable to or higher than those reported from other spreading centers with strong hydrothermal activities may indicate the presence of unknown hydrothermal vent sites and/or topographic restriction on the dispersal of hydrothermal plumes in the northern part of the FRSC.
西南太平洋Lau盆地Fonualei裂谷和扩展中心附近沉积物的来源和热液喷口的证据
在西南太平洋Lau弧后盆地Fonualei裂谷和伸展中心(FRSC)中北部轴向山谷采集的两个沉积物岩心中,对其体积和分区地球化学进行了研究。沉积物主要由火山灰组成,尽管在某些区间存在少量的生物成因成分和其他成分。在无碳酸盐的基础上重新计算的大块沉积物的主要元素组成与邻近豆腐弧和FRSC的岩浆组成非常一致,只有Mn含量的显著差异。Mn和其他伴生元素(如Cu、Co、Ni和P)的富集归因于沉积物的热液输入,根据分配地球化学,它们在非碎屑相中的显著分配证明了这一点。水文成因和成岩作用的输入被评估为相对微不足道。全新世期间估计的热液锰通量在5.0和37.1 mg cm kyr之间,在较年轻的沉积物中具有较高的值,表明热液活动增强。与其他具有强烈热液活动的扩散中心报告的热液锰通量相当或更高,这可能表明FRSC北部存在未知的热液喷口位置和/或热液羽流扩散的地形限制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Ocean and Polar Research
Ocean and Polar Research Engineering-Ocean Engineering
CiteScore
0.80
自引率
0.00%
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