日本别府湾,作为人类世系列的候选全球边界层型剖面和点

Michinobu Kuwae, B. Finney, Zhiyuan Shi, A. Sakaguchi, Narumi Tsugeki, T. Omori, T. Agusa, Yoshiaki Suzuki, Y. Yokoyama, H. Hinata, Yoshio Hatada, J. Inoue, K. Matsuoka, Misaki Shimada, H. Takahara, Shin Takahashi, D. Ueno, Atsuko Amano, J. Tsutsumi, Masanobu Yamamoto, K. Takemura, Keitaro Yamada, K. Ikehara, T. Haraguchi, S. Tims, M. Froehlich, L. K. Fifield, T. Aze, K. Sasa, Tsutomu Takahashi, M. Matsumura, Y. Tani, P. Leavitt, H. Doi, T. Irino, K. Moriya, A. Hayashida, Kotaro Hirose, Hidekazu Suzuki, Y. Saito
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引用次数: 1

摘要

为了评估别府湾沉积物作为人类世全球边界层型剖面和点(GSSP)候选者的潜力,我们整合了99个代理数据集。序列的数据集可以追溯到100年前 大多数代理记录的年份和1300 几年的记录。人类指纹的累计出现次数显示,在1953年洪水层底部64.6以上,出现了前所未有的增加 厘米(1953 CE),这与239Pu+240Pu的全球沉降物的初始增加相吻合。人类指纹扩散的开始之后是各种与人类相关的事件,包括凤尾鱼鳞片中现代14C百分比的快速增加,凤尾鱼δ15N和δ13C记录的氮和碳循环的变化,重金属污染加剧,新材料(球状碳质颗粒、微塑料、多氯联苯)沉积增加,缺氧(Re/Mo比)和富营养化(生物蛋白石、TOC、TN、硅藻、叶绿素a)的发生,前所未有的微型浮游生物群落变化(类胡萝卜素、硅藻、甲藻的组成),从硅藻化石和岩性变化推断出的异常高的春季气温。这些证据表明,1953年地层的基底是该场地地层中最好的GSSP级候选地层。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Beppu Bay, Japan, as a candidate Global boundary Stratotype Section and Point for the Anthropocene series
For assessment of the potential of the Beppu Bay sediments as a Global boundary Stratotype Section and Point (GSSP) candidate for the Anthropocene, we have integrated datasets of 99 proxies. The datasets for the sequences date back 100 years for most proxy records and 1300 years for several records. The cumulative number of occurrences of the anthropogenic fingerprint reveal unprecedented increases above the base of the 1953 flood layer at 64.6 cm (1953 CE), which coincides with an initial increase in global fallout of 239Pu+240Pu. The onset of the proliferation of anthropogenic fingerprints was followed by diverse human-associated events, including a rapid increase in percent modern 14C in anchovy scales, changes in nitrogen and carbon cycling as recorded by anchovy δ15N and δ13C, elevated pollution of heavy metals, increased deposition of novel materials (spheroidal carbonaceous particles, microplastics, polychlorinated biphenyls), the occurrence of hypoxia (Re/Mo ratio) and eutrophication (biogenic opal, TOC, TN, diatoms, chlorophyll a), unprecedented microplankton community changes (compositions of carotenoids, diatoms, dinoflagellates), abnormally high spring air temperatures as inferred from diatom fossils, and lithological changes. These lines of evidence indicate that the base of the 1953 layer is the best GSSP level candidate in the stratigraphy at this site.
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