The recent diatom-based paleolimnology of Lake Michigan.

IF 1.7 3区 地球科学 Q4 ENVIRONMENTAL SCIENCES
Journal of Paleolimnology Pub Date : 2025-01-01 Epub Date: 2025-06-03 DOI:10.1007/s10933-025-00363-1
Euan D Reavie, Andrew J Bramburger, Meijun Cai
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引用次数: 0

Abstract

Quantitative analysis of siliceous microfossils in a dated sediment core from Lake Michigan reveals the anthropogenic history of pelagic conditions from the last ~ 160 years. Sediments deposited before the twentieth century contained low diatom abundances comprising species associated with oligotrophic conditions. Diatom-assemblage reorganization in the early to mid-twentieth century resulted in an increase in diatom-model-inferred water-column-phosphorus concentrations associated with cultural eutrophication. In recent decades, better nutrient management and water-quality recovery drove a decline of high-nutrient indicating diatom taxa. The most recent two decades manifest the effects of the extensive dreissenid invasion (a continued reduction in diatom-accumulation rate) and likely atmospheric warming (the rise in summer-diatom taxa representing a longer summer stratification and ice-free period). Like many areas of the Great Lakes basin, Lake Michigan's paleolimnological sequence reflects the widespread eutrophication of the twentieth century, followed by remediation and a modern condition affected by multiple stressors.

最近密西根湖以硅藻为基础的古湖泊学。
通过对密歇根湖沉积物岩心中硅质微化石的定量分析,揭示了近160年来的海洋环境的人类活动历史。20世纪以前沉积的沉积物含有低硅藻丰度,包括与少营养条件有关的物种。20世纪早期到中期的硅藻组合重组导致了硅藻模型推断的与培养富营养化相关的水柱磷浓度的增加。近几十年来,营养管理的改善和水质的恢复推动了高营养指示硅藻类群的减少。最近二十年显示了大范围的硅藻入侵(硅藻积累率持续降低)和可能的大气变暖(夏季硅藻类群的增加代表了更长的夏季分层和无冰期)的影响。像五大湖盆地的许多地区一样,密歇根湖的古湖泊序列反映了20世纪广泛的富营养化,随后进行了修复,并受到多种压力因素的影响。
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
Journal of Paleolimnology
Journal of Paleolimnology 地学-地球科学综合
CiteScore
3.70
自引率
9.50%
发文量
44
审稿时长
3 months
期刊介绍: The realization that a historical perspective is often useful, if not essential, to the understanding of most limnological processes has resulted in the recent surge of interest in paleolimnology. The main aim of the Journal of Paleolimnology is the provision of a vehicle for the rapid dissemination of original scientific work dealing with the reconstruction of lake histories. Although the majority of papers deal with lakes, paleoenvironmental studies of river, wetland, peatland and estuary systems are also eligible for publication. The Journal of Paleolimnology, like the subject itself, is multidisciplinary in nature, and papers are published that are concerned with all aspects (e.g. biological, chemical, physical, geological, etc.) of the reconstruction and interpretation of lake histories. Both applied and more theoretical papers are equally encouraged. The Journal of Paleolimnology will continue to be a major repository for papers dealing with climatic change, as well as other pressing topics, such as global environmental change, lake acidification, eutrophication, long-term monitoring, and other aspects of lake ontogeny. Taxonomic and methodological papers are also acceptable provided they are of relatively broad interest. New equipment designs are frequently featured. In addition to original data and ideas, the Journal of Paleolimnology also publishes review articles, commentaries and program announcements. A relevant Book Review Section is also featured.
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