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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Nd isotope signature of Holocene Baltic Mn/Fe precipitates as monitor of climate change during the Little Ice Age
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Nd isotope signature of Holocene Baltic Mn/Fe precipitates as monitor of climate change during the Little Ice Age

机译:全新世波罗的海Mn / Fe的Nd同位素特征沉淀为小冰期气候变化的监测器

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Neodymium (Nd) isotope profiles were analyzed on two Baltic Mn/Fe precipitates (99/2 and TL1) from shallow water (20 m) of the Mecklenburg Bay. The age range of these Mn/Fe precipitates determined by Ra-226(ex)/Ba dating reaches from recent growth back to similar to 4300 and 1000 yr BP, respectively. Over this time range, the Nd isotope composition varies from epsilon(Nd) (0) = -13.1 to -17.5 in the selected Baltic precipitates indicating substantial changes in the Nd isotope composition of the Baltic Sea. The lowest epsilon(Nd) values were recorded during the time interval of the Little Ice Age (LIA, AD similar to 1350 to 1850). These minimum values indicate either an increase of the input of less radiogenic Nd from Scandinavian Archean-Proterozoic sources (epsilon(Nd) about -22) to the Baltic Sea or a decrease of the input of more radiogenic Nd from continental European sources (epsilon(Nd) about -12) and/or North Sea water (epsilon(Nd) about -10). Variations of both, erosive continental input and North Sea inflow may indicate a direct response of the Nd isotope signal in the Baltic Sea to climate changes during the LIA and be related to cyclic shifts in the atmospheric circulation triggered by the North Atlantic Oscillation (NAO). Another aspect that possibly influenced the input of trace elements and Nd isotopes into the Baltic Sea is the population development in the circum Baltic area during the LIA. The lowest epsilon(Nd) values also correspond to the medieval demographic crises that led to a significant decrease of agricultural activity and farmland. The reduction of soil erosion and enhanced regrowth of natural vegetation may have changed the amount and proportions of dissolved and suspended particulate matter transported into the Baltic Sea by rivers which in turn may have resulted in a change of the Nd isotope composition of Baltic Sea water. Copyright (c) 2005 Elsevier Ltd.
机译:在来自梅克伦堡湾浅水(20 m)的两个波罗的海Mn / Fe沉淀物(99/2和TL1)上分析了钕(Nd)同位素分布。通过Ra-226(ex)/ Ba测年确定的这些Mn / Fe沉淀物的年龄范围从最近的增长回溯到分别类似于4300和1000 yr BP。在此时间范围内,所选波罗的海沉积物中的Nd同位素组成在epsilon(Nd)(0)= -13.1至-17.5之间变化,表明波罗的海Nd同位素组成发生了重大变化。在小冰期(LIA,AD类似于1350至1850)的时间间隔内,记录了最低的epsilon(Nd)值。这些最小值表明,来自波罗的海的斯堪的纳维亚古代元古代生源放射源钕的输入量增加(epsilon(Nd)约为-22)或来自欧洲大陆源放射源钕的输入量减少(ε( Nd)约-12)和/或北海水(epsilon(Nd)约-10)。侵蚀性大陆输入和北海流入量的变化都可能表明波罗的海的Nd同位素信号对LIA期间的气候变化有直接响应,并且与北大西洋涛动(NAO)触发的大气环流的周期性变化有关。可能影响微量元素和Nd同位素向波罗的海输入的另一个方面是LIA期间波罗的海地区的人口发展。最低的ε(Nd)值也对应于导致人口活动和农田显着减少的中世纪人口危机。水土流失的减少和自然植被的增加可能改变了河流将溶解和悬浮的颗粒物运入波罗的海的数量和比例,进而改变了波罗的海的Nd同位素组成。版权所有(c)2005 Elsevier Ltd.

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