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11.
Luminescent lamination in a stalagmite from northern Norway is used to construct a ~2780-year long, floating record of annual growth rate. Thermal ionisation mass-spectrometric (TIMS) U–Th ages (n = 12) were determined along the growth axis and three subsample locations and ages (corrected and uncorrected for initial 230Th/232Th activity) were selected as anchor points for the floating chronology. On the basis of these anchor points, termination of growth occurred between AD 1729 and AD 1826. The annual banding records are used to evaluate the initial 230Th/232Th activity ratio adopted for correction of the U–Th ages. To achieve a reasonable fit between U–Th ages and estimates predicted by the anchored annual band age models, mean initial 230Th/232Th activity ratios of between 0.44 and 1.47 must be invoked. However, there remains a reasonable degree of scatter about the expected linear relationship between annual bands and U–Th chronology for individual subsamples indicating that the use of a single correction factor for Holocene stalagmites should be applied with caution.Stalagmite growth rate fluctuates on annual to centennial scale. The growth termination of the stalagmite presented here could have been a result of environmental change associated with the Little Ice Age, or, possibly local percolation pathway changes after an Ms  6 earthquake in the region in AD 1819. Stable-isotope data from the same axis of growth show a pattern similar to the large-scale growth rate variations, and these combined proxy records are interpreted as showing gradual cooling and/or shortening of the vegetation growth season for the last 3000 years.  相似文献   
12.
桂林水南洞洞穴沉积物的古地磁记录及其古环境意义   总被引:1,自引:0,他引:1  
通过对桂林水南洞2.5m厚的洞穴沉积物剖面的古地磁初步研究,其结果及地质证据表明该沉积剖面形成期可能与贾拉米洛正向期对应。根据磁化率、磁性矿物的特征和沉积学特征,对该地区这一地质时期的古环境变化提出以下认识:1.第三暖湿期,以钙华沉积为特征;2.第二干冷期,以含有少量钙质的黄褐色粘土为特征,并以含有高矫顽磁性矿物和低磁化率为特征;3.第二暖湿期,以互层的红褐色粘土、含高含量钙质的粘土或钙华为特征,并以含有低矫顽磁性矿物和高磁化率为特征;4.第一干冷期,以褐灰色粘土为特征,并以含有高矫顽磁性矿物和低磁化率为特征;5.第一暖湿期,以地下河沉积相(砂卵石为主)为特征。   相似文献   
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14.
In carbonate karst basins, adequate denudation rates are difficult to estimate when there are allogenic inputs. It is shown that the common practice of correcting for allogenic input by Corbel's modified formula leads to erroneous results unless the karst ratio is very high. When choosing small basins that are subsets of each other, assumptions of hydrologic and lithologic uniformity may be satisfied. Then the autogenic and allogenic components of the denudation may be calculated by a linear model of uniform mixing. The model was tested in a subarctic stripe karst in North Norway, yielding an autogenic denudation rate of 32.5 ± 10.2 mm ka?1. The mean annual runoff is 2600 mm. The result is supported by independent denudation rates from comparable areas, micro-erosion meter data as well as the total post-glacial corrosion deduced from pedestal and vein heights.  相似文献   
15.
Abstract

The cave region of Siebenhengste, situated north of Lake Thun (Switzerland), contains one of the most important cave systems in the world, which extends from 500 to 2000 m a.s.l. It has a complex multiphase history. The recognized speleogenetic phases are related to spring level and to old valley floors. The six most recent phases were investigated in St. Beatus cave and Bärenschacht. They suggest a progressive Quarternary Aare valley incision to 890, 805, 760, 700, 660, and 558 m a.s.l. that is confirmed by statistical analysis of small caves. U/Th-datings of flowstone allowed a timing of the valley deepening phases: the valley bottom was at 760 m already before 350 ka, the one at 700 m was active between 235 and 160 ka. The cave morphology in the upper part of the cave system was coupled with sedimentological observations. This combination leads to the hypothesis that the uppermost (oldest) cave parts were already created in the Miocene, during and after the last deposition of the Molasse. Ideas about the evolution of the paleorelief suggest that today's Aare valley is a product of glacial erosion, and that the old Aare valley shifted its position several times between the Miocene and today. © 2002 Éditions scientifiques et médicales Elsevier SAS. All rights reserved.  相似文献   
16.
A stalagmite from northern Norway is dated with 12 thermal ionization mass spectrometry U-Th dates, and at least four separate growth periods are identified that correspond with marine isotope stages 9, 11, 13, and probably 15. The calcite is tested for isotopic equilibrium with the Hendy test. Oxygen isotope measurements on 231 subsamples on a vertical transect are used as a paleotemperature proxy. The detailed isotopic record from MIS 9 show apparent similarities to a Holocene record from the same cave, both in the climatic evolution and the overall temperatures: both show temperature oscillations changing from high-frequency, low-amplitude cycles in the beginning of the interglacial period to lower frequency, higher amplitude cycles in the later part of the interglacial period. The isotope record from MIS 11 shows a distinct isotopic event toward heavier values. The isotopic record together with the porous, humus-rich calcite are interpreted as indicating a warmer than present interglacial period with several episodes of heavy rainfall.  相似文献   
17.
桂林盘龙洞石笋发光性特征及其古环境记录的初步研究   总被引:15,自引:0,他引:15  
洞穴次生化学沉积物的发光性的研究可以提供分辨率更高的古环境变化信息。桂林盘龙洞一石笋发光性的研究表明,该地区在3.2~1.1万a之间普遍处于干冷条件下,而且微层发光谱线表明在此阶段仍存在多次次一级气候变化。在1.13万a左右,谱线值突然由低升高,在1.10万a后,在不断变化中逐渐上升,这可能是新仙女木事件(1.13~1.1万a)在该地区的记录。此外,通过发光性记录与稳定同位素记录和微量元素记录的对比,其变化趋势基本一致,且具更高的分辨率。因此,洞穴次生化学沉积物发光性的研究可能会提供一个地区分辨率更高的古  相似文献   
18.
Comprehensive studies on a stalagmite from the Panlong cave, Guilin, have shown that the isotopic records and sedimentary characteristics can reflect the changes of both palaeotemperatures and palaeorainfall, that is to say, it is possible to get some information about the changes in climate of the area from the speleothem. The results suggest that: (1) the Younger Dryas event might have persisted in the area from 11 300 to 10 800 a B.P.; (2) from 9000 to 7000 a B.P., the climate got warmer and wetter, and the summer monsoon was gradually enhanced; (3) from 7000 to 4500 a B.P., the climate was warm and wet, and the summer monsoon prevailed; and (4) from 4500 a B.P. on, the summer monsoon was weakened and the modern climate pattern appeared, but there were several cold and dry periods, namely, from 4000 to 2500 a B.P., ca. 2400 a B.P. and < 1000 a B.P.  相似文献   
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