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首页> 外文期刊>Palaeogeography, Palaeoclimatology, Palaeoecology: An International Journal for the Geo-Sciences >A comparison of the palaeoclimate signals from diatom oxygen isotope ratios and carbonate oxygen isotope ratios from a low latitude crater lake
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A comparison of the palaeoclimate signals from diatom oxygen isotope ratios and carbonate oxygen isotope ratios from a low latitude crater lake

机译:来自低纬度火山口湖的硅藻氧同位素比和碳酸盐氧同位素比的古气候信号比较

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The analysis of oxygen isotope ratios (delta(18)O) from authigenic lake carbonates has become a well-established palaeoclimate technique. Less common is the use of delta(18)O in biogenic silica (e.g. diatoms, sponge spicules, phytoliths), but the technique is being increasingly utilised for non-carbonate lakes. This paper aims to compare delta(18)O(diatom) with delta(18)O(carbonate) in a low latitude, closed basin lake. Due to the influence of pH, rarely are both carbonate and diatoms preserved in lake sediments in concentrations high enough to measure oxygen isotopes. The delta(18)O composition of both carbonate and silica should reflect the isotope composition and temperature of the lake water at the time of precipitation and hence theoretically they should be delta(18)O(diatom) and delta(18)O(carbonate) currently exists and that found differences between their equivalent. Only one comparative study of delta(18)O compositions, probably because they precipitated in different seasons. Unless there is evidence to suggest that silica and carbonate precipitate at the same time, their delta(18)O records are likely to be different but complementary. In this study, we show that delta(18)O(diatom) and delta(18)O(calcite) from Lake Tilo, Ethiopia show some similar broad climate trends. However, the delta(18)O(diatom) curve is generally more variable and does not record two regional and events, picked up by the delta(18)O(calcite) data. Several possible reasons for this are discussed: the precision of the delta(18)O(diatom) extraction technique, contamination of the diatom samples from tephra (volcanic glass), vital effects in the diatom samples, differences in their respective equilibrium isotope fractionation rates and the possibility that the dominant diatom, Aulacoseira granulata, and calcite precipitated in different seasons during this time. Currently, the problems associated with the cleaning and extraction of delta(18)O(diatom) suggests that details found in delta(18)O(calcite) records may be lost in delta(18)O records where contaminants such as tephra and clay minerals are difficult to remove. (c) 2005 Elsevier B.V All rights reserved.
机译:来自自生的碳酸盐碳酸盐的氧同位素比率(delta(18)O)的分析已成为一种公认的古气候技术。不太常见的是在生物二氧化硅中使用delta(18)O(例如硅藻,海绵状针状物,硅藻土),但该技术正越来越多地用于非碳酸盐湖。本文旨在比较低纬度封闭盆地湖泊中的delta(18)O(硅藻)与delta(18)O(碳酸盐)。由于pH的影响,湖泊沉积物中的碳酸盐和硅藻都很少以足以测量氧同位素的浓度保存。碳酸盐和二氧化硅的δ(18)O组成应反映沉淀时湖水的同位素组成和温度,因此理论上它们应为δ(18)O(硅藻)和δ(18)O(碳酸盐) )当前存在,并且发现它们之间的差异。仅有一项对delta(18)O成分的比较研究,可能是因为它们在不同季节析出。除非有证据表明二氧化硅和碳酸盐同时沉淀,否则它们的delta(18)O记录可能会有所不同,但却是互补的。在这项研究中,我们显示来自埃塞俄比亚提洛湖的delta(18)O(硅藻)和delta(18)O(方解石)表现出一些相似的宽广的气候趋势。但是,delta(18)O(硅藻)曲线通常更具可变性,并且不会记录两个区域和事件,这是由delta(18)O(方解石)数据采集的。讨论了以下几种可能的原因:δ(18)O(硅藻)提取技术的精度,来自提法拉(火山玻璃)的硅藻样品的污染,硅藻样品中的重要作用,各自平衡同位素分馏速率的差异在此期间,优势硅藻,Aulacoseira granulata和方解石在不同季节中沉淀的可能性。当前,与delta(18)O(硅藻)的清洁和提取有关的问题表明,在delta(18)O(方解石)记录中发现的详细信息可能会在delta(18)O记录中丢失,这些记录中有诸如特非拉和粘土的污染物矿物质很难去除。 (c)2005 Elsevier B.V保留所有权利。

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