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41.
运城盆地11 kaBP以来气候环境变迁与湖面波动 总被引:7,自引:0,他引:7
通过黄土区湖泊沉积研究来恢复古气候、古环境,是对黄土区古气候、古环境研究的补充和检验。通过山西运城盆地硝地湖泊沉积物的多环境代用指标分析,结合史料记载,探讨了该地区11kaBP以来古气候演化和湖面波动的历史。结果表明,该地区存在YD(Younger Dryas)事件,进入全新世后气候有显著的趋势,最高湿润度发生在7.88-5.15和5kaBP后,气候逐渐变干,湖面波动与气候波动相关,全新世早期湖面开始上升,湖泊扩张,5kaBP后湖泊萎缩,盐类结晶析出。 相似文献
42.
山东省淡水枝角类的初步调查 总被引:4,自引:0,他引:4
山东省淡水水域广阔,不仅河流多,而且湖泊、水库、坑塘星罗棋市,资源丰富。其中的淡水枝角类是水体食物链之重要环节,对渔业主产和环境保护工作具有相当重要的现实的意义。因此,必须对其更好地调查研究如培育利用。笔者多年来,就山东省若干地区的淡水枝角类进行采集、分类等研究工作。本文报道其初步结果——隶属7科,24属,71种。 相似文献
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Floating tephra was deposited together with ice core,snow layer,abyssal sediment,lake sediments,and other geological records.It is of great significance to interpret the impact on the climate change of volcanic eruptions from these geological records.It is the first time that volcanic glass was discovered from the peat of Jinchuan(金川)Maar,Jilin(吉林)Province,China.And it is in situ sediments from a near-source explosive eruption according to particle size analysis and identification results.The tephra were neither from Tianchi(天池)volcano eruptions,Changbai(长白)Mountain,nor from Jinlongdingzi(金龙顶子)volcano about 1 600 aBP eruption,but maybe from an unknown eruption of Longgang(龙岗)volcano group according to their geochemistry and distribution.Geochemical characters of the tephra are similar to those of Jingiongdingzi,which are poor in s.Jica,deficient in alkali,Na20 content is more than K20 content,and are similar to distribution patterns of REE and incompatible elements,which helps to speculate that they originated from the same mantle magma with rare condemnation,and from basaltic explosive eruption of Longgang volcano group.The tephra,from peat with age proved that the eruption possibly happened in 15 BC-26 AD,is one of Longgang volcano group eruption that was not recorded and is earlier than that of Jinglongdingzi about 1 600 aBP eruption.And the sedimentary time of tephra is during the period of low temperature alteration.which may be the influence of eruption toward the local climate according to the correlativity of eruption to local temperature curve of peat cellulose oxygen isotope. 相似文献
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雾水的D和18O同位素研究进展 总被引:1,自引:0,他引:1
凝结水的D、18O同位素研究目前主要集中在雾水方面,露水和土壤吸附水的相关研究仍属空白。由于形成时的温度较高,大多数雾水的D、18O同位素较当地雨水富集,但不同类型雾的同位素特征存在差异。平流式海洋雾为单级的蒸发—冷凝封闭循环系统的首次凝结,D、18O同位素较当地雨水显著富集;热带云雾林中的地形雾与降雨同时发生,且水分源于同一云团,δD、δ18O值差异较小;内陆辐射雾因部分水汽源于当地水分的再循环,过量氘和δD、δ18O值高于降雨。目前有少量研究用D、18O同位素指示雾水对植被、地下水和地表径流的补给作用,但以定性分析为主,基于端元混合模型的定量评价极少。露水和土壤吸附水的稳定同位素研究是干旱区凝结水研究的重要方向;D、18O同位素与其它同位素或化学指标的结合有助于促进凝结水生态水文效应的研究进展;短间隔、高密度的长期观测和用于稳定同位素分析的凝结水采样器的设计是需要进一步开展的工作。 相似文献
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Geochronological studies on the crust-derived Tianmenshan pluton were undertaken by SHRIMP zircon U-Pb dating and Ar-Ar dating of biotite, muscovite and K-feldspar, giving a petrogenetic age of 167 Ma. Owing to the closure systems in different minerals, the cooling history of the pluton can be determined with an age-temperature diagram. The late hydrothermal event has been recognized, which is related probably with mineralization. In terms of the comparative geochronological and petrologic records, it is concluded that there are some constrains on tectonic evolution and that the formation of the Tianmenshan pluton proceeded in a transition period from Indosinian post-orogeny extension to strong compressive tectonics. And the timing of the hydrothermal event matches the compressive climax of the Yanshanian orogeny. The temporal gap between granite emplacement and wolframite mineralization could last 10-20 Ma owing to the low cooling rate of the pluton. 相似文献
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Treatment with metallic copper for the removal of elemental sulfur from bitumen extracted from sedimentary rocks or petroleum is the most widely used method. Little attention has been paid, however, to its disadvantages. It was observed that copper can interact with some polar organic substances during conventional sulfur removal, which can strongly influence the quantitative and qualitative determination of bitumen, as has been confirmed by interaction of long-chain fatty acids with copper. The copper soap generated was analyzed by element analysis, inductively coupled plasma optical emission spectrometry (ICP-OES), thermal analysis (TG-DSC) and Fourier Transform Infrared spectroscopy (FFIR). Mechanism of the interaction was investigated and elucidated. Our experimental results would necessitate improvement of the present method for sulfur removal and/or a search for a new one. 相似文献
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