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1.
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   
2.
文章以金川和红原两组泥炭纤维素Δδ13C时间序列值的反向变化来指示西太平洋副热带高压活动变化.结果表明,在过去5000年中,西太平洋副热带高压的活动可分为4个阶段,即西太平洋副热带高压位置在2800~2200B.C.期间持续偏北,2200~600B.C.期间持续偏南,600B.C.~1200A.D.期间在北进与南移之间频繁波动,以及1200~1900A.D.期间再次持续偏北,它们导致降雨量在中国大陆上不同的分布.从约1900A.D.起西太平洋副热带高压的活动似乎又开始一个新的偏南阶段,值得进一步加强研究.  相似文献   
3.
土壤干湿交替促进硒酸盐的还原作用   总被引:3,自引:0,他引:3  
采集不同类型的新鲜土壤,经处理获得其风干、烘干的样品,重新潮湿后,加入一定量的Na2SeO4溶液,进行了培育实验(incubationexperiments)。实验结果表明,随着土壤干燥程度的增加,硒酸盐还原作用的速度也随之加快。这进一步证实,作为一种地球化学营力的土壤干湿交替,通过对土壤水势(soilwaterpotential)、微生物群落等的影响,间接地促进了硒酸盐还原作用,因而成为硒生物地球化学循环的驱动力之一。  相似文献   
4.
泥炭档案气候变化重建的定量模型   总被引:3,自引:1,他引:3  
泥炭档案气候变化重建的定量模型*陶发祥洪业汤(中国科学院地球化学研究所,贵阳550002)李汉鼎冷雪天(东北师范大学地理系,长春130024)关键词泥炭档案纤维素稳定同位素气候变化定量模型用泥炭档案定量重建大气CO2浓度的研究已取得重要进展[1],但...  相似文献   
5.
Guo  Qian  Peng  Haijun  Hong  Bing  Yao  Hu  Zhu  Yongxuan  Ding  Hanwei  An  Ning  Hong  Yetang 《中国地球化学学报》2021,40(4):473-483
Acta Geochimica - Isotopic signature is a powerful tool to discriminate methane (CH4) source types and constrain regional and global scale CH4 budgets. Peatlands on the Qinghai-Tibetan Plateau are...  相似文献   
6.
Release of carbon from rocks during their weathering is closely linked to its global circulation. The contents and chemical forms of inorganic carbon in limestone, mudstone, granite and basalt as well as in their weathering and pedogenic products have been examined. The results show that a geochemical process of carbon release from the rocks in the early stage of weathering is followed by its accumulation in the subsequent weathering products. The environmental geochemical behavior of some heavy metals related to inorganic carbon release and its accumulation are also studied in this paper. Experimental results show that the capacity of manganese to associate with carbonates increases with increasing concentrations of the latter, but the behavior of copper is opposite to that of manganese. Translated by Chen Mingzhong, Chengdu Library, Academia Sinica.  相似文献   
7.
全球冻融地区土壤是重要的N20释放源的综合分析   总被引:3,自引:0,他引:3  
N2O是重要的温室气体之一,它是微生物硝化作用和脱氮化作用过程的产物。有多种释放源,其中土壤圈是重要的释放源之一。在影响N2O释放通量的诸多因素中温度是关键因素之一。本文根据土壤冻融加强有机质矿化作用,以及对微生物群体产生非生物应力的性质,结合冻融地区土壤和冻土带湿地所具有的特征,进行综合分析,论述冻融地区土壤是重要的N2O释放源。  相似文献   
8.
9.
Just like contemporary sediments, peat itself is a good repository of information about climate change, the effects of volcanic activity on climate change have been truly recorded in peat, since it is a major archive of volcanic eruption incidents. A section of sand was identified as tephra from the Jinchuan peat, Jilin Province, China, for the grains look like slag with surface bubbles and pits, characterized by high porosity, and loose structure with irregular edges and corners. According to the peat characteristics of uniform deposition, the tephra was dated at 2002–1976 a B.P. by way of linear interpolation, so the time of volcanic eruption was 15 B.C.–26 A.D. (the calibrated age). While the geochemical characteristics of tephra in this study are quite the same as those of tephra from the Jinlongdingzi volcano at Longgang and from alkaline basaltic magma, with the contents of SiO2<55%, and the similar contents to Al2O3 and Fe, but the contents of Na2O>K2O. We speculated that the tephra in this study came from the Longgang volcano group. Compared with 11 recorded volcanic eruption events as shown on the carbon and oxygen isotope curves of the Jinchuan peat cellulose, it is obviously seen that adjacent or large-scale volcanic eruptions are precisely corresponding to the minimum temperature and humidity. It seems that these volcanic eruptions indeed affected the local climate, leading to the drop of regional temperature and humidity. As a result, there was prevailing a cold and dry climate there, and all these changes can be well recorded in peat. So the comparison of volcanic eruption events with information about climate change developed from peat, can provide strong evidence for the impact of volcanism on climate change.  相似文献   
10.
There have been a number of investigations for examining the possible link between long-term climate variability and solar activity. A continuous δ18O record of peat cellulose covering the past 6 000 years and the response of climate variation inferred from the proxy record to solar forcing are reported. Results show that during the past 5 000 years the abrupt climate variations, including 17 warming and 17 cooling, and a serious of periodicities, such as 86, 101, 110, 127, 132, 140, 155, 207, 245, 311, 820 and 1 050 years, are strikingly correlative to the changes of solar irradiation and periodicity. These observations are considered as further evidence for a close relationship between solar activity and climate variations on time scales of decades to centuries.  相似文献   
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