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1.
通过分析罗斯海15个表层沉积物中甘油双烷基甘油四醚(Glycerol Dialkyl Glycerol Tetraethers,GDGTs)的含量与分布,探讨了各种GDGTs来源及TEX86指标的环境意义。结果表明:表层沉积物中GDGTs总含量为93.67~2 663.37 ng/g,其中类异戊二烯GDGTs(IsoGDGTs)占90.33%~98.56%,远高于支链GDGTs(BrGDGTs)。类异戊二烯GDGTs与支链GDGTs具有显著的耦合关系(R2=0.88,p<0.01)。沉积物中的IsoGDGTs主要来源于海洋奇古菌,BrGDGTs主要由海洋水体和沉积物中原位细菌所产生。应用TEXL86公式估算研究区SST,与WOA夏季表层温度呈现较好的线性关系,表明TEXL86指标在罗斯海具有适用性,可作为重建古海洋温度的替代指标。  相似文献   

2.
利用中国南极考察获取的沉积物样品,对普里兹湾10个表层沉积物中GDGTs的含量与分布进行分析。结果表明:普里兹湾内GDGTs含量为27.69~900.78 ng/g,其中类异戊二烯GDGTs占比94%~99%,远高于支链GDGTs。类异戊二烯GDGTs与支链GDGTs都呈现东南高、西北低的分布趋势,且与沉积物中有机碳含量显著正相关(R>0.95)。沉积物中类异戊二烯GDGTs来源于水生古菌,而支链GDGTs主要来源于沉积物中的细菌。根据GDGTs不同异构体含量计算得到的指标TEX86和TEXL86都与普里兹湾1月表层海水温度呈现良好的相关性。这表明TEX86和TEXL86指标在普里兹湾海域具有适用性,可以作为重建古海温的替代指标。  相似文献   

3.
通过对南太平洋劳盆地东部扩张中(ELSC)表层沉积物样品中甘油二烷基甘油四醚脂类化合物(GDGTs)的分析结果表明,所有样品均检测出类异戊二烯GDGTs和支链GDGTs。其中,类异戊二烯GDGTs占总GDGTs的58.1%-93.4%,泉古菌醇(crenarchaeol)、GDGTⅠ和GDGTⅤ为其主要组分,说明古菌对...  相似文献   

4.
东海沉积物中微生物标志物GDGTs年代际变化及来源   总被引:2,自引:0,他引:2  
甘油双烷基甘油四醚(Glycerol Dialkyl Glycerol Tetraethers,GDGTs)是近几年来新发现的一类生物标志化合物,基于GDGTs的各种指标以其在指示物质来源以及海洋和陆地古温度重建等方面显示出的巨大应用潜力,逐渐成为古海洋学、古湖沼学和古气候学研究的重要工具。对采自东海陆架区的DH5-1站位(29°28.118′N、123°06.639′E,水深63.5m)的柱状沉积物样品进行了总有机质和GDGTs分析,研究了GDGTs化合物在东海陆架区柱状沉积物样品中的含量和沉积通量变化,并利用δ13 C、C/N以及基于GDGTs化合物的BIT指标讨论了该海区近150年来沉积有机质的来源变化。结果显示,近百年来东亚冬季风的增强,加强了冬季闽浙沿岸流对长江口沉积物的搬运,使得该海区陆源输入量呈增加趋势,但20世纪80年代以来,人类活动的加剧导致营养盐输入的增加,使得海洋生产力提高,沉积有机质中陆源有机质比例下降。  相似文献   

5.
异戊二烯类甘油二烷基甘油四醚脂类化合物(isoprenoid Glycerol dialkyl glycerol tetraethers, isoGDGTs)在海洋奇古菌(Thaumarchaeota)中广泛存在, 其结构对温度变化的敏感性使其成为广受欢迎的古气候与古温度重建材料。在北冰洋和西太平洋气候以及黑潮等多种因素的影响下, 冲绳海槽中部成为研究全新世以来古海洋和古气候变化的天然实验室。本文通过研究C14柱状沉积物的GDGTs组成、含量变化特征及其延伸的86个碳原子的四醚指标(tetraether index of tetraethers consisting of 86 carbons, TEXH86), 分析冲绳海槽中部的GDGTs来源, 并定量计算C14柱状沉积物记录的海洋表面温度(sea surface temperature, SST), 从而探讨8.2ka以来冲绳海槽中部古温度变化的驱动机制。通过甲烷指数和支链/异戊二烯类指标等, 我们确认isoGDGTs主要来自于氨氧化古菌, 适用于古温度重建。距今8.2ka以来, TEXH86 SST的变化范围是21.6~27.2℃。冲绳海槽中部SST主要受到西热带太平洋、低纬度冬季日晒量的影响; TEXH86指标记录的温度上升趋势与东亚夏季风强度的减弱不一致。7.4—6.6ka冷事件广泛存在于冲绳海槽的SST记录中, 但只在TEXH86数据中显示较大幅度的降低(~5℃), 我们推测可能受到Kikai-Akahoya火山灰(~7.3ka)的影响。  相似文献   

6.
甘油二烷基甘油四醚(glycerol dialkyl glycerol tetraethers,GDGTs)作为一种重要的膜脂化合物,广泛存在于海洋水体和沉积物中。基于GDGTs对温度的敏感性, TEX86(Tetra Etherinde Xoftetraethers consisting of 86 carbons)指标被广泛用于海洋古温度重建。然而,研究表明GDGTs母源生物古菌也会受到环境中溶解氧(DO)变化的影响,进而影响其膜脂组成,但边缘海DO对GDGTs组成的影响仍不清楚。本文研究了夏季长江口及其邻近海域颗粒物与表层沉积物中GDGTs的含量与组成,探讨了表层沉积物中GDGTs的来源及其组成对底层DO的响应。结果表明,长江口及其邻近海域颗粒物GDGTs的含量随水深的增加而增加,同时表层沉积物中的GDGT-2/GDGT-3和GDGT-0/Cren比值均与底层颗粒物相近,表明沉积物中GDGTs主要来源于底层颗粒物的沉降输入。进一步对受陆源有机质输入影响较小的站位研究发现有机质来源BIT(Branched and Isoprenoid Tetractter)指...  相似文献   

7.
西菲律宾海作为西太平洋暖池的一部分,重建其在地质历史时期的热力学变化、陆源输入变化,对于理解西太平洋暖池在全球地质时间尺度上的作用具有重要意义.利用古菌与细菌的细胞膜质甘油二烷基甘油四醚(glycerol dialkyl glycerol tetraethers,GDGTs)对西菲律宾海XT-47孔沉积物的陆源输入及其...  相似文献   

8.
南海因受到高纬度气候、低纬度大洋以及东亚季风等多种因素的影响而成为研究古温度和季风变化的理想区域。本文通过研究QH-CL11柱状沉积物的GDGTs组成、含量变化特征及其延伸的86个碳原子的四醚指标(TEX_(86)~H),分析南海北部GDGTs来源,并定量计算QH-CL11柱状沉积物记录的海洋表面温度(SST),从而探讨31 ka以来南海北部古温度变化的驱动机制。通过甲烷指数和支链/异戊二烯类指标等,确定isoGDGTs主要来自于奇古菌,适用于古温度重建。TEX_(86)~H温度显示出明显的冰期一间冰期旋回,与南海北部有孔虫和UK'_(37) SSTs具有很好的相似性。出现在TEX_(86)~H SST中的海因里希冷事件(H1-3)和Bφlling-Allerod暖期之前的温度大幅度上升事件(14.6 ka)反映了高纬度气候对南海的影响。南海SSTs和北太平洋MD01-2421 U~K'_(37)SST的差异(△SST5)可以用来反映东亚冬季风强度的变化。△SSTs显示东亚冬季风强度在Bφlling-Allerφd暖期前增加,在新仙女木时期达到最大值,在全新世早期再次下降,然后在全新世中晚期缓慢增加,这与前人对东亚冬季风强度的认识具有很好的一致性。该方法对重建长周期东亚冬季风强度具有重要的指导意义。  相似文献   

9.
古菌生物标志物古海水温度指标TEX_(86)研究进展   总被引:5,自引:0,他引:5  
TEX86是最近几年提出的一个古海水温度重建指标,它是基于由古菌的一个分支Marine Crenarchaeota所产生的一组生物标志物(GDGTs)的比值。培养实验、水体颗粒物及大洋表层沉积物的研究结果都显示,温度是TEX86指标的主要影响因素,而盐度、营养盐等其他环境因子对TEX86指标无明显影响。由于陆源物质中也含有少量GDGTs,TEX86重建近海温度记录会有较大的误差。但是TEX86和另一个生物标志物指标BIT的同时测定也使TEX86用于近海古温度重建。与通常用的U3K7′古海水温度指标相比,TEX86指标可以应用于高于29℃的高温海域,目前已被成功地应用于地质历史中高温期古海水温度的重建。TEX86指标将为重建西太平洋古温度记录提供一种有效的方法。  相似文献   

10.
对北冰洋海域11个站位的沉积物进行了四醚脂类(GDGTs)生物标志化合物的浓度及分布特征分析,结合沉积物的TOC及TN含量及同位素组成对GDGTs的来源进行了探讨。对比TEX86-SST与WOA数据库资料,研究区内美亚海盆73°N以南站位以及欧亚海盆ARC5-BB06站的TEX86-SST与SST具有很好的符合性。楚科奇海域68~73°N站位样品和全球海洋TEX86-SST模式一致,与年平均SST具有较好的符合性。白令海区及ARC5-BB06站TEX86-SST与夏季平均SST符合性更好,可能与提供GDGT的古菌夏季的生产力更高,在全年生产力中所占比例大有关。  相似文献   

11.
A series of molecular organic markers were determined in surface sediments from the Gulf of Genoa (Ligurian Sea) in order to evaluate their potential for palaeo-environmental reconstructions. Allochthonous input can be characterized by the distributions of n-C29 and n-C31 alkanes, n-C26 and n-C28 alkanols and branched glycerol dialkyl glycerol tetraethers (GDGTs), whose concentrations are generally highest near the river mouths. In the open basin however, terrestrial n-alkanes and n-alkanols may have an additional, eolian source. Autochthonous input is represented by crenarchaeol and isoprenoid GDGTs. Their concentrations are highest in the open basin showing the preference of Thaumarchaeota for oligotrophic waters. Indications of a significant degradation of sterols and C37 alkenones exclude these lipids as reliable productivity proxies. Using terrestrial and aquatic lipids as end-members allows estimating the percentage of terrestrial organic matter between 20% and 58% in the coastal area decreasing to 1–30% in the deep basin. The spatial distribution of sea surface temperature (SST) estimates using the alkenone-based UK′37 index is very similar to the autumnal (November) mean satellite-based SST distribution. Conversely, TEXH86-derived SST estimates are close to winter SSTs in the coastal area and summer SSTs in the open basin. This pattern reflects presumably a shift in the main production of Thaumarchaeota from the coastal area in winter to the open basin in summer. This study represents a major prerequisite for the future application of lipid biomarkers on sediment cores from the Gulf of Genoa.  相似文献   

12.
We investigated the spatial distribution of glycerol dialkyl glycerol tetraethers (GDGTs), alkenones, and polyunsaturated fatty acids in particulate organic matter collected at four sites along a depth transect from the continental shelf to the Okinawa Trough in the East China Sea during the spring bloom in 2008. The maximum alkenone concentration appeared in the top 25?m at all sites and the $ U_{37}^{{{\text{K}}'}} $ values were consistent with in situ water temperatures in the depth interval, suggesting that the alkenones were produced mainly in surface water. At the slope and shelf sites, GDGTs in the water column showed a concentration maximum at 74?C99?m depth, and the $ {\text{TEX}}_{86}^{\text{H}} $ agreed with in situ water temperatures, suggesting the in situ production of GDGTs in the depth interval. The low-salinity surface water above 20?m depth was characterized by low GDGT concentrations and low $ {\text{TEX}}_{86}^{\text{L}} $ -based temperatures, suggesting either the production of GDGTs in winter season or the lateral advection of GDGTs by an eastward current. At the slope and Okinawa Trough sites, TEX86-based temperatures were nearly constant in the water column deeper than 300?m and corresponded to temperatures at the surface and near-surface waters rather than in situ temperatures. This observation is consistent with a hypothesis that Thaumarchaeota cells produced in surface waters are delivered to deeper water and also indicates that the residence time of suspended GDGTs in the deep-water column is large enough to mix the GDGTs produced in different seasons.  相似文献   

13.
A degradation experiment with zooplankton was carried out to investigate the diagenesis of zooplanktonic organic matter, lipids, and lipid classes. In addition, reactivities and the quantitative relation between bulk organic carbon and waxes (which are the biomarkers of zooplankton) were compared during the experiment to evaluate the possibility of estimating the contributions of zooplanktonic organic matter in organic carbon pools, such as settling particles and surface sediments, from the wax concentration. Lipids were found to be more labile than the bulk organic carbon. Major parts of the organic carbon and lipids which remained on day 120 were found in the particulate fraction, and the accumulations of stable organic carbon and lipids in the dissolved fraction were limited. Although the lipids were more labile than the bulk organic carbon in the early phase of the experiment, the degradation rate of lipids obviously decreased in the subsequent degradation period, demonstrating the presence of stable lipids in zooplankton. Whereas triglycerides readily decreased, phospholipids persisted, making a major contribution to particulate lipids throughout the experiment. Waxes and other structural lipids such as glycolipids were also stably preserved in particulate lipids, suggesting that stable lipids in particulate matter are composed of structural lipids and waxes during early diagenesis. The degradation rate of waxes showed values comparable to that of bulk organic carbon after 11 days of degradation, resulting in constant ratios of waxes/bulk organic carbon (0.8 ± 0.2%, n = 7) during the later incubation period (after 11 days). This result suggests that the ratio could prove useful in evaluating the zooplanktonic organic carbon in organic carbon pools such as surface sediments and settling particulates.  相似文献   

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