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1.
南海深海柱状沉积物中孢粉和藻类研究及古环境意义   总被引:6,自引:2,他引:6  
对南海东南部323站深海柱状剖面高分辨率孢粉和藻类进行了研究,将323站从下至上划分为4个孢粉组合带,依次为:1带:Polypodiaceae-Piaceae-Pinus-Quercus(常绿)-Dacrydium-Gramineae;2带:Dicranopteris-Quercus(常绿)-Pinus-Polypodiaceae-Cyathea;3带:Polyodiaceae-Pinus-Cyperaceae-Quercus(常绿)-Lycopodium;4带:Dicranopteris-Pteridinium-Pinus-Cyathea-Polypodiaceae。并相应恢复了南海75000a以来4个植被、气候演替阶段,依次为:暖热而稍干的热带北缘半常绿季雨林-炎热、湿润的热带季雨林-暖热而稍干的热带北缘半常绿季雨林-炎热、湿润的热带季雨林,结合氧同位素测年资料,对323站地层时代划分作了讨论,为南海古气候、古环境演变研究提供了科学的依据。  相似文献   

2.
通过对南海69站深海柱状剖面的孢粉成分的变化将该孔沉积层从下至上划分为5个孢粉组合带,1带:Quercus(常绿)-Pinus-Cyathea-Artemisia孢粉带(552.5~470 cm);2带:Pinus-Podocarpus-Quercus-Polypodiaceae孢粉带(470~350 cm);3带:Quercus(常绿)-Castanopsis-Pinus-Polypodiaceae孢粉带(350~250 cm);4带:Pinus-Podocarpus-Artemisia-Polypodiaceae孢粉带(250~140 cm);5带:Podocarpus-Cyathea-Quercus(常绿)-Pinus-Pol-ypodiaceae孢粉带(140~0 cm)。并相应恢复了南海东部64 ka以来3个植被、气候、古环境演替阶段,热带季雨林、热带北缘半常绿季雨林和热带季雨林。对69站柱状地层时代作了划分,孢粉1带相当于氧同位素3期,时代为Q33-2;孢粉2~4带相当于氧同位素2期,时代为Q33-3;孢粉5带为氧同位素1期,时代为Q4。  相似文献   

3.
通过对南海东部 149 站深海柱状剖面的孢粉、藻类研究,根据孢粉成分的变化将该孔沉积层从下至上划分为 4 个孢粉组合带.1 带:Pinus-Quercus(常绿)-Umbellferae-Gramineae-Pteris 孢粉带(407~270cm);2 带:Dacrydium-Quercus-Cyathea-Pinus-Polypodiaceae 孢粉带(270~105 cm);3 带:Pinus-Polypodiaceae-Quercus(常绿)-Pteridium 孢粉带(105~30 cm);4 带:Gleditsia-Cyathea-Pinus-Polypodiaceae 孢粉带(30~0 cm).并相应恢复了南海东部 7.5 万 a 以来 4 个植被、气候、古环境演替阶段:热带北缘半常绿季雨林、热带季雨林、热带北缘半常绿季雨林和热带季雨林.结合氧同位素测年资料,对 149 站柱状地层时代作了划分.  相似文献   

4.
通过对南海69站深海柱状剖面的孢粉、藻类研究,根据孢粉成分的变化将该孔沉积层从下至上划分为5个孢粉组合带:1带:Quercus(常绿)-Pinus-Cyathea-Artemisia孢粉带(552.5—470cm);2带:Pinus-PP0dofnrpus—Quercus—Polypodiaceae孢粉带(470--350cm);3带:Quercus(常绿)-Castanopsis—Pinus—Polypodiaceae孢粉带(350250cm);4带:Pinus,Podocarpus-Artemisia-Polypodiaceae孢粉带(250140cm);5带:P0docarpus-cyathea-Quercus(常绿)-Pinus-Polypodiaceae孢粉带(140-0cm)。并相应恢复了南海东部64000a以来3个植被、气候、古环境演替阶段:热带季雨林、热带北缘半常绿季雨林和热带季雨林。结合氧同位素测定资料,对69站柱状地层时代作了划分:孢粉1带相当于氧同位素3期,时代为Q3^3-2;孢粉2-4带相当于氧同位素2期,时代为Q3^3-3;孢粉5带为氧同位素1期,时代为Q4.  相似文献   

5.
对南海北部C4站柱状沉积剖面进行了高分辨率孢粉、藻类成分的分析和研究,同时测定了部分样品的AMS14C年代,划分了该站柱状沉积物地层时代,相应恢复了南海北部9 800 a B P以来植被、气候、环境的3个演替阶段.南海北部C4站从下至上可划分成3个孢粉组合带,依次为:1带(258~194 cm):以Pinus-Quercus(常绿)-Polypodiaceae-Pterdium-Pteris-Dicranopteris-Adiantum为主孢粉带;2带(194~94 cm):以Pinus-Quercus(常绿)-Pteridium-Polypodiaceae-Microlepia-Dicranopteris为主孢粉带;3带(94~4 cm):以Pinus-Pteridium-Polypodiaceae-Quercus(常绿)-Microlepia-Dicranopteris为主孢粉带.与3个孢粉带相对应的古植被阶段依次为:伴有针叶树的常绿阔叶、落叶阔叶混交林,热带半常绿季雨林,热带常绿阔叶、落叶阔叶混交林,与周边地区的植被演替相一致.由此可见,研究区经历了全新世早期气候转暖,中期气候炎热、干湿季明显、海平面上升以及晚期气候暖热、湿润3个古环境演变阶段.  相似文献   

6.
对南海北部B106站柱状剖面进行了高分辨率孢粉与藻类研究,部分样品作了AMS14C年代测定。根据孢粉成分的变化将南海B106站从下至上划分了3个孢粉组合带,依次为:1带(294~194 cm)以Pinus-Quercus(常绿)-Gramineae-Polypodiaceae-Pterdium-Dicranopteris为主孢粉带;2带(194~94cm)以Pinus-Quercus(常绿)-Polypodiaceae-Pteridium-Dicranopteris为主孢粉带;3带(94~4 cm)以Pinus-Polypodiaceae-Pteridium-Quercus(常绿)-Dicranopteris为主孢粉带。并相应恢复了南海北部11 000 aBP以来3个植被、气候、古环境演替阶段,结合AMS14C测年资料,对B106站柱状地层时代划分作了讨沦,为南海古气候、古环境演变研究提供了科学依据。  相似文献   

7.
对南海北部C4站柱状剖面进行了高分辨率孢粉、藻类研究,部分样品作了AMS14C年代测定.根据孢粉成分的变化将南海C4站从下至上划分了3个孢粉组合带,依次为:1带(258-194cm)为以Pinus-Quercus(常绿)-Polypodiaceae-Pteridium-Pteris-Dicranopteris-Adiantum为主的孢粉带; 2 带(194-94cm)为以Pinus-Quercus(常绿)-Pteridium-Polypodiaceae-Microlepia-Dicranopteris为主的孢粉带; 3带(94-4cm)为以Pinus-Pteridium-Polypodiaceae-Quercus(常绿)-Microlepia-Dicranopteris为主的孢粉带.并相应恢复了南海北部9 800a BP以来3个植被、气候、古环境演替阶段,结合AMS14C测年资料,对C4站柱状地层时代划分作了讨论,为南海古气候、古环境演变研究提供了科学依据.  相似文献   

8.
南海深海柱状样沉积孢粉藻类组合及其古气候与古环境   总被引:2,自引:0,他引:2  
对南海149站和323站深海柱状剖面进行了孢粉与藻类研究,根据孢粉成分的变化将南海149站从下至上划分了4个孢粉组合带,依次为:1带:Pinus-Quercus(常绿)-Umbellferae-Gramineae-Pteris孢粉带(407~270cm);2带:Dacrydium-Quercus-Cyathea-Pinus-Polypodiaceae孢粉带(270~105cm);3带:Pinus-Polypodiaceae-Quercus(常绿)-Pteridium孢粉带(105~30cm);4带:Gleditsia-Cyathea-Pinus-Polypodiaceae孢粉带(30~0cm)。323站也划分了4个孢粉带,与149站进行了比较研究。并相应恢复了南海东部7.5万年以来4个植被、气候、古环境演替阶段,结合氧同位素测年资料,对149站和323站柱状地层时代划分作了讨论,为南海古植被、古气候、古环境演变研究提供科学依据。  相似文献   

9.
长江口地区近7000 a来的植被、气候演变研究   总被引:3,自引:0,他引:3  
长江三角洲地区的孢粉资料已相当丰富,但崇明岛地区以前孢粉研究资料较少,本文对崇明岛北侧的CY孔作了高分辨率的孢粉研究,详细地划出了大西洋期以来的9个孢粉组合带,并结合邻区钻孔孢粉资料研究,恢复了该区植被、气候演化的7个阶段。从大西洋中期起植被依次为:中亚热带含落叶树的常绿阔叶林;中亚热带北缘常绿阔叶、落叶阔叶混交林;北亚热带北缘以松、栎为主的落叶阔叶、针叶混交林;中亚热带北缘常绿阔叶、落叶阔叶混交林;北亚热带常绿阔叶、落叶阔叶、针叶混交林;北亚热带北缘含常绿阔叶树的落叶阔叶、针叶混交林;北亚热带常绿阔叶、落叶阔叶、针叶混交林。气候经历如下的波动:热暖潮湿—暖热湿润—温和略干—温暖湿润—温暖略湿—温而略干—温暖湿润,其气候波动与世界性的气候变化相一致,而且与海平面变化相吻合,从而为本地区古植被、古气候、古环境的重建提供了丰富的孢粉学资料。  相似文献   

10.
依据南海低纬地区SA09-040孔高分辨率的孢粉记录,自下至上划分了4个孢粉组合带。从孢粉成分的变化,重建了22.25ka B P以来的植被与气候变化历史。结果表明:孢粉主要来源于婆罗洲和周围岛屿,孢粉1带(22.25~16.6ka B P),低山雨林植被发育,为暖热气候,从测年时间看,当时为末次冰期晚期。孢粉2带(16.6~10.82ka B P,为末次冰消期),植被以热带低山雨林和低地雨林为主,针叶的松数量较多,当时的气温比现在低。孢粉3带(全新世早期,10.82~6.43ka B P),植被以热带低山雨林和低地雨林为主,针叶松属数量减少,气温比前期升高,海平面也上升。孢粉4带(全新世中晚期,6.43ka B P至今),全新世中期为炎热、湿润的气候环境,全新世晚期可能与婆罗洲现今的植被景观相近,为热、湿的气候环境。  相似文献   

11.
分析了海洋测绘教育培训国际化和标准化的原因及进程,论述了海洋测绘国际化教育培训的指导性文件及内容,针对国际化海洋测绘教育培训的特点与发展趋势,提出了发展我国海洋测绘教育培训的对策与建议。  相似文献   

12.
聚多巴胺(polydopamine, PDA)含有大量的酚羟基和氨基官能团, 可以在玻璃、不锈钢、塑料、橡胶、聚四氟乙烯等材料表面黏附, 具有优异的粘附性能, 是重要的功能材料之一。本文对近年来国内外围绕聚多巴胺展开的研究进行了综述, 从聚多巴胺的合成方法、聚合机理和性能出发, 分析总结了当前合成的特点、机理研究的方案和存在的问题, 并对聚多巴胺在海洋防腐领域的应用进行了总结和展望, 旨在为研究者较全面了解聚多巴胺的研究现状提供参考。  相似文献   

13.
探讨了壳寡糖及全乙酰壳寡糖的制备方法,通过正交实验考察了原料、温度、时间对降解产物的影响.制备了八种寡糖(八乙酰壳二糖、十一乙酰壳三糖、十四乙酰壳四糖和十七乙酰壳五糖,以及N,N′-二乙酰壳二糖、N,N′,N″-三乙酰壳三糖、N,N′,N″,N′′′四乙酰壳四糖和N,N′,N″,N′′′,N′′′′-五乙酰壳五糖),并通过IR、NMR及MS等确定了其化学结构.  相似文献   

14.
The airborne laser scanning LIDAR (LIght Detection And Ranging) provides high-resolution Digital Terrain Models (DTM) that have been applied recently to the characterization, quantification and monitoring of coastal environments. This study assesses the contribution of LIDAR altimetry and intensity data, topographically-derived features (slope and aspect), and multi-spectral imagery (three visible and a near-infrared band), to map coastal habitats in the Bidasoa estuary and its adjacent coastal area (Basque Country, northern Spain). The performance of high-resolution data sources was individually and jointly tested, with the maximum likelihood algorithm classifier in a rocky shore and a wetland zone; thus, including some of the most extended Cantabrian Sea littoral habitats, within the Bay of Biscay. The results show that reliability of coastal habitat classification was more enhanced with LIDAR-based DTM, compared with the other data sources: slope, aspect, intensity or near-infrared band. The addition of the DTM, to the three visible bands, produced gains of between 10% and 27% in the agreement measures, between the mapped and validation data (i.e. mean producer's and user's accuracy) for the two test sites. Raw LIDAR intensity images are only of limited value here, since they appeared heterogeneous and speckled. However, the enhanced Lee smoothing filter, applied to the LIDAR intensity, improved the overall accuracy measurements of the habitat classification, especially in the wetland zone; here, there were gains up to 7.9% in mean producer's and 11.6% in mean user's accuracy. This suggests that LIDAR can be useful for habitat mapping, when few data sources are available. The synergy between the LIDAR data, with multi-spectral bands, produced high accurate classifications (mean producer's accuracy: 92% for the 16 rocky habitats and 88% for the 11 wetland habitats). Fusion of the data enabled discrimination of intertidal communities, such as Corallina elongata, barnacles (Chthamalus spp.), and stands of Spartina alterniflora and Phragmites australis, which presented misclassification when conventional visible bands were used alone. All of these results were corroborated by the kappa coefficient of agreement. The high classification accuracy found here, selecting data sources, highlights the value of integrating LIDAR data with multi-spectral imagery for habitat mapping in the intertidal complex fringe.  相似文献   

15.
The adsorption and desorption of proteins and polyamino acids on illite, montmorillonite, goethite, and marine sediments was investigated. Three 14C-labeled hydrophilic proteins, Rubisco from C. reinhardtii, and GroEL and GroES from genetically modified Escherichia coli, were synthesized and purified for this study. The proteins were strongly and rapidly adsorbed by the clay minerals and marine sediments, and much of the adsorbed protein was not readily desorbed. Sodium dodecyl sulfate (SDS) extraction and separation by SDS-polyacrylamide gel electrophoresis (PAGE) and sucrose density gradients showed that Rubisco and GroEL were adsorbed on illite and sediments in their original forms. The apparent adsorption partition coefficients of the proteins were on the order of 102 l/kg on illite, 103–104 l/kg on goethite and montmorillonite, and 200 and 75 l/kg on Skan Bay and Resurrection Bay (Alaska) sediments, respectively. These partition coefficients are sufficiently large to permit sedimentary protein preservation via an adsorptive mechanism. Generally, basic polyamino acids had greater adsorption partition coefficients than acidic polyamino acids. Molecular size did not affect the electrostatic interaction between polyamino acids and mineral surfaces. Adsorption of bovine serum albumin (BSA) and negatively charged polyamino acids inhibited Rubisco adsorption, while positively charged cytochrome c and polyamino acids increased Rubisco adsorption. These results indicate that electrostatic interactions dominated in protein adsorption.  相似文献   

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