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1.
冰期—间冰期引起的海平面变化会导致黄海的沉积环境和生态系统发生巨大变化。通过多参数生物标志物法对取自南黄海北部71.2m长的DLC70-3岩心进行研究,获得晚更新世以来的浮游植物生产力和种群结构变化信息,并探讨影响其变化的可能因素。结果表明,晚更新世以来,DLC70-3岩心的浮游植物初级生产力和单一藻类生产力总体上呈现一致的变化趋势,在MIS 5e和MIS 3c时期最高,而在其他层位较低。浮游植物种群结构的变化主要表现为颗石藻在MIS 5e和MIS 3c相对含量增加,硅藻和甲藻相对含量下降,而颗石藻在其他层位含量为0。这都归因于高海平面时黄海暖流的入侵导致黄海盐度发生了较大的变化。  相似文献   

2.
本文通过对南极宇航员海ANT36-C4-05岩心的放射性核素210Pb、AMS14C测年、XRF岩心扫描、多参数物性扫描和主、微量元素的测试分析,重建了该海区中全新世(6 500 Cal a BP)以来的古生产力演变及其制约因素。研究结果表明,中全新世以来宇航员海古生产力波动较强,其演变趋势与南极气温变化基本一致,受海冰范围变化制约较大。在6 500~5 200 Cal a BP期间宇航员海古生产力随着温度升高和海冰范围减小而快速上升;在5 200~3 350 Cal a BP期间宇航员海的古生产力处于高值期,波动较小;在3 350~2 000 Cal a BP期间随着温度降低和海冰范围的扩大,硅质、钙质生产力下降;在2 000~0 Cal a BP期间古生产力水平变化复杂,变化程度相较于之前小。同时,中全新世以来宇航员海区沉积记录较好地反映了5 500 Cal a BP冷事件、DACP冷事件、MWP暖期和LIA冷事件的气候变化,受冷、暖事件影响导致的古生产力的变化最为明显。  相似文献   

3.
生物标志物重建浮游植物生产力及群落结构研究进展   总被引:1,自引:0,他引:1  
海洋浮游植物生产力和群落结构在地质年代中的变化对深入理解碳循环的演变规律和机理有着重要的意义.生物标志物方法作为一种较新的研究手段,其含量与比值的变化被广泛用于浮游植物生产力与群落结构变化的重建.讨论了生物标志物方法在各大洋及我国边缘海的应用现状,提出了生物标志物的细胞产生量及其在环境中的保存效率的2种主要不确定因素,使目前多参数生物标志物方法只能够半定量地重建古生产力与群落结构的变化.针对我国边缘海,提出有必要通过现场调查和实验室培养建立生物标志物含量(比值)与浮游植物生产力(群落结构)的定量关系式,以达到能够定量重建生产力和群落结构变化的目的.  相似文献   

4.
1959-2008长江源被净初级生产力对气候变化的响应   总被引:2,自引:2,他引:0  
基于长江源区1959-2008年月平均气温、最高气温、最低气温、相对湿度、降水量、风速和日照时数等气候要素资料,应用修订的Thornthwaite Memorial模型计算了50a被净初级生产力,分析其年际和年代际变化特征及其对气候变化的响应.结果表明:1959-2008年间,研究区年NPP变化呈显著上升趋势,NPP变...  相似文献   

5.
湖南西部桑植地区中二叠统栖霞组地层旋回性明显,有机质也呈周期性变化.研究其有机质聚集堆积控制因素将有助于理解海平面变化在富有机碳沉积物形成过程中的作用.选择其中一个旋回作为研究目的层段,通过黄铁矿形态以及地球化学参数有机碳TOC、硫同位素、DOP以及微量元素的研究发现,初级生产力参数Ba、Ni、Cu和Zn的变化与TOC含量的变化一致,有机质聚集堆积主要受海洋表层初级生产力的控制,底部水体氧化还原条件与初级生产力有关.有机质的堆积最终归因于高频相对海平面变化,海平面快速上升带来丰富的营养物质,提高海洋表层生物生产力,海底有机质的分解消耗大量氧气,氧需求量的增加形成底部水体贫氧-厌氧环境.   相似文献   

6.
文章在AMS~14C定年的基础上建立了南海北部MD05-2905钻孔(20°08.17′N,117°21.61′E)末次冰期以来有机地球化学记录的时间序列,利用其中的正构烷烃、甾醇和烯酮等有机分子标志物对南海北坡25ka以来沉积物物源、气候环境变化进行探讨。长链正构烷烃总含量和浮游植物标志物总含量表明25.0~14.5kaB.P.时段南海北部沉积物中陆源物质输入、海洋初级生产力浮游植物输入均较高,14.5~8.5kaB.P.时段迅速降低,全新世8.5kaB.P.之后稳定在较低水平。末次冰期海平面低,陆架出露面积大,陆源物质搬运至沉积地点的距离短,强盛的冬季风及其驱动的洋流有利于大量的陆源物质搬运至该沉积地点;14.5kaB.P.,对应于MWPIa时期,陆源物质输入迅速减少,海洋初级生产力的迅速降低,印证了此时海平面的快速上升。C31/C17物源参数表明陆源物质输入和海洋内生源输入在25.0~14.5kaB.P.时段和14.5~8.5kaB.P.时段分别占据了主要地位,这表明海平面变化对陆源物质输入影响可能更大;全新世8.5ka之后,陆源、海洋内生源输入交替占据主要地位,这可能与东亚季风增强有关。从有机分子标志物研究来看,海平面的变化对陆源物质输入及总海洋初级生产力可能均有重要控制作用,但海洋初级生产力中某些藻类如硅藻可能受控于不同的气候因素。C28甾醇含量指示硅藻在MWPIa和MWPIb时期大量增多,这可能是14.5~8.5kaB.P.海洋内生源输入相对较多的重要原因,同时,对11.0~8.5kaB.P.时段的碳酸钙低值事件可能有一定贡献,但其对海陆环境的响应还有待于进一步研究。  相似文献   

7.
海洋浮游植物溶解有机碳释放研究进展   总被引:6,自引:0,他引:6  
溶解有机碳(DOC)是海洋中最大的有机碳库,其中化学性质不稳定的成分大部分来自海洋浮游植物的释放。简要回顾了浮游植物溶解有机碳释放研究的发展历史,从光合作用合成的溶解有机碳(PDOC)释放占初级生产力的比重,PDOC的化学组成,浮游植物DOC释放的途径与机制,PDOC释放的环境调控,浮游植物群落组成对PDOC释放的影响,以及浮游植物释放DOC对异养细菌的生态意义等方面对相关研究进行了综述和分析。讨论了浮游植物溶解有机碳释放研究的现状和存在的问题,并对PDOC初级生产力测定的推广和相关研究的深化提出建议。  相似文献   

8.
海洋浮游生态系统中小型浮游动物的生态功能   总被引:8,自引:0,他引:8  
小型浮游动物在海洋生态系统中的作用,主要指有多少能量通过小型浮游动物传递到桡足类,从而比较沿"浮游植物→中型浮游动物"和"浮游植物+细菌→小型浮游动物→中型浮游动物"两条食物链到达中型浮游动物的能流大小.为达到这个目的,需要研究各个能流路径的传递效率,即能量在各个营养级(初级生产--小型浮游动物,细菌生产--小型浮游动物,小型浮游动物的生长率,小型浮游动物--中型浮游动物)的传递效率.综述了国内外对上述营养级传递效率的研究现状,以期为我国的同类研究提供参考.浮游植物初级生产力被小型浮游动物摄食的比例平均为每天60%~75%,大大高于桡足类对浮游植物初级生产力的摄食压力每天10%.海洋浮游细茵的二次生产力相当于初级生产力的30%.其中80%~180%被小型浮游动物摄食.小型浮游动物的毛生长率为30%~40%,生产力是初级生产力的21%~34%.在西班牙西北部沿海,桡足类每天摄食2%~51%小型浮游动物生产力.因此,桡足类通过微食物网摄食的能量是初级生产力的0.4%~17%,与桡足类摄食初级生产的10%处于同一量级.不考虑碎屑提供的能流,小型浮游动物对桡足类饵料的贡献为20%以上,甚至可高达50%.  相似文献   

9.
ENSO年代际变化对全球陆地生态系统碳通量的影响   总被引:1,自引:0,他引:1       下载免费PDF全文
使用动态植被陆面模式AVIM2,以NCEP (National Centers for Environmental Prediction)再分析气象资料作为大气强迫场,模拟了1953-2004年全球陆地生态系统净初级生产力(NPP)和净生态系统生产力(NEP) 的空间分布及时间变化特征。结果得到,1953-2004年陆地生态系统NPP和NEP全球总量52 a的C平均值分别为65 Pg/a和1.2 Pg/a,NPP呈明显的上升趋势,而NEP的上升趋势不明显。虽然NPP和NEP的年代际增长趋势不同,但是在20世纪70年代中期,NPP和NEP的年代际变化都出现了一个明显的突变,突变点后的增长趋势都没有之前的增长趋势高。这是由于太平洋的年代际振荡(PDO)冷暖位相影响了厄尔尼诺与南方涛动(El Nin~o Southern Oscillation,ENSO)的年代际变化,对NPP和NEP的年代际变化也产生了重要的影响。1976年以前PDO处于冷位相年,增加了ENSO冷位相的强度和频率,使热带地区的气候偏凉爽湿润,从而利于NPP和NEP趋势增长,而1976年以后PDO进入暖位相年,El Nin~o发生频繁,赤道地区多为干热的气候异常,会降低NPP和NEP的增长趋势。  相似文献   

10.
营养盐负荷对浮游植物水华影响的模型研究   总被引:4,自引:0,他引:4       下载免费PDF全文
刘浩  潘伟然 《水科学进展》2008,19(3):345-351
运用一个耦合的生物物理模型模拟了渤海初级生产力,浮游植物生物量和氮磷含量的季节变化特征,模拟结果与实测值吻合较好。在模型验证的基础上,进一步考察了两种营养盐负荷——河流和沉积物对渤海生态系统动力过程的影响,发现河载营养盐对渤海生态体系的影响主要集中在河口水域,而限制沉积物中的营养盐进入水体则能显著抑制渤海范围内藻类水华的爆发。  相似文献   

11.
Glacial-interglacial sea level changes have caused drastic variations in the surface hydrography, ventilation and ecosystem structure in the Japan Sea. Previous reconstructions using microfossils and geochemical proxies suggested decreased productivity and a more calcareous plankton community during glacial periods. However, the inferred community structure change is not consistent with significantly lower salinity in the Japan Sea during the glacials, which would have had a deleterious effect on calcareous plankton growth. Here, biomarker records of ODP Site 797 are generated to further evaluate phytoplankton productivity and community structure changes in the Japan Sea over the last 166 kyr. Although the contents of the phytoplankton biomarkers changed by two to three orders of magnitude, there were no clear glacial-interglacial patterns as sediment biomarker contents reflected the combined effect of production and water column degradation. The collective assessments of our biomarker records and published records support previous conclusions of decreased productivity in the Japan Sea during the glacials. However, a community structure proxy based on the alkenone/brassicasterol ratio reveals a shift from a diatom-dominated community during the glacials to a coccolithophorid-dominated community during the interglacials, mainly as a result of surface salinity variations in the Japan Sea controlled by sea-level changes. Previous community structure reconstruction using biogenic carbonate/silica ratio could have been complicated by the different environmental factors governing silica and CaCO3 dissolution in the Japan Sea.  相似文献   

12.
楚科奇海融冰过程中的海水结构研究   总被引:6,自引:0,他引:6  
楚科奇海是北冰洋的陆架海,中部凸起的Herald浅滩对海水流动和海冰融化过程有显著影响。利用我国1999年夏季北冰洋考察数据,讨论了楚科奇海海冰融化过程中的海水结构。结果表明,海区内存在2个相继进入的水团,一个是海冰覆盖期进入的阿纳德尔水(AW),具有低温、高盐、高硅酸盐的特点;另一个是海冰融化后进入的白令海陆架水(BSW),具有高温、低盐、低硅酸盐的特点。在开阔水域,表层水温度达到7℃以上,高于当地气温,是当地太阳辐射的加热作用形成的。开阔海域的水体向冰下扩展,表层水温在1℃以上,形成冰下暖水区,加速了海冰的融化;Her-ald浅滩阻挡了海水的流动形成绕流,其北部处于绕流的死角,表层水温在-1℃以下,形成冰下冷水区。在开阔海域,上层海水的混合深度达到15~20 m,而渗入冰下的暖水深度小于5 m,体现了海冰对暖水渗入的阻滞作用。所有海冰覆盖站位10 m层的叶绿素-a含量都很高,表明冰下海水处于浮游植物大量繁殖的状态,有可能对海水吸收热量和海冰融化产生显著的影响。  相似文献   

13.
白令海楚科奇海的海冰范围变化特征   总被引:3,自引:0,他引:3  
白令海和楚科奇海位于北极太平洋一侧的海冰外缘线附近,具有较强烈的气冰海相互作用.采用滑动t检验和小波分析方法对白令海和楚科奇海1953—2004年海冰范围的年际变化、年代际变化和总体趋势变化进行分析.结果表明:20世纪70年代后期,海冰范围在白令海存在显著的均值突变现象,而楚科奇海在对应阶段则表现为更明显的变频现象;在突变点前后两个时段里,阿留申低压中心低压加强、核心位置偏移以及对应风场分布的变化是导致白令海海冰范围明显缩小的主要动力原因.楚科奇海海冰范围的年际变化中存在由低频向高频变化的现象,该现象除了在局地气温变化中存在之外,在北冰洋区域风涡度、波弗特海纬向风、东西伯利亚海经向风等动力因素中也有所体现.因此,除热力因素外,动力因素引起的海冰的平流与该变频现象也存在一定的联系.  相似文献   

14.
Trends in phytoplankton monitoring data (1976–2008) from the Gulf of Riga were investigated and linked to environmental factors. Annual means of spring phytoplankton biomass correlated to phosphorus input from land and shifts between diatoms and dinoflagellates were attributed to potential Si limitation and time of sampling relative to the spring phytoplankton succession. The summer phytoplankton biomass, which more than doubled over the study period, was related to the abundance of summer copepods that similarly declined. Cyanobacterial blooms proliferated in summer and the proportion of diatoms similarly declined when the winter–spring inorganic N/P ratio was low. The chlorophyte proportion in summer increased over the study period, and this was linked to increasing temperatures favoring their higher growth rates. The dinoflagellate proportion appeared to decrease with temperatures above a threshold of 15.5°C. Although nutrient inputs and their ratios are important factors for the phytoplankton community, this study suggests that climate change and overfishing could be equally important.  相似文献   

15.
The chemical composition of bottom sediments in the Chukchi and, partly, East Siberian Seas was studied. In the south and west of the Chukchi Sea, a zone has been detected with the accumulation of sediments rich in organic carbon, an increased background content and anomalies of sulfophile metals (Mo, Zn, Hg, Ag, Au), iron-group metals (V, Ni, Co), and some PGE (Ru, Pt). This zone is confined to the neotectonic active system of rift troughs extending from the Bering Strait and eastern Chukchi Peninsula to the continental slope, where it is bounded by the Cenozoic Charlie rift basin of the Canadian hollow. The geochemical features of the carbon-enriched sediments evidence that they formed under oxygen-deficient conditions and, sometimes, in suboxic and anoxic environments near endogenic water and gas sources. The high carbon and metal contents suggest that the very fine-grained sediments in the rift troughs of the Chukchi Sea are a possible analog of some types of ancient highly carbonaceous sediments belonging to black shales.  相似文献   

16.
《China Geology》2019,2(3):315-324
The sedimentary environment and ecological system in the South Yellow Sea (SYS) changed dramatically due to sea level change caused by glacial-interglacial cycles. The authors report the use of marine biomarkers (brassicasterol, dinosterol and C37 alkenones) and terrigenous biomarkers (C28+C30+C32 n-alkanols) in core DLC70-3 from the SYS to reconstruct the variation in the phytoplankton productivity and community structure and possible mechanisms during the middle Pleistocene. The results show that the primary productivity and that of single algae presented a consistent trend for the whole core during the middle Pleistocene, which was high during interglacial periods and low during glacial periods, with the highest being in marine isotope stage (MIS) 5–9 and MIS 19–21. The main reason is that the Yellow Sea Warm Current (YSWC) carried much of high temperature, high salinity water into the SYS, causing upwelling and vertical mixing and stirring, which increased the nutrient supply in the photosynthetic layer. The phytoplankton community structure mainly showed an increase in the relative content of haptophytes in MIS 5–9 and MIS 19–21, while the relative content of diatoms and dinoflagellates decreased; there was no evidence for a haptophyte content in other stages. The results reveal a shift from a coccolitho-phorid-dominated community during MIS 5 –9 and MIS 19 –21 to a diatom-dominated community during the other stages, mainly as a result of surface salinity variation, attributed to the invasion of the YSWC during high sea level periods.  相似文献   

17.
2003年夏季中国第二次北极科学考察期间,在北冰洋楚科奇海陆架、楚科奇海台、陆坡流区、门捷列夫海岭和加拿大海盆等不同区域进行了200 m以浅海水和部分观察站沉积物表层叶绿素a浓度的现场观测。结果表明,观测水体叶绿素α浓度变化范围为0.002~39.008 μg/dm3。表层浓度分布范围为0.037~4.644 μg/dm3,平均值为0.612 μg/dm3;高叶绿素α浓度出现在水深20~30 m的次表层水。叶绿素α浓度分布具有明显的区域性特征,水柱平均浓度的次序为楚科奇海陆架区>陆坡流区>楚科奇海台区>加拿大海盆区>门捷列夫海岭区。表层沉积物叶绿素α浓度从未能检出~3.978 μg/g(湿重),平均浓度为0.954 μg/g(湿重),表现为沉积物表层的浓度高于下层,陆架和陆坡流区的浓度高于海岭区以及海台和海盆区的分布特征。  相似文献   

18.
应用特征光合色素研究东海和南海北部浮游植物的群落结构   总被引:23,自引:0,他引:23  
应用高效液相色谱并结合二极管阵列检测器分析技术,研究了东海与南海北部典型断面浮游植物的光合色素组成,进而由CHEMTAX软件估算浮游植物群落结构。结果表明:东海断面浮游植物叶绿素a生物量大于南海北部断面。受海水层化结构影响,东海PN断面浮游植物群落结构形成上层和下层两种类型,上层以蓝藻为主要优势类群;下层以硅藻为主要优势类群。南海北部S断面浮游植物群落形成近岸与离岸两种类型,近岸以硅藻、隐藻、绿藻为主要优势类群;离岸以定鞭金藻、蓝藻、原绿球藻为主要优势类群。初步分析了研究海区浮游植物群落结构与环境因子的关系。  相似文献   

19.
针对极地冰雪显著影响中低纬气候的事实,利用1979-2017年长江流域116站降水资料和美国国家冰雪数据中心海冰资料,通过奇异值分解等统计学方法,研究北极海冰对长江流域主汛期降水的影响及可能的机制,结果表明:冬春季节,巴伦支海和鄂霍次克海海冰面积偏多、波佛特海海冰面积偏少时,主汛期长江上中游干流、汉江上游和雅砻江降水偏多;北极群岛、楚科奇海和拉普捷夫海以北海域海冰面积偏多时,主汛期两湖水系降水偏多,嘉陵江上游、汉江上游降水偏少;反之亦然。可能的机制为冬春季关键区海冰变化通过影响湍流热通量引发大气能量波动,这种波动以大气波列形式向东亚传播,影响东亚地区夏季的大气环流和水汽输送,从而间接影响长江流域主汛期降水。应用多元回归法,以关键区海冰面积作为预测因子建立4个流域内主汛期降水趋势预测模型,模型对预报区降水的定量预测有明显的波动,但对预报区总体的降水趋势有较好的预测效果。  相似文献   

20.
Phytoplankton plays a dominant role in shelf biogeochemistry by producing the major part of organic matter. Part of the organic matter will reach the sediment where diagenetic processes like denitrification, apatite formation or burial will remove nutrients from the biogeochemical cycle. In this article current knowledge on the decadal plankton variability in the North Sea is summarized and possible implications of these changes for the biogeochemistry of the North Sea are discussed. Most of the observed interdecadal dynamics seem to be linked to large-scale oceanographic and atmospheric processes. Prominent changes in the North Sea ecosystem have taken place around 1979 and 1988. In general, the phytoplankton color (CPRS indicator of phytoplankton biomass) reached minimum values during the end of the 1970s and has increased especially since the mid 1980s. Changes with a similar timing have been identified in many time series from the North Sea through the entire ecosystem and are sometimes referred to as regime shifts. It is suggested that the impact of global change on the local biogeochemistry is largely driven by the phyto- and zooplankton dynamics during spring and early summer. At that time the extent of zooplankton–phytoplankton interaction either allows that a large part of the new production is settling to the sediment, or that a significant part of the new production including the fixed nutrients is kept within the pelagic system. The origin of the extent of the phytoplankton–zooplankton interaction in spring is probably set in the previous autumn and winter. In coastal areas, both large-scale atmospheric and oceanographic changes as well as anthropogenic factors influence the long-term dynamics. Due to eutrophication, local primary production nowadays still is up to five times higher than during pre-industrial conditions, despite a decreasing trend. Recently, introduced species have strengthened the filter feeder component of coastal ecosystems. Especially in shallow coastal seas like the Wadden Sea, this will enhance particle retention, shift organic matter degradation to the benthic compartment and enhance nutrient removal from the biogeochemical cycle by denitrification or apatite formation.  相似文献   

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