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1.
Distribution and abundance of Pseudeuphausia sinica off the Changjiang River Estuary (30 ° 00′ - 32 ° 00′ N, 122 ° 00′ -123 ° 30 ′E), the East China Sea were studied in relation to environmental features associated with the regional warming. P. sinica is a subtropical species. Off the Changjiang River Estuary, its abundance reached maximum in summer. To examine spatial and temporal changes of P. sinica off the Changjiang River Estuary, the authors have combined all available sampling data in 1979, 1981, and 2000-2007. This database shows that a significant increase in abundances of P. sinica was observed in spring of 2000-2007 as compared with 1979, 1981. The abundance of P. sinica increased from 0.18-0.21 ind./m 3 in 1979 and 1981 to 0.68-4.00 ind./m 3 in 2000-2007. Accordingly, the sea temperature increased obviously from spring of 1979, 1981 to the 2000s. The authors further found a positive relationship between average surface temperature and average abundance of P. sinica. Regional warming, together with the release of predator induced stress due to a sharp decline in the abundance of its predator (e.g., fishes), were thought to be responsible for the increase in abundance of P. sinica in water off the Changjiang River Estuary.  相似文献   

2.
长江河口海域生态系统健康评价指标体系及其初步评价   总被引:10,自引:1,他引:10  
叶属峰  刘星  丁德文 《海洋学报》2007,29(4):128-136
基于结构功能指标体系评价法,利用层次分析法构建长江河口生态系统健康评价指标体系,并选择2002年至2004年8月生态调查数据对其进行初步的定量评价.结果表明,可以通过物理化学指标、生态学指标和社会经济学指标三大类30个指标来建立长江河口生态系统健康评价指标体系;2002年至2004年8月长江河口生态系统的整合健康指数(IHIYRE)分别为3.09,3.17和4.36,均低于系统健康指数值(5),河口生态系统总体上处于健康与不健康之间(3≤IHIYRE≤5).而且,从目前河口海域的污染现状来看,这一海域的水体富营养化比较严重,且状态比较稳定,使其恢复到健康状态需要投入巨大的物质和能量.  相似文献   

3.
Variation in the summer nanoflagellate community on the continental shelf ecosystem of East China Sea (ECS) is closely coupled with environmental variation due to extension of the Changjiang River plume. Spatial patterns of nanoflagellate abundance were studied in June and August 2003, June 2006 and July 2007 over the ECS shelf. The Changjiang River plume was smaller during the August 2003 and July 2007 cruises than during the rest other 2 cruises. Total nanoflagellates densities varied between 1 and 120 × 102 cells ml−1 with the highest abundances occurring within the Changjiang River plume during large plume periods. In the small plume periods, the range of nanoflagellates abundance was 3–33 × 102 cells ml−1 and the highest abundances were observed during these periods either within the Changjiang River plume or the Yellow Sea Coastal Water (YSCW). During large plume periods, nanoflagellate abundance closely related to changes in salinity and during the small period, abundance was most related to water temperature. The pigmented nanoflagellate community (PNF) within Changjiang River plume, especially in the <3 μm size class, appears to increase in response to terrestrial or anthropogenic inorganic nutrient loading in the discharge of fresh water from the Changjiang River. The PNF abundance pronounced increase caused the variation of nanoflagellate community of ECS in summer. We suggest that the discharge of fresh water from Changjiang River has significant ecological impacts on spatial variations in nanoflagellate community in the ECS.  相似文献   

4.
孙凡  于非  司广成  潘俊 《海洋科学》2019,43(1):15-27
在1982—2016年,苏北浅滩及长江口海域春季海表面温度主要呈现出从南至北、从近岸至离岸升温趋势逐渐减小的特征,其中长江口附近海域升温速率最大。研究显示,苏北浅滩及长江口附近海域春季海表面温度的长期升温趋势主要与该海域经向热输送及长江平流热输送的增强有关。进一步的研究发现,春季经向风速的增强导致该海域经向热输送的增加,而春季经向风速的年际及年代际变率又受到太平洋年代际振荡、北极涛动的调控,其中,太平洋年代际振荡指数与经向风速呈负相关,北极涛动指数与经向风速呈正相关,北极涛动指数的年际增加以及太平洋年代际振荡指数的年际降低使得春季南风增强,进而南向的冷平流减弱,北向的热平流增强,使该海域春季海表面温度长期升温。在此过程中,净热通量对其升温过程起到抑制作用,而前冬海温主要是对春季海表面温度的年代际振荡产生重要影响,其主要体现为1982—1999年的升温及2000—2016年的降温过程。  相似文献   

5.
Water and sediment samples were collected at Datong from June 1998 to March 1999 to examine seasonal changes in the transports of nitrogen (N) and phosphorus (P) from the Changjiang River (Yangtze River) to the East China Sea (ECS). Dissolved inorganic nitrogen (DIN; dominated by nitrate) concentration exhibited small seasonality, and DIN flux was largely controlled by water discharge. Dissolved inorganic phosphorus (DIP) concentration was inversely correlated with water discharge, and DIP was evenly delivered throughout a year. The transports of DIN and DIP from the Changjiang River were consistent with seasonal changes in nutrient distributions and P limitation in the Changjiang Estuary and the adjacent ECS. Dissolved organic and particulate N (DON and PN) and P (DOP and PP) varied parallel to water discharge, and were dominantly transported during a summer flood. The fluxes of DOP and particulate bioavailable P (PBAP) were 2.5 and 4 times that of DIP during this period, respectively. PBAP accounted for 12–16% of total particulate P (PP), and was positively correlated with the summation of adsorbed P, Al–P and Fe–P. Ca–P, the major fraction of PP, increased with increasing percent of CaCO3. The remobilization of riverine DOP and PBAP likely accounted for the summer elevated primary production in DIP-depleted waters in the Changjiang Estuary and the adjacent ECS. The Changjiang River delivered approximately 6% of DIN (1459 × 106 kg), 1% of DIP (12 × 106 kg), and 2% of dissolved organic and particulate N and P to the totals of global rivers. The construction of the Three Gorges Dam might have substantially reduced the particulate nutrient loads, thereby augmenting P limitation in the Changjiang Estuary and ECS.  相似文献   

6.
1 IntroductionHuman activitieshavebeen stronglyaffecting theworld river sedimentsupply to the oceans since the19thor20thcentury(StanleyandW arne,1993;Fanos,1995;Sm ithandW inkley,1996;Stanley,1996;Yang,Shi,etal.,2004;Yang,Zhao,etal.,2002).Thesedi-m enttra…  相似文献   

7.
The spatial distribution of ammonia-oxidizing Betaproteobacteria ( β AOB) was investigated by FISH (fluorescence in situ hybridization) and DGGE (denaturing gradient gel electrophoresis) techniques in the sediment off the Changjiang River Estuary.Sediment samples were collected from eight stations in June before the formation of hypoxia zone in 2006.The abundance of β AOB ranged from 1.87 × 10 5 to 3.53 × 10 5 cells/g of sediment.β AOB abundance did not present a negative correlation with salinity,whereas salinity was implicated as the primary factor affecting nitrification rates.The DGGE profiles of PCR-amplified amo A gene fragments revealed that the β AOB community structure of sample S2 separated from other samples at the level of 40% similarity.The variations in composition of β AOB were significantly correlated with the salinity,temperature,absorption ability of sediments and TOC. The statistical analysis indicates that the β AOB abundance was a main factor to influence nitrification rates with an influence ratio of 87.7% at the level of 40% biodiversity similarity.Considering the good correlation between β AOB abundance and nitrification estimates,the abundance and diversity of β AOB community could be expected as an indirect index of nitrification activity at the study sea area in summer.  相似文献   

8.
小型鳀鲱鱼类多为浮游生物食性种类;又是多种高营养层次鱼类的饵料生物;作为生态系统中的重要类群;其数量分布对多种生物均具有重要影响。本文根据2013年6月、8月、10月和2014年2月、4月、5月在黄河口及邻近水域进行的渔业资源和环境调查数据;分析了该海域小型鳀鲱鱼类资源数量分布特征;并用广义可加模型研究了其数量分布与时空和环境因子等之间的关系。黄河口及邻近水域小型鳀鲱鱼类相对资源量呈现明显的季节变化;夏、秋季相对资源量明显高于冬、春季。小型鳀鲱鱼类相对资源量具有明显的空间变化;且在不同月份呈现不同的空间分布格局;在4月、5月、6月小型鳀鲱鱼类主要分布于近岸水域;在8月、10月小型鳀鲱鱼类分布外移且范围扩大。GAM分析表明;影响黄河口及邻近水域小型鳀鲱鱼类相对资源量时空分布的主要环境因子包括表层盐度、表层水温、水深和浮游植物丰度等。小型鳀鲱鱼类相对资源量随表层盐度的升高呈现升高的趋势;在盐度达到30时;小型鳀鲱鱼类相对资源量处于最高水平。随表层水温的升高相对资源量有升高趋势;当表层水温达到15℃后;小型鳀鲱鱼类相对资源量增加趋势减缓且丰度较大。小型鳀鲱鱼类相对资源量随浮游植物丰度的增大总体呈现上升趋势;而随水深的变化呈现先降低后升高的趋势。黄河口及邻近水域小型鳀鲱鱼类相对资源量的时空变化与鳀鲱鱼类产卵、索饵和越冬洄游有关;受到季节变化、黄河径流变化以及黄河调水调沙等引起的海洋环境因子变动的影响。  相似文献   

9.
悬浮体系指悬浮在水中,经过过滤能停留在滤膜或滤纸上的一切物质质点,其中包括泥沙颗粒、浮游生物及各种胶体物质等。悬浮体浓度分布是自然环境条件的综合反映,与物质来源,海洋环流、潮流、波浪等动力要素密切相关。因此,悬浮体浓度及运移途径是测试环境条件的重要参数,对其进行研究将对开发港口、合理利用土地资源、保护生态环境具有重要的实际意义,对于探讨现代沉积过程则具有理论意义。  相似文献   

10.
典型河口浮游动物种类数及生物量变化趋势的研究   总被引:8,自引:0,他引:8  
依据国家海洋局2004-2006年每年5月和8月的黄河口、长江口和珠江口生态监控区浮游动物的监测结果,对上述河口浮游动物和桡足类种类数及浮游动物生物量分布进行了分析,并将结果与历史资料进行同测区、同季节的对比。结果表明,与全国海洋普查时期相比,2006年黄河口浮游动物种类数下降了50.6%,桡足类种类数下降了53.3%;桡足类在浮游动物中所占比重由1985年的42.4%下降到2006年的32.6%。长江口浮游动物种类数有所上升,但是桡足类种类数由1985年的62种降低到2006年的37种;桡足类在浮游动物中的比重从1958年的54.2%降低到2006年的42.5%。珠江口桡足类在浮游动物中所占的比例由1959年的59.3%下降到54.4%,未发生明显变化。黄河口春季、夏季浮游动物生物量上升趋势不明显,夏季增幅较小;长江口自2000年以后春季浮游动物平均生物量为528.36mg/m^3,是1958年的2.4倍,2005年与2006年夏季浮游动物生物量分别是1958年的2.2和2.7倍,增加趋势十分明显;珠江口春季浮游动物生物量上升趋势最为显著,2004-2006年3年春季浮游动物平均生物量是1959年同期的5.7—8.7倍,1981年、2006年夏季生物量分别比1959年增加了3.1倍和11倍。就这3个河口生物量变化趋势看,珠江口生物量的上升趋势最为明显,长江口次之,黄河口变化幅度较小。  相似文献   

11.
长江口海域浮游植物分布及其与径流的关系   总被引:57,自引:9,他引:48  
利用 2 0 0 1— 2 0 0 2年 4个季度月航次调查资料 ,研究了长江口海域浮游植物的分布及其与长江径流的关系 ,共鉴定浮游植物 1 5 4种 (含变种和变型 ) ,其中属硅藻类的有 1 1 3种 ,甲藻类 36种 ,近岸低盐性的中肋骨条藻 (Skeletonemacostatum)是最重要的优势种。夏季浮游植物密集区位于长江口海域的北部及靠近浙江近海的上升流区 ,春季和秋季密集区出现在调查区的南部。浮游植物数量高峰出现在夏季 (平均为 9 2 7× 1 0 6 个 /m3) ;冬季 (枯水期 )数量最少(平均为 2 91× 1 0 5 个 /m3) ,且分布相对较均匀 ,显示出该海域浮游植物种类组成与数量的季节变化同长江径流量有明显的关系。由于大量营养盐被长江径流携带入海 ,造成河口区严重富营养化 ,这为赤潮生物大量孳生提供了适宜的环境条件 ,长江口海域已成为我国沿海赤潮多发区之一。  相似文献   

12.
To evaluate the controlling factors for coastline change of the Changjiang(Yangtze River) Estuary since 1974,we extracted the mean high tide line from multi-temporal remote sensing images that span from 1974 to 2014 at 2-year intervals.We chose 42 scenes to constrain the changing pattern of the Changjiang Estuary coastline,and implemented GIS technology to analyze the area change of the Changjiang(Yangtze) Subaerial Delta.Runoff,sediment discharge and coastal engineering were withal considered in the analysis of the coastline changes.The coastline has transgressed seaward since 1974,and a part of it presents inter-annual variations.The area of the Changjiang Subaerial Delta increased by 871 km2,with a net accretion rate of 21.8 km2/a.Based on the change of sediment discharge due to the major projects in the Changjiang River Basin,we divided the changing pattern of the coastline into three stages:the slow accretion stage(1974–1986),the moderate accretion stage(1987–2002),and the rapid accretion stage(2003–2014).Liner regression analysis illustrated that there is a significantly positive correlation between the area changes and sediment discharge in the Chongming Eastern Shoal and Jiuduansha.This suggested that sediment load has a fundamental effect on the evolution of the Changjiang Estuary.Construction of Deep Waterway in the North Passage of the Changjiang River(1998–2010) led to a rapid accretion in the Hengsha Eastern Shoal and Jiuduansha by influencing the hydrodynamics in North Passage.Coastal engineering such as reclamation and harbor construction can also change the morphology of the Changjiang Estuary.We defined a contribution rate of area change to assess the impact of reclamation on the evolution of Changjiang Estuary.It turned out that more than 45.3% of area increment of the Changjiang Estuary was attributed to reclamation.  相似文献   

13.
长江口管理界线的现状和分析   总被引:1,自引:1,他引:0  
自然界河海相互关系非常密切.河海交互的河口海域,既不可同于一般典型河流,也不同于一般典型海洋.河口地区有着自身特有的现象和规律,这些特殊的现象和规律,不仅使许多河流研究者痴迷,也使许多海洋学家难以释怀.引发长江口河海划界之事或之争最初是在20世纪80年代中期,缘于河口选划海洋倾倒区,确定<海洋环境保护法>在河口区适用的地理范围.1993年财政部、国家海洋局颂布<国家海域使用管理暂行规定>,上海市出现了执行该规定的适用地理范围问题的不同意见,再次引发长江口河海划界之争.2001年12月市政府批准的<上海市海洋功能区划>虽然涵盖了长江口,但由于水务和海洋部门在长江口海域使用管理问题上争执不下,影响了上海海域使用管理工作的推进.2002年1月1日<海域管理法>施行后,长江口河海之争峰烟越燃越旺,直至现在,这一问题也没有很好解决.管理长江口海域的政府部门众多,它们在长江口海域的工作界线不同,对长江口海域的认识也很难统一意见.河口区是河海相互作用的交汇区,很难按照自然属性在河口区划出一条河海分界线,从自然科学研究角度出发也无必要划定一条河海分界线.就海洋与水行政管理部门的工作范围和工作衔接问题提出一些看法,首先是解决河海划界问题的3条基本原则:有利于经济社会发展和维护社会主义法制统一;尊重和考虑历史与现状,不纠缠细节,不排斥对方,具体问题具体分析解决;建立海洋与水行政部门之间的协调机制,以"非排他性原则"作好长江口海域权属管理的职能分工、协同配合与有机衔接.在此基础上,提出解决河海划界问题的3点办法.有关河口海域管理问题,要解决好不同部门管理上的地理范围重叠交叉和法律关系上的职能各有分工、不能相互取代、互相排斥的问题,在管理地理范围有交叉重叠的河口海域时,各自依法履行职责,共同监督管理.有关海岸带滩涂的管理问题,应以海岸线为界,在城市化地区应以一线海堤为界,海岸线或一线海堤以下滩涂的开发利用,纳入海域使用管理;海岸线以上的高滩涂,按地方滩涂管理条例进行管理.有关长江河口区的海域使用管理问题,海洋和水利行政主管部门应依据法律和各自的职责,共同监督管理,并对管理的具体做法提出4点建议.  相似文献   

14.
长江河口悬沙与盐分输运机制分析   总被引:2,自引:0,他引:2  
2004年9月15~22日在长江口南支口门区域进行了水位、流速、悬沙浓度、盐度的全潮观测,基于这些现场数据,分析河口区域流速结构、悬沙浓度与盐度的时空分布特征;利用机制分解法研究河口悬沙、盐分的通量和输运机制,并探讨它们与水体垂向结构之间的关系。主要结论如下:长江河口区的悬沙浓度存在显著的时空变化特征,从口内向口外,悬沙浓度呈显著减小趋势,大潮期间的悬沙浓度较大,是小潮期间的数倍。通量机制分析结果表明,长江河口区以欧拉余流为主,向海输运,并有向海方向逐渐减小的趋势,斯托克斯余流向陆输运,在大、小潮期间有显著差异。盐分输运机制中,以欧拉余流占主导地位,潮泵效应、垂向重力环流、垂向剪切扩散作用的贡献次之。长江河口悬沙净输运率在向海方向逐渐减小,大潮期间的悬沙净输运率比小潮期间的大1~2个数量级,水动力条件是造成长江河口悬沙净输运时空差异的主要因素。悬沙输运机制小潮期间以欧拉余流占主导地位,在大潮期间则以与紊流相关的垂向剪切扩散作用取代欧拉余流占据主导地位。悬沙瞬时输运机制中的剪切扩散项在中下层水体的理查德森数(Ri)小于0.25时才有较大的量值,在南槽内,当底层水体的理查德森数(Ri)处于-0.1相似文献   

15.
近年来,随着长江流域来沙量的减少,河口水沙动力条件以及河床地形必将发生一定程度的变化。通过对长江口南﹑北港河道连续9d小潮至大潮水沙定点观测发潮流速增强,大潮期含沙量较高,表明泥沙再悬浮明显。通过实测数据分别给出大、中小潮南、北港河道挟沙力经验公式,显示出潮流与含沙量具有良好的相关性,同时显示出潮流流速与挟沙能力的方次变化有良好的对应性。  相似文献   

16.
The Changjiang (Yangtze River) is known to contribute significantly to the eutrophication that has caused drastic changes to the ecosystem of the East China Sea. However, evidence for historical changes in nutrient concentrations and composition and the consequent effects on the ecosystem in the coastal water is sparse. In this paper we present some long-term data for nutrient concentrations and Si:N:P ratios in the freshwater and the river plume and the long-term response of the ecosystem structure in the river plume. These data reveal increases in the dissolved inorganic nitrogen and phosphate concentrations in the Changjiang freshwater by a factor of five from the1960s to the end of the 1990s and a reduction in dissolved silicate by two thirds over the same period. Concomitantly, an increase in DIN concentration and a reduction in silicate concentration both by a factor of two were observed in the surface water of the Changjiang plume. As an ecological consequence to such nutrient changes, the chlorophyll a concentration increased by a factor of four since the 1980s and harmful algal blooms increased rapidly since 1985 in the Changjiang estuary and adjacent sea areas. The macrozoobenthic biomass decreased sharply from the mid 1980s to the present, suggesting that the Changjiang estuary has been in a high eutrophication state since that time. We predict that, due to the continuously increasing nutrient pressure, the symptoms of eutrophication associated with nutrients will worsen in the Changjiang plume in the near future.  相似文献   

17.
本文基于2015年7月长江口的现场调查资料,分析讨论了长江河口区溶解态铁(DFe)的含量分布与混合行为及其影响因素。结果表明:长江径流携带大量的DFe入海,且口内区(Ⅰ)浓度高于混合区(Ⅱ)和外海区(Ⅲ),平均浓度分别为166.45±6.26nmol/L,14.04±8.80nmol/L和6.18±1.51nmol/L。受去除作用和海水稀释的影响,在河口区DFe的浓度下降率达到96.92%。DFe浓度与盐度的关系符合指数模型,由模型与理论稀释线估算的长江口海域DFe的理论最大去除率为97.75%,与实际测得的最大浓度下降率相近。长江冲淡水、苏北沿岸流和台湾暖流影响DFe的水平分布。受长江冲淡水影响,长江口外海域DFe浓度高达176.50nmol/L。苏北沿岸流主要影响研究区域北部的表层水,其携带的DFe浓度低于长江冲淡水。台湾暖流是导致研究区域东南部DFe浓度较低的主要原因,使得中层和底层水中浓度分别低至4.04nmol/L和4.79nmol/L。另外,在表层海水中DFe的分布受到叶绿素a、溶解有机碳和溶解氧的共同影响,DFe与叶绿素a、溶解氧呈显著负相关,与溶解有机碳呈显著正相关。  相似文献   

18.
Temporal and spatial distribution of biogenic (BSi) and lithogenic (LSi) silica were studied in the Changjiang (Yangtze River) Estuary and its adjacent area. The annual average BSi and LSi concentrations were (1.71 ± 1.79) μmol/L and (0.56 ± 1.41) mmol/L, respectively. Both BSi and LSi were high in the inshore areas, where they received terrigenous discharge from the Changjiang, and decreased towards the offshore region. BSi and LSi were most abundant at the near bottom layer due to the high sedimentation rates and resuspension of sediment. Diatom blooms occurred in summer with high Chl a concentration in the surface layer, which induced that BSi in the surface layer during summer was obviously higher than that in the surface layer of other seasons. LSi concentration was maximal in autumn and spring and minimum in summer, associated with the seasonal variation of SPM values. Drifting investigation and mesocosm experiments were conducted during dinoflagellate bloom, aiming to understand the effect of nutrients on BSi by changing the phytoplankton composition. The results show that the low dissolved inorganic phosphorus concentration and high molar ratio of N/P (dissolved inorganic nitrogen vs. dissolved inorganic phosphorus), were the important factors for decreasing diatom biomass in the study area, and it would subsequently decrease the BSi concentration in aquatic ecosystem.  相似文献   

19.
利用2009年6月份和8月份(夏季)长江口及邻近海域的调查资料,分析了该海域硝酸盐、磷酸盐的扩散和输运行为特征,结果表明:8月份冲淡水对长江口及邻近海域硝酸盐和磷酸盐的影响比6月份大,这可能与8月份时长江的径流量大有关;6月份和8月份,该海域硝酸盐、磷酸盐的转移机制主要是物理混合稀释过程,但8月份时的硝酸盐、磷酸盐转移...  相似文献   

20.
基于遥感数据,采用功率谱和相关性分析等方法,研究了长江口邻近海域海表温度(SST)的时空变化特征以及影响因素。结果表明:1982—2017年长江口邻近海域的SST 整体表现为每10 a升温约0.48 °C的趋势,且具有10.0,3.6,2.4和1.0 a的振荡周期。长期以来,冬、春、夏、秋四季的长江口邻近海域SST总体呈现升温趋势,其中春季的升温趋势最显著,而秋季变化趋势最不明显。研究海区的SST呈现明显西北—东南向温度递增的分布特征。此外,长江口径流量的变化对邻近海域的SST具有一定影响,从多年变化来看,径流量增大(减小),长江口邻近海域SST随之升高(降低),从月变化来看,3月、4月和9月的长江径流对SST有影响。气温对SST具有一定的强迫作用,大气温度的总体趋势是升高的,通过海气相互作用进行热传输,从而造成长江口邻近海域SST升温。  相似文献   

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