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1.
分析了南海62个表层沉积物样品中生源(有机质、碳酸钙和蛋白石)和非生源(岩源物质)组分的含量变化和分布特征,并以沉积学分区为基础,结合5个沉积物捕获器站位,将南海划分为N、C-NE、SW和S 4个区域,对比分析了各区表层沉积物和水柱中沉降颗粒物中各组分含量、沉积通量分布特征和变化,探讨了表层沉积物的输出生产力、沉降颗粒物的初级生产力及真光层下100 m输出生产力三者之间的对应关系.结果显示:南海4个海域表层沉积物中各组分平均含量多数低于沉降颗粒物中的平均含量,而碳酸钙、岩源物质的沉积通量却多数高于沉降颗粒物中的沉积通量,分析得出表层沉积物中各组分平均含量和沉积通量不仅受水柱中各组分输出量影响,还受到陆源物质输入、溶解作用和上层水体营养盐影响.南海表层沉积物中生源组分沉积通量大小对应其输出生产力的大小.但是,由于陆源有机质、生源颗粒侧向漂移的影响,表层沉积物的输出生产力大小分布并不完全对应沉降颗粒物的初级生产力大小分布,尽管南海真光层下100 m输出生产力与沉降颗粒物的初级生产力比值与世界大洋"f"比平均值基本一致,但是,明显低于表层沉积物的输出生产力大小,只有在沉降颗粒物的初级生产力较高区域,真光层下100 m输出生产力大小才最接近表层沉积物的输出生产力大小.  相似文献   

2.
随着人类开发活动的加剧,靖海湾沉积动力环境受到显著影响。靖海湾57个站位的表层沉积物调查资料的分析结果表明,靖海湾表层沉积物以砂质粉砂和粉砂为主,含有少量泥,沉积物粒径偏小;随着水动力条件的增强,表层沉积物平均粒径增大,分选系数呈增大趋势,正偏更显著;以此为依据,利用Pejrup三角图式把靖海湾划分出4个沉积动力环境单元,结合粒度概率图,认为靖海湾沉积物搬运方式以悬浮为主,跃移次之,并有少量以推移方式搬运,随着水动力条件的增强,悬浮组分减少,跃移组分和推移组分增加。  相似文献   

3.
本文利用2006—2010年在广西沿岸海域获得的409个表层沉积物样品和2个站位的水文观测资料,通过沉积物粒度参数、Gao-Collins粒径趋势分析、以及表层沉积物输运通量的计算,探讨了该区域表层沉积物的粒度分布与输运特征。结果表明,研究区表层沉积物以粉砂和砂为主,主要类型为泥、砂质泥、粉砂、泥质砂、砂、含砾泥质砂、含砾砂、砾质砂;中值粒径范围跨度较大;分选系数由岸向海逐渐变大;大部分区域呈极正偏态。研究区沉积物输运趋势整体上有向岸输运的趋势。在防城港南侧海域和雷州半岛西侧分别有一个汇聚中心,廉州湾附近沉积物向湾内堆积。潮流作用下表层沉积物输运通量的研究表明,该海域的日平均单宽输沙通量较小,与表层沉积物的运移趋势一致,净输砂方向受潮流流速和持续时间的影响。  相似文献   

4.
随着开发利用海洋活动的加剧,潍坊港附近海域的沉积动力环境发生了明显变化,利用表层沉积物粒度调查资料,对研究区的沉积物粒度参数分布特征及沉积动力环境进行了研究。结果表明:研究区表层沉积物主要由砂质粉砂、粉砂质砂和砂组成,粉砂零星分布其中,粒径整体上呈由岸向海逐渐变细的趋势;表层沉积物粒度参数等值线在潍坊港西侧附近海域向岸弯曲,具有明显的细化趋势,而在潍坊港东侧及引堤端头附近海域呈明显的相反趋势;沉积动力环境分析结果表明研究区沉积物的搬运方式以跃移和悬移为主,随着水深和离岸距离的增加,跃移组分含量逐渐减少,悬移组分逐渐增加。  相似文献   

5.
研究了2003年10月采于珠江口5个站位的沉积物剖面酸挥发性硫化物(AVS)和同时提取的重金属(SEM:Pb,Zn,Cu,Cd,Ni)。其中,站位1、2位于中滩,其沉积物的AVS含量变化范围较小,为0.25—4.06μmol.g-1;站位3、4位于西滩,其沉积物的AVS含量变化范围较大,为0—26.09μmol.g-1。中滩和西滩沉积物的AVS含量均随深度增加。西滩表层沉积物的AVS含量接近于零,这可能与该水域较强的底层流和沉积物的再悬浮作用有关。站位5位于珠江口外侧,其表层沉积物的AVS含量相对较高,且垂向变化较小,可能是还原性沉积物间歇性再悬浮后重新沉积的结果。站位1、2和5沉积物中同时提取的重金属含量大体在0.95±0.2μmol.g-1范围内,随深度增加略呈下降趋势;而西滩沉积物重金属含量相对较高,为1.43—2.42μmol.g-1,且在一定深度范围内随深度增加呈明显下降的趋势,表明珠江口西滩沉积物中的重金属污染有加重的趋势。对AVS/SEM摩尔比值和单个金属的毒性效应研究显示,珠江口内尤其是西滩的表层沉积物存在重金属污染,对其中生活的底栖生物具有潜在的毒性效应。  相似文献   

6.
太湖THS孔现代沉积物137Cs和210Pb的分布及计年   总被引:8,自引:1,他引:8  
太湖THS沉积物柱状岩心中存在3个明显的137Cs蓄积峰,高含水率和有机质含量是前苏联切尔诺贝利核电站核泄漏对应的137Cs蓄积峰向表层迁移的一个可能的原因。利用137Cs核素1963年和1975年对应的蓄积峰计算出沉积速率为0.34 cm/a。利用137Cs核素1963年对应的蓄积峰进行校正,采用210Pb计年的CRS模式获得不同时段的沉积速率,发现在80年代末沉积物堆积通量最高,达到0.6 g/(cm2.a)。两种计年方法的结合有助于认识沉积速率的变化情况。  相似文献   

7.
大埕湾位于闽粤交界处,是典型的岬角弧形开放型海湾,本文基于实测的海流、表层沉积物数据,分析了大埕湾海域表层沉积物的分布特征,计算了再悬浮通量与输运通量,结合粒径趋势分析方法探讨了表层沉积物运移趋势,利用Flemming三角图示法对沉积动力环境进行分区并分析了泥沙输运的主要控制因素。结果表明,研究区表层沉积物有砂质粉砂、粉砂、含砾泥和泥4种类型,沉积物颗粒较细,整体以粉砂和泥为主,砂质粉砂和含砾泥呈圆斑状零星分布;粒级组分含量和粒度参数平面分布分区明显,黏土组分、分选系数和偏态值呈现“东北小西南大”的特点,粉砂组分和峰态值则表现出相反趋势。观测期间表层沉积物日再悬浮量为41.86kg/m2,日净输运通量40.36kg/m,逐时再悬浮通量值和单宽输沙率大小与潮流流速变化相关性较好,且涨潮段大于落潮段,净输沙指向涨潮方向,由西南向东北方向输沙。研究区沉积动力环境可划分为DⅡ、EⅡ和EⅢ3个分区,沉积物搬运以悬移为主,潮流和波浪是研究区泥沙起动及输运的主要动力,泥沙来源主要有近岸侵蚀供沙、东西两侧海域输沙以及少量短源季节性陆源碎屑补给3方面。  相似文献   

8.
胶州湾沉积物中氮与磷的来源及其生物地球化学特征   总被引:25,自引:9,他引:25  
通过对比分析和相关分析对沉积物中氮、磷含量、OC∶TN、TN∶TP进行了研究,探讨了胶州湾沉积物中氮、磷的来源及其生物地球化学特征.研究表明,胶州湾表层沉积物中总氮、总磷的变化趋势一致,即从湾内到湾外含量依次降低,其中总氮依次为0.41、0.25、0.20mg/g,总磷的含量依次为0.29、0.24、0.22mg/g.在整个柱状样中总氮、总磷平均含量的变化也和表层基本一致,有机氮在大部分层次占总氮的50%-70%,无机磷所占总磷的比例一般大于60%.根据沉积物OC∶TN比、氮、磷的垂直分布可以判断湾内和湾口沉积物中的氮主要是陆源的,海洋自生的氮分别占28.9%和13.1%,湾外的氮主要是自生的,海洋自生的氮占62.1%.与氮相比,磷主要是陆源的,但在湾外海洋自生磷的比例明显高于湾内.悬浮颗粒物的组成也证明了湾内沉积物中氮、磷主要是陆源的.沉积物中OC∶TN值的垂直变化也反映了近年来胶州湾物质来源的变化特征,即河流来沙急剧减少,沿岸倾倒垃圾不断增多,后者已经取代前者成为胶州湾主要的沉积物来源.另外,沉积物中TN和TN∶TP的垂直变化也和近年来胶州湾水体中营养盐含量的变化相一致.胶州湾不同地区氮、磷的沉积通量相差很大,湾口的沉积通量最大,而湾外的沉积通量最小;在表层沉积物中,氮的矿化速率高于磷,有机磷的矿化速率大于无机磷,但有机氮的矿化速率并不一定大于无机氮.OC、pH、Eh、Es等环境因素影响氮、磷的矿化,但在不同海区影响程度并不相同.  相似文献   

9.
南黄海沉积物中氮、磷的生物地球化学行为   总被引:11,自引:4,他引:11  
于2004年10月采集南黄海4个站位的柱状沉积物和29个站位的表层沉积物,用氧化浸取分光光度法研究了自然粒度下沉积物中的氮、磷分布特征以及控制其分布的生物地球化学机制。结果表明,多数站位随着沉积深度的增加,沉积物中氮、磷浓度趋于稳定。4个站稳定时氮浓度平均约为289μg/g,磷约为329μg/g,平均稳定浓度出现的沉积层次分别为氮>30cm,磷>22cm。氮、磷垂直分布形状的规则性与沉积速率密切相关,沉积速率越小的站位,其氮、磷垂直分布愈规则;海洋沉积物中的氮主要来源自海洋生物的代谢,而磷与陆源碎屑输入密切相关。氮与沉积物粘土含量、浮游动物生物量干重有明显的正相关关系。海水中浮游动物干重每增加1mg/m3,则沉积物中氮浓度增加5.64μmol/g,磷不存在这样的关系。沉积物中氮的早期成岩速率远高于磷,在沉积物海水界面附近氮约为磷的7.4倍。海水浮游生物生物量与沉积物中氮的早期成岩类型密切相关,在所研究的2004年秋季海水中,浮游动物生物量干重19mg/m3是沉积物中氮早期成岩类型转变的界限值,小于这一界限值,水体中的氮趋向于向沉积物中凝聚;大于19mg/m3,则沉积物中的氮趋向于向水体释放。  相似文献   

10.
太湖ZS孔沉积记录的近50年来营养盐沉积通量变化   总被引:1,自引:0,他引:1  
通过对太湖北部竺山湾沉积物(ZS孔)钻探,测试ZS孔沉积物~(210)Pb、~(137)Cs、总有机碳(TOC)、总氮(TN)、总磷(TP)和粒度,研究近代太湖湖泊沉积物营养盐沉积通量变化。结果表明,ZS孔中~(137)Cs比活度较低(<15 Bq/kg),利用ZS孔~(137)Cs 1963年时标得到平均沉积速率为0.32 cm/a,与应用~(210)Pb的CRS模式获得的近50年来平均沉积速率一致,利用~(210)Pb的CRS模式计算出近50年来沉积通量为0.13~0.75 g·cm~(-2)·a~(-1)),结合沉积物中的TOC、TN和TP浓度,获取了营养盐沉积通量在垂向上的变化,结果显示,自20世纪80年代初以来,营养盐沉积通量明显增加,谊变化趋势与20世纪60年代以来的观测资料相符,有机磷的影响和人类活动被认为是造成近20年来TP沉积通量增加的原因。  相似文献   

11.
辽东湾是渤海的三大湾之一,进入该区的主要河流有辽河、大凌河、滦河和六股河等,水深一般在10.2-35m之间,沉积环境很复杂。测定、研究该区现代沉积速率和沉积通量对沉积动力学的研究和海洋油气开发工程都有意义。 近年来,国内外学者在利用210Pb法测定江河、湖泊和海洋陆架的沉积速率等方面取得了有价值的成果。到目前为止,除在渤海锦州湾测得两个岩芯的沉积速率外(夏明等,1983),关于辽东湾大面积海域的现代沉积速率和沉积通量还未见报道。本文介绍了该区现代沉积速率和沉积通量,利用210Pb的垂直剖面,探讨该区近百年来的沉积作用和沉积环境,划分了沉积强度区。  相似文献   

12.
从研究胶州湾沉积物中生源硅入手,利用对比分析对其限制的原因进行了探讨.研究表明,相对于邻近的黄海和渤海沉积物,胶州湾沉积物中的生源硅含量较高,在湾内外的三个站表层沉积物中生源硅的含量分别为1.58%、1.44%、1.48%,在整个柱状样中的平均含量分别为1.54%、1.48%和1.39%,属于高生源硅含量区.沉积物中BSi∶TN远远大于1,BSi∶TP也远远大于16,与水体中Si∶TN〈1,BSi∶16P〈1相反,同时沉积物中的OC∶BSi值远远小于Redfield比值(106∶16),表明沉积物中有机质的分解速率远大于BSi的分解速率,生源硅分解的较慢.研究还发现,生源硅和有机碳的含量有明显的正相关关系,二者共同作用的结果是造成相当大的一部分BSi被埋藏,不能参与再循环,从而水体中的硅被永久地“清除”,造成水体硅的缺乏,这可能是造成胶州湾浮游植物生长硅限制的根本原因.湾外BSi较湾内低的主要原因是湾外的沉积物因其有机质含量低,且沉积物的颗粒粗而造成BSi的溶解速率比湾内的高.根据沉积物中生源硅的沉积通量和初级生产力的对比可推知,由硅藻形成的生源硅在沉降过程中平均只有15.5%被分解重新进入水体,其余的84.5%可被埋葬而形成沉积物.而胶州湾沉积物中的硅通过沉积物-海水界面返回到水体中的速率也小于生源硅的沉积速率,这进一步证明了海水中的硅不断向沉积物迁移,导致水体中硅含量持续的低水平,进而使Si成为浮游植物生长限制因子的主要原因.  相似文献   

13.
Deep-sea benthic ecosystems are mainly sustained by sinking organic materials that are produced in the euphotic zone. “Benthic-pelagic coupling” is the key to understanding both material cycles and benthic ecology in deep-sea environments, in particular in topographically flat open oceanic settings. However, it remains unclear whether “benthic-pelagic coupling” exists in eutrophic deep-sea environments at the ocean margins where areas of undulating and steep bottom topography are partly closely surrounded by land. Land-locked deep-sea settings may be characterized by different particle behaviors both in the water column and in relation to submarine topography. Mechanisms of particle accumulation may be different from those found in open ocean sedimentary systems. An interdisciplinary programme, “Project Sagami”, was carried out to understand seasonal carbon cycling in a eutrophic deep-sea environment (Sagami Bay) with steep bottom topography along the western margin of the Pacific, off central Japan. We collected data from ocean color photographs obtained using a sea observation satellite, surface water samples, hydrographic casts with turbidity sensor, sediment trap moorings and multiple core samplings at a permanent station in the central part of Sagami Bay between 1997 and 1998. Bottom nepheloid layers were also observed in video images recorded at a real-time, sea-floor observatory off Hatsushima in Sagami Bay. Distinct spring blooms were observed during mid-February through May in 1997. Mass flux deposited in sediment traps did not show a distinct spring bloom signal because of the influence of resuspended materials. However, dense clouds of suspended particles were observed only in the spring in the benthic nepheloid layer. This phenomenon corresponds well to the increased deposition of phytodetritus after the spring bloom. A phytodetrital layer started to form on the sediment surface about two weeks after the start of the spring bloom. Chlorophyll-a was detected in the top 2 cm of the sediment only when a phytodetritus layer was present. Protozoan and metazoan meiobenthos increased in density after phytodetritus deposition. Thus, “benthic-pelagic coupling” was certainly observed even in a marginal ocean environment with undulated bottom topography. Seasonal changes in features of the sediment-water interface were also documented.  相似文献   

14.
Porewater nutrient dynamics during emersion and immersion were investigated during different seasons in a eutrophic intertidal sandflat of Tokyo Bay, Japan, to elucidate the role of emersion and immersion in solute transport and microbial processes. The water content in the surface sediment did not change significantly following emersion, suggesting that advective solute transport caused by water table fluctuation was negligible. The rate of change in nitrate concentration in the top 10 mm of sediments ranged from −6.6 to 4.8 μmol N l−1 bulk sed. h−1 during the whole period of emersion. Steep nutrient concentration gradients in the surface sediment generated diffusive flux of nutrients directed downwards into deeper sediments, which greatly contributed to the observed rates of change in porewater nutrient concentration for several cases. Microbial nitrate reduction within the subsurface sediment appeared to be strongly supported by the downward diffusive flux of nitrate from the surface sediment. The stimulation of estimated nitrate production rate in the subsurface layer in proportion to the emersion time indicates that oxygenation due to emersion caused changes in the sediment redox environment and affected the nitrification and/or nitrate reduction rates. The nitrate and soluble reactive phosphorus pools in the top 10 mm of sediment decreased markedly during immersion (up to 68% for nitrate and up to 44% for soluble reactive phosphorus), however, this result could not be solely explained by molecular diffusion.  相似文献   

15.
Temporal variations of sinking particle flux, together with their organic chemical properties, were monitored in the deep basin of Sagami Bay, Japan, using sediment traps with very high time resolutions from March 1997 to August 1998. At a height of 350 m above the bottom (about 1200 m water depth), the averaged total mass flux was more than 1000 mg/m2/day, which is about 10 times higher than those obtained for open ocean regions near Sagami Bay. While large amounts of phytodetritus, derived from phytoplankton blooms in the surface water, were transported downward in spring, the following extraordinary patterns in the temporal variability of sinking particle flux were also observed: (1) A sustained large flux of sinking particles during low productive periods from summer to winter in 1997. (2) An episodic increase of sinking particle flux in June 1998. (3) A difference in the temporal variability of sinking particles between the spring bloom periods of 1997 and 1998. The content of total organic carbon (TOC) and the stable carbon isotopic ratio (δ13C) of TOC demonstrated that the large fluxes observed in (1) and (2) could be attributed to the resuspension of phytodetritus deposited on the sea floor during the spring bloom period, and the abrupt erosion of surface sediment on the continental slope, respectively. The concentration of suspended particles in the deep water column affect the apparent flux of sinking particles. At the same time, sinking particles exported from surface waters during the spring bloom both decrease and increase suspended particle concentration through scavenging and rebound processes, respectively. Finally, the apparent difference in sinking particle flux between 1997 and 1998, (3), could be explained by differences in the extent of the scavenging process, which depend on the flux and quality of exported particles from the surface waters.  相似文献   

16.
Phosphorus is a key element and plays an important role in global biogeochemical cycles. The evolution of sedimentary environment is also influenced by phosphorus concentrations and fractions as well as phosphate sorption characteristics of the marine sediments. The geochemical characteristics of phosphorus and their environmental records were presented in Jiaozhou Bay sediments. Profiles of different forms of phosphorus were measured as well as the roles and vertical distributions of phosphorus forms in response to sedimentary environment changes were investigated. The results showed that inorganic phosphorus (IP) was the major fraction of total phosphorus (TP); phosphorus which is bound to calcium, iron and occluded phosphorus, as well as the exchangeable phosphorus were the main forms of IP, especially calcium-phosphorus, including detrital carbonate-bound phosphorus (Det-P) and authigenic apatite-bound phosphorus (ACa-P), are the uppermost constituent of IP in Jiaozhou Bay sediments. Moreover, the lead-210 chronology technology was employed to estimate how much phosphorus was buried ultimately in sediments. And the research showed that the impacts of human activities have increased remarkably in recent years especially between the 1980s and 2000. According to research, the development of Jiaozhou Bay environment in the past hundred years can be divided into three stages: (1) before the 1980s characterized by the relatively low sedimentation rate, weak land-derived phosphorus inputs and low anthropogenic impacts; (2) from the 1980s to around 2000, accelerating in the 1990s, during which high sedimentation rates, high phosphorus abundance and burial fluxes due to the severe human activities impacted on the whole environmental system; (3) after 2000, the period of the improvement of environment, the whole system has been improved including the decreasing sedimentation rates, concentration and the burial fluxes of phosphorus.  相似文献   

17.
Historical sediment nutrient concentrations and heavy metal distributions were studied in four estuaries in the Gulf of Finland, Baltic Sea to examine the response of these estuaries to temporal changes in human activities. Cores were collected using a 1-m Mackereth corer and dated using 210Pb and 137Cs. The cores were analyzed for total carbon (TC), total nitrogen (TN), total phosphorus (TP), organic phosphorus (OP), inorganic phosphorus (IP), biogenic silica (BSi), loss-on-ignition (LOI), Cu, Zn, Al, Fe, Mn, K, Ca, Mg and Na. Principal component analysis (PCA) was used to summarize the trends in the chemical variables and to compare the trends at the different sites. Applying the 1986 137Cs date as a reference point, 210Pb chronologies were constructed for the sites using either the CRS model or a composite model (using both CIC and CRS). Significant increases were observed in sedimentation rates, TP and TN concentrations in all of the cores. Copper showed clear increases from 1850 towards present at all sites. Furthermore, redundancy analysis (RDA) was used to correlate environmental variables (catchment land use, catchment size, estuary surface area, depth and lake percentage) to sediment geochemistry. Based on redundancy analysis (RDA), the percentage of agriculture in the catchment was the most important factor affecting the sediment accumulation rate. Urban land-use types and industry correlate well with sediment Cu and Ca concentrations. Forest areas were related to high sediment BSi concentrations. Catchment land use was the most significant factor affecting sediment geochemical composition and sediment accumulation rates in these coastal embayments. Our results demonstrate that the coastal estuaries of the Gulf of Finland respond to the increased nutrient loading with the increased sedimentation and nutrient accumulation rates.  相似文献   

18.
The often-rapid deposition of phytoplankton to sediments at the end of the spring phytoplankton bloom is an important component of benthic–pelagic coupling in temperate and high latitude estuaries and other aquatic systems. However, quantifying the flux is difficult, particularly in spatially heterogeneous environments. Surficial sediment chlorophyll-a, which can be measured quickly at many locations, has been used effectively by previous studies as an indicator of phytoplankton deposition to estuarine sediments. In this study, surficial sediment chlorophyll-a was quantified in late spring at 20–50 locations throughout Chesapeake Bay for 8 years (1993–2000). A model was developed to estimate chlorophyll-a deposition to sediments using these measurements, while accounting for chlorophyll-a degradation during the time between deposition and sampling. Carbon flux was derived from these estimates via C:chl-a = 75.Bay-wide, the accumulation of chlorophyll-a on sediments by late spring averaged 171 mg m−2, from which the chlorophyll-a and carbon sinking fluxes, respectively, were estimated to be 353 mg m−2 and 26.5 gC m−2. These deposition estimates were ∼50% of estimates based on a sediment trap study in the mid-Bay. During 1993–2000, the highest average chlorophyll-a flux was in the mid-Bay (248 mg m−2), while the lowest was in the lower Bay (191 mg m−2). Winter–spring average river flow was positively correlated with phytoplankton biomass in the lower Bay water column, while phytoplankton biomass in that same region of the Bay was correlated with increased chlorophyll-a deposition to sediments. Responses in other regions of the Bay were less clear and suggested that the concept that nutrient enrichment in high flow years leads to greater phytoplankton deposition to sediments may be an oversimplification. A comparison of the carbon flux associated with the deposition of the spring bloom with annual benthic carbon budgets indicated that the spring bloom did not contribute a disproportionately large fraction of annual carbon inputs to Chesapeake Bay sediments. Regional patterns in chlorophyll-a deposition did not correspond with the strong regional patterns that have been found for plankton net community metabolism during spring.  相似文献   

19.
浮游植物是水生生态系统的基础生产者, 其群落结构直接影响到生态系统的健康和安全。河流输入是人类活动影响大亚湾水体环境最重要的途径之一, 淡水输入改变了水体温度、盐度、浊度和营养盐等环境因子, 对浮游植物群落结构产生影响。文章调查研究了2015年河流输入最强的夏季丰水期大亚湾的水体环境因子和浮游植物群落结构, 分析了在较强河流输入影响下浮游植物群落结构的动态变化及其对环境因子的响应。结果发现, 夏季大亚湾淡澳河的输入使湾顶淡澳河口区域形成层化的低盐、高温、低透明度、高营养盐的水体, 湾中部表层水体则受一定强度河流羽流影响, 而湾口和湾中部底层水体主要受外海水影响。淡澳河淡水输入是夏季大亚湾外源性氮、磷营养盐的主要来源, 而硅酸盐除河流输入外, 外海水也输入较多的营养盐使得底层水体硅酸盐浓度较高。夏季大亚湾水体营养比例失衡较严重, 溶解无机磷是限制浮游植物生长的重要因子。硅藻是大亚湾夏季浮游植物的优势类群, 调查发现3种优势种[极小海链藻(Thalassiosira minima)、中肋骨条藻(Skeletonema costatum)和圆海链藻(Thalassiosira rotula)]均为硅藻。通过聚类分析, 可将大亚湾夏季浮游植物群落主要分为3种类型, 分别为: 浮游植物丰度较大的极小海链藻藻华暴发的群落, 位于淡澳河口, 受河流输入影响明显; 中肋骨条藻占据优势的群落, 分布在受一定强度的河流及其羽流影响的湾顶和湾中部区域; 浮游植物丰度较低的群落, 无明显优势种, 主要分布在湾口海水影响区域。淡澳河口的水体环境有利于小型链状硅藻极小海链藻的快速繁殖并暴发了藻华, 藻华发生时的海水环境条件为: 温度30~31°C, 盐度17‰~31‰, 水体透明度0.45~1.2m。硅藻对不同营养盐利用的差异以及随后的生物碎屑和颗粒沉降过程导致藻华发生区域Si∶N值略降低, N∶P值显著升高。河流输入影响下, 单一物种大量生长使得浮游植物群落种类组成丰度分布极不均匀, 从而导致淡澳河口浮游植物群落的种类多样性和均匀度指数降低, 种类多样性和均匀度指数均从淡澳河口向湾口逐渐增大。  相似文献   

20.
1 IntroductionNitrogen and phosphorus together constitute thematerial basis used by phytoplankton for photosyn-thesis; however, if the ratio of nitrogen atomic massto phosphorus atomic mass in an aquatic environmentmarkedly deviates, whether above or bell…  相似文献   

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