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1.
2010年5月,在湛江湾海域设立10个站点对大型底栖生物进行调查,分析湛江湾大型底栖生物的种类组成、生物量、栖息密度和生物多样性特征,并通过聚类(CLUSTER)和MDS排序对大型底栖生物群落进行划分。结果表明,调查海域共有底栖生物共7门112种,环节动物门、软体动物门和节肢动物门为湛江湾大型底栖生物的主要类群。生物量分布范围为0.93~98.20 g.m-2,其中软体动物门的平均生物量最高值。栖息密度分布范围为6.11~24.80 ind.m-2,其中以环节动物门(24.08 ind.m-2)和星虫动物门(22.22 ind.m-2)最高。该海域大型底栖生物群落物种较为丰富,但多样性差。根据Bray-Curtis相似性系数聚类分析和多维尺度排序分析结果,可将湛江湾大型底栖动物划分为4个群落。丰度生物量曲线(ABC)分析结果,湛江湾大型底栖生物受到严重的环境污染或者扰动,群落结构不稳定。与其他海域大型底栖生物种类数、生物量和丰度的比较分析结果,湛江湾的生物量和丰度偏低。  相似文献   

2.
调查北仑河口北岸竹山岛沿岸3条潮间带断面大型底栖动物的生态特征,共采集到大型底栖动物63种,其中软体动物29种,甲壳动物18种,多毛类12种,其他类4种。优势种为珠带拟蟹守螺(Cerithidea cingulata)、长腕和尚蟹(Mictyris longicarpus)、智利巢沙蚕(Diopatra chilienis)和艾氏活额寄居蟹(Diogenes penicillatus)。平均生物量为155.06 g/m2,平均栖息密度为343.8 ind/m2。香农-维纳多样性指数平均值为2.27,种类均匀度指数平均值为0.48,丰富度指数平均值为3.53。ABC曲线分析结果表明,3条断面的潮间带大型底栖动物均受到了中等程度的扰动。Ⅰ~Ⅲ断面的大型底栖动物污染指数(MPI值)分别为2.61、0.16和-17.08。该海域的潮间带环境受到了一定程度的人为活动干扰。  相似文献   

3.
【目的】评价北京北运河水系河流生态系统状态,分析底栖动物群落与环境因子之间的相关性。【方法】2015年6月对北京地区夏季北运河水系33个样点的大型底栖动物群落结构和水环境理化因子特征进行野外调查,基于香浓维纳指数、均匀度指数、底栖动物功能摄食类群的划分以及典范对应分析等方法,分析底栖动物群落组成和空间结构特征。【结果】共鉴定出底栖动物3门23种,各采样点位平均密度为1037.35 ind/L,香浓维纳指数平均值为0.88,均匀度平均值为0.41。全区大型底栖动物共划分成5类功能摄食类群,其中刮食者物种数占绝对优势,滤食者密度占绝对优势。典范对应分析表明,夏季影响北运河底栖动物功能摄食类群的主要环境因子是水温和p H。【结论】北运河水系底栖动物群落香浓维纳指数较低,水体污染较为严重。  相似文献   

4.
流沙湾的底栖大型海藻调查   总被引:1,自引:0,他引:1  
2008年3月~2009年1月调查了流沙湾潮间带及湾内(109°55'~109°59'E,20?22'~20°28'N)底栖大型海藻资源,定性、定量分析该海湾底栖大型海藻种类、生态分布、区系性质、群落结构及生物量的季节变化规律。共采集底栖大型海藻3门10目17科19属32种,其中红藻门4目9科9属15种,绿藻门4目6科7属14种,褐藻门2目2科3属3种,以亚热带藻种占绝对优势,达59.4%,温带成分21.9%,热带成分18.7%。采样海藻具印度-西太平洋海洋植物区系中国-日本亚热带海洋植物亚区特点。调查区域内底栖大型海藻群落组成的季节变化明显。  相似文献   

5.
尖紫蛤分布于我国东南沿海,在广东鉴江它的栖息密度为3.5~7.0个/m~2。生活在比重1.0006~1.0007,水温19.2~30.8℃,pH 值6.9~7.2.流速0.243~0.704m/s,透明度为0.38~0.60m 的咸淡水交汇处,从低潮区至水深3m 的沙滩均有分布,栖息深度一般为0.30~0.50m,最深可达0.70m。食料以底栖硅藻和有机碎屑为主。雌雄异体,繁殖期在9~10月,一周龄个体平均大小为37.5mm×16.5mm×8.2mm。在鉴江尖紫蛤的年产量约5万kg。  相似文献   

6.
对凡纳滨对虾(Litopenaeus vannamei)与点带石斑鱼(Epinephelus malabaricus)进行90 d的混养试验,研究点带石斑鱼混养密度、规格对凡纳滨对虾生长、成活率和产量的影响。结果表明,点带石斑鱼混养密度、规格均对凡纳滨对虾生长、成活率和平均产量的影响有统计学意义(P0.05)。在混养密度相同的条件下,混养小规格点带石斑鱼的凡纳滨对虾成活率比混养大规格点带石斑鱼提高15.1%~23.2%,平均产量比混养大规格点带石斑鱼提高19.0%~40.6%。随着点带石斑鱼混养密度增加,凡纳滨对虾成活率和平均产量呈下降趋势。小规格点带石斑鱼混养密度分别为0.4尾·m-2时,凡纳滨对虾成活率和平均产量最高,分别为66.25%%±7.24%、(1 181.0±101.8)kg,较单一养殖凡纳滨对虾成活率提高5.46%,平均产量提高16.2%;大规格点带石斑鱼混养密度为0.2尾·m-2时,凡纳滨对虾成活率和平均产量最高,分别为(52.04±6.11)%、(959.8±89.1)kg,但较单一养殖凡纳滨对虾成活率下降8.75%,平均产量下降5.88%  相似文献   

7.
施氏獭蛤的生态观察   总被引:3,自引:1,他引:2  
施氏獭蛤(LutrariasieboldiiReeve)属暖水性贝类,分布于热带—亚热带海区,在我国东海和南海都有。据在广西和海南沿海的调查,它生活在潮下带至水深78m的沙或沙泥底质中。营埋栖生活,深度达21cm。生活海区的水温为8~32℃,盐度11 .50~33 00,pH值8. 2~8 .4,透明度4~7m。食物以底栖硅藻和有机碎屑为主。繁殖期在5~9月。其肉供食用,是较珍贵的食品,可以发展人工增养殖。  相似文献   

8.
紫蛤生态的观察   总被引:1,自引:1,他引:0  
对紫蛤Soletellina violacea Lamarck的生活环境、生活习性与分布等进行了观察,并研究了相对密度对紫蛤成活率的影响。结果表明,紫蛤生活在中低潮区至潮下带15~30cm的细沙底,自然分布海区的水温变化范围为9~33℃,pH值为6.9~8.6,海水相对密度的适宜范围为1.004~1.029,最适相对密度范围为1.005~1.027,以有机碎屑和硅藻为主要食料。雌雄异体,一年有二次繁殖期。鲜出肉率为59.99%,24h 60℃烘干后的干出肉率为11.75%。  相似文献   

9.
施氏獭蛤(Lutraria sieboldii Reeve)属暖水性贝类,分布于热带-亚热带海区,在我国东海和南海都有。据在广西和海南沿海的调查,它生活在潮下带至水深78m的沙或沙泥底质中。营埋栖生活,深度达21cm。生活海区的水温为8~32℃,盐度11.50~33.00,pH值8.2~8.4,透明度4~7m。食物以底栖硅藻和有机碎屑为主。繁殖期在5~9月。其肉供食用,是较珍贵的食品,可以发展人工增养殖。  相似文献   

10.
流沙湾贝类资源调查   总被引:2,自引:0,他引:2  
对流沙湾潮间带及湾内浅水地带(20°22'103″~20°28'526″N,109°55'341″~109°59'185″E)的贝类资源进行周年调查,定性、定量分析该海湾贝类种类、生态分布、区系性质、群落结构及生物量的季节变化规律。结果表明:在流沙湾采集到的贝类有3纲7亚纲13目42科79属104种,其中帘蛤科24种,牡蛎科、贻贝科各6种,汇螺科和蜒螺科各5种,其他各科均小于5种;贝类组成表现出温带性质,温带种类占绝对优势,该海湾贝类区系属印度—西太平洋的中国-日本亚区,生物量的季节变化明显。  相似文献   

11.
Riverine carbon flux is an important component of the global carbon cycle. The spatial and temporal variations of organic and inorganic carbon were examined during both dry and wet seasons in the Yellow River estuary. Concentrations of dissolved organic carbon (DOC) and dissolved inorganic carbon (DIC) in the Yellow River during dry seasons were higher than those during wet seasons. The effective concentrations of DOC (CDOC*) were higher than the observed DOC at zero salinity. This input of DOC in the Yellow River estuary was due to sediment desorption processes in low salinity regions. In contrast to DOC, the effective concentrations of DIC were 10% lower than the DIC measured at freshwater end, and the loss of DIC was caused by CaCO3 precipitation in low salinity region. Particulate organic carbon (POC) and particulate inorganic carbon (PIC) contents of the particles stabilized to constant values (0.5%±0.05% and 1.8%±0.2%, respectively) within the turbidity maximum zone (TMZ) and showed no noticeable seasonal variations. A rapid drop of PIC and rise of POC occurred simultaneously outside the TMZ due to an intense dilution of riverine inorganic-rich particles being transported into a pool of aquatic organic-poor particles outside the TMZ. Annually, the Yellow River transported 6.95×105 t of DIC, 0.64×105 t of DOC, 78.58×105 t of PIC and 2.29×105 t of POC to the sea.  相似文献   

12.
Tidal rivers are intrinsically complex because tidal propagation is influenced by river discharge. This study aims to examine the seasonal variation of tidal prism and energy variance in the tidal river of the Changjiang(Yangtze) River estuary in China. In order to quantify the behaviour of river and tide,we use numerical modelling that has been validated using measured data. We conduct our analysis by quantifying the discharge and energy variance in separate components for both the river and the tide,during wet and dry seasons. We note various definitions of tidal prism and explore the difference between tidal discharge on the flood and ebb and tidal storage volume. The results show that the river discharge attenuates the tidal motion and reduces the tidal flood discharge but the tidal storage volume is approximately constant with different riverine discharge since part of the fresh water discharge is intercepted and captured in the estuary due to the backwater effect. It appears that the tidal discharge adjusts according to the variation of river discharge to keep a constant tidal storage volume. An analysis of the hydraulics shows that the transition from tidal dominance(at the mouth) to river dominance(upstream) depends on the location of tidal current reversal which varies from wet season to dry season. Duringthe wet season,the Changjiang River estuary is totally dominated by energy from fresh water discharge.  相似文献   

13.
Macrobenthic community in the Xiaoqing River Estuary in Laizhou Bay, China   总被引:1,自引:0,他引:1  
The macrobenthic community of the Xiaoqing River Estuary and the adjacent sea waters was investigated in May and November 2008, August 2009, and May and September 2010, respectively. A total of 95 species of macrobenthos were identified in the five cruises and most of them were polychaetes (46.39%), mollusks (28.86%) and crustaceans (20.62%). The Shannon-Wiener index of macrobenthos was lower than 2 in 67% sites. Along the stream channel, estuary and the coastal waters, the species of polychaetes reduced gradually, while the abundance increased at first and then decreased. The abundance was the biggest at regions with salinity of 5–20 in the estuary. The species and abundance of mollusks and crustaceans increased gradually. As for seasonal distribution, the species, abundance and biomass were higher in spring and lower in summer and autumn. Contemporaneously compared with Laizhou Bay and Yellow River Estuary, the species of macrobenthos appeared in the Xiaoqing River Estuary were much less, while the percentage of polychaetes was higher. Abundance and biomass were higher in Xiaoqing River estuary, then consequently followed by Laizhou Bay and Yellow River Estuary. The dominant species in Xiaoqing River Estuary was polychaete, and Layzhou Bay mollusk. The community structure characteristics of macrobenthos in the Xiaoqing River Estuary revealed a significant pollution status in this region.  相似文献   

14.
黄河入海口水域春季浮游动物群落特征研究   总被引:3,自引:0,他引:3  
对2008、2009年黄河入海口水域春季浮游动物进行调查,采用香农-威纳多样性指数(Shannon-Weiner index)、Pielou均匀度指数和McNaugton优势度指数对其浮游动物群落特征进行分析。结果表明:浮游动物鉴定出6大类44种,以甲壳动物种类最多;2008年5月黄河入海口水域浮游动物多样性指数范围为0.92~2.65,均匀度变化范围为0.25~0.66;2009年5月浮游动物多样性指数范围为0.76~2.87,均匀度变化范围为0.21~0.70。黄河入海口水域浮游动物时空分布较不均匀,群落特征(包括丰度、多样性指数、均匀度和优势度等)在同一时期同一水域各采样点间差异较大,同一采样点不同年份差异显著。  相似文献   

15.
A Lagrangian tracer model is set up for Hangzhou Bay based on Coupled Hydrodynamical Ecological model for Regional Shelf Sea (COHERENS). The study area is divided into eight subdomains to identify the dominant physical processes, and the studied periods are March (the dry season) and July (the wet season). The model performance has been first verified by sea-surface elevation and tidal current observations at several stations. Eight tracer experiments are designed and Lagrangian particle tracking is simulated to examine the impact of physical processes (tide, wind and river runoff) on the transport of passive tracer released within the surface layer. Numerical simulations and analysis indicate that: (1) wind does not change the tracer distribution after 30 days except for those released from the south area of the bay during the wet season; (2) the tide and the Qiantang River runoff are important for particle transport in the head area of the bay; (3) the Changjiang River runoff affects the tracer transport at the mouth of the bay, and its impact is smaller in the dry season than in the wet season. Supported by the Natural Science Foundation of China (No.40576080); National High Technology Research and Development Program of China (863 Program, No. 2007AA12Z182)  相似文献   

16.
黄河三角洲高效生态经济区是具有国家战略地位的重要生态经济区,该地区的海岸带地处海陆交接地带,属于陆缘海海岸带,生态环境脆弱,区域海岸带地形地貌系统性阐述甚少。在开展该区域生态地质环境调查的基础上,结合实际调查情况及以往文献的研读,对该地区海岸带地形地貌、岸滩地貌类型及特征进行了系统性归纳总结。整个黄河三角洲高效生态经济区的海岸带地貌分黄河三角洲粉砂淤泥质海岸、莱州湾南岸潍北平原区粉砂淤泥质海岸、莱州砂质海岸3个部分。岸滩类型分为黄河三角洲岸段冲淤平衡潮滩、侵蚀潮滩、淤积潮滩3种及莱州湾岸段侵蚀潮滩及侵蚀砂质海滩2种。  相似文献   

17.
Macrobenthos samples were collected from the Yellow and East China Seas in four seasons during 2011 to 2012. The seasonal distribution of macrobenthos and its relationship with environmental factors were analyzed. A total of 562 macrobenthic species were identified, with polychaetes and mollusks accounting for 67% of the total number of species. A similarity percentage(SIMPER) analysis showed that the dominant species were bivalve mollusks in the Yellow Sea and small-sized polychaetes in the East China Sea. A two-factor analysis of variance showed significant seasonal variations in species number, density and diversity index, and significant regional differences of biomass and density. Two-factor community similarity analysis also showed significant seasonal and regional differences in macrobenthic communities. Canonical correspondence analysis indicated that the main environmental factors af fecting the macrobenthic communities were water depth, temperature, dissolved oxygen, and inorganic nitrogen. The results demonstrate significant regional differences and seasonal variations in macrobenthos in the two seas. Sediment properties and water mass characteristics are speculated to be the causes of regional differences.  相似文献   

18.
Shoot density, standing crop (above- and below-ground biomass) and habitat of salt marsh grass Porteresia coarctata were investigated along the coast of Bakkhali estuary, Cox’s Bazar, Bangladesh from January to December 2006. Shoot density of P. coarctata was influenced by season and was found to be higher (>2 500 shoots/m 2 ) in post-monsoon and minimal in monsoon season; plants were particularly active in vegetative propagation during pre-monsoon. Above-ground biomass was greater along the protected coast compared with the exposed one in this estuary. Below-ground biomass was higher (7.75-269.53 g DW/m 2 ) than that above ground (2.20-114.75 g DW/m 2 ). Standing crops of P. coarctata showed a negative relationship (R=-0.77; P<0.05) with sedimentation rate, while seasonal activity influenced sedimentation. The recorded sedimentation rate was lower (6.09 mg/(cm 2 ·d)) in pre-monsoon and highest (14.55 mg/(cm 2 ·d)) in monsoon season. The mean value of pore water salinity was higher (34.25±5.05) during post-monsoon and lowest (18.0±3.71) in monsoon season. The soil was sandy clay in this P. coarctata bed; it consisted of 86% sand, 13% clay and 1% silt. Soil organic matter dropped during the monsoon season (0.78%-0.67%) and was highest ((2.17±1.42)%-(2.3±1.47)%) during post-monsoon, probably owing to accumulation of decomposed peat on the marsh surface. The mean pore water NH 4 -N concentration ranged from 2.44±1.65 to 3.33±1.82 μg/L, with a minimum air temperature of 22.09°C in post-monsoon and a maximum of 31.16°C in pre-monsoon. Variations of physico-chemical parameters in the soil, water, and climate governed biological parameters of P. coarctata in the Bakkhali estuary, and were comparable with estuarine environments elsewhere.  相似文献   

19.
INTRODUCTIONTidalchannelsareimportantgeomorphologicunitsalongsiltcoasts.Theyhaveanevidentfunc tionfortidalflatbecausetheyareassociatedwithitsrapidbayheadwarderosionandlateralswing ing.Thetidalchannelsdevelopalongthecoastandplayanimportantroleinseaandlandinterac tion .Manyscientistsresearchedthetidalchannels (Bayliss Smith ,1 978;Shao ,1 988;Zhang ,1 995) .TheScientificandTechnicalCommitteeofShandongProvince (1 991 )investigatedthecoastoftheHuanghe (Yellow)RiverDeltaandresearchedtheti…  相似文献   

20.
Stochastic characteristics of the Benue River streamflow process are examined under conditions of data austerity. The streamflow process is investigated for trend, non-stationarity and seasonality for a time period of 26 years. Results of trend analyses with Mann-Kendall test show that there is no trend in the annual mean discharges. Monthly flow series examined with seasonal Kendall test indicate the presence of positive change in the trend for some months, especially the months of August, January, and February. For the stationarity test, daily and monthly flow series appear to be stationary whereas at 1%, 5%, and 10% significant levels, the stationarity alternative hypothesis is rejected for the annual flow series. Though monthly flow appears to be stationary going by this test, because of high seasonality, it could be said to exhibit periodic stationarity based on the seasonality analysis. The following conclusions are drawn: (1) There is seasonality in both the mean and variance with unimodal distribution. (2) Days with high mean also have high variance. (3) Skewness coefficients for the months within the dry season period are greater than those of the wet season period, and seasonal autocorrelations for streamflow during dry season are generally larger than those of the wet season. Precisely, they are significantly different for most of the months. (4) The autocorrelation functions estimated "over time" are greater in the absolute value for data that have not been deseasonalised but were initially normalised by logarithmic transformation only, while autocorrelation functions for i = 1, 2 365 estimated "over realisations" have their coefficients significantly different from other coefficients.  相似文献   

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