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1.
2012年9月对辽东湾西部倾倒区海域的大型底栖动物进行了调查。调查海域共发现底栖动物54种,包括多毛类35种,甲壳类10种,软体动物6种,棘皮动物1种,其他2种。底栖动物丰度平均为1 140.8个/m2,生物量为11.02 g/m2,多样性指数平均为3.39。丰度、生物量比较结果显示,调查海域大型底栖动物群落受到中度干扰,调查海域底栖动物群落可分为以对照组为主的群落和倾倒区群落。海洋倾倒导致倾倒区内大型底栖动物的种类数量、丰度、生物量和多样性水平下降,群落特征种受倾倒的影响较明显。底栖动物与重金属含量之间无显著相关关系,掩埋是辽东湾西部倾倒活动主要的影响方式。  相似文献   

2.
胶州湾大型底栖动物的丰度、生物量和生产量研究   总被引:3,自引:1,他引:2  
为了研究胶州湾大型底栖动物的丰度、生物量和生产量,于2002年3月、6月、8月和12月,在胶州湾北部软底区、大沽河口、黄岛养殖区及养殖区邻域选取4个站位进行采样,对大型底栖动物进行了定量研究。共采到大型底栖动物138种,总平均丰度、平均生物量(湿质量)和年生产量(有机碳)分别为1 719个/m2,27 g/m2,2.2 g/(m2.a),初步估算,胶州湾大型底栖动物的总次级生产量为2.8万t/a。与渤海和南黄海大型底栖动物的丰度和生物量比较,丰度和生物量均低于这两个海域,但是胶州湾大型底栖动物的总次级生产量高于渤海。本研究对于了解胶州湾大型底栖动物现状及湾内养殖对大型底栖动物的影响具有重要的意义。  相似文献   

3.
2009年10月在辽东湾西部海域进行了14个站位的大型底栖动物调查,共发现大型底栖动物99种,其中多毛类44种,软体动物13种,甲壳动物39种,其他类群3种.调查海域内IRI指数排名前十位的种中,多毛类和甲壳动物各占60%和40%,其中前三位的是日本双边帽虫(Amphictene japonica)、二齿半尖额涟虫(Hemileucon bidentatus)和滩拟猛钩虾(Harpiniopsis vadiculus).调查海域内大型底栖动物的总平均丰度为2387.1个/m2,总平均生物量为11.16 g/m2,整个调查海域内大型底栖动物呈现出高丰度低生物量的现状.调查海域内大型底栖动物的香农-威纳多样性指数为0.8881~4.626,平均值为3.556;丰富度指数为1.197~5.474,平均值为3.426;均匀度指数为0.213~0.9248,平均值为0.7714.以40%的相似性尺度,取样站可被划分为5个大型底栖动物站组.通过大型底栖动物多样性分析,本文认为该海域的底栖生态状况良好.  相似文献   

4.
于2009年5月对辽东湾西部海域进行了4条断面12个站位的大型底栖动物调查。调查海域共出现大型底栖动物78种,其中多毛类37种、甲壳类24种、软体动物13种、棘皮动物2种和其他类2种(分别是腔肠动物、纽形动物)。调查海域大型底栖动物总平均丰度为1675.8ind./m2,总平均生物量为21.366g/m2。该海域大型底栖动物群落按40%相似性程度可划分为4个。调查海域大型底栖动物群落整体正常,个别站位群落受到轻度扰动。  相似文献   

5.
于2011年10月对乳山湾潮间带进行了8条断面的大型底栖动物定量调查,在调查潮间带共鉴定出大型底栖动物104种,其中多毛类45种、软体动物14种,甲壳动物37种、棘皮动物2种和其他类6种。调查潮间带大型底栖动物总平均丰度为817.22 ind/m~2,总平均生物量为14.01g/m~2。调查潮间带多样性指数在1.173~4.332,平均值为2.770。以40%相似性尺度,可将所调查潮间带站点划分为4个站组。  相似文献   

6.
2011年10月对灌河口及其入海河段中潮带进行了11个站位的大型底栖动物调查,共发现大型底栖动物10种,均为软体动物。潮间带优势种为光滑河篮蛤(Potamocorbula laevis),总平均丰度为92个/m2,总平均生物量为20.9 g/m2;入海河段优势种为中华拟蟹守螺(Cerithidea sinensis),总平均丰度为180个/m2,总平均生物量为52.5 g/m2。与邻近海域相比,大型底栖动物物种数、丰度、H’等都较低。相关性分析表明有机污染物敌敌畏、OCPs、SVOCs和重金属镉、汞、锌和总铬的浓度对生物量、丰度和H’有着显著或较大影响。研究表明,灌河沿岸4个化学工业园的排污及沿岸码头建设等对该海域产生了较大的人为扰动,已不适宜部分大型底栖动物的生存,需进行跟踪调查监测及时制定该海域生态保护、修复规划。  相似文献   

7.
文章利用2015年春季航次(5月)和夏季航次(8月)的大型底栖动物采泥调查资料,对岱山海域大型底栖动物的种类组成、丰度、生物量、优势种、多样性进行分析。主要研究结果如下:春季航次共采得大型底栖动物15种,夏季共采得大型底栖动物22种。类群涉及纽形动物、腔肠动物、环节动物多毛类、软体动物、节肢动物甲壳类、棘皮动物等。其中环节动物多毛类在两个航次中种数均为最高。岱山海域春季大型底栖动物优势种为:不倒翁虫、圆锯齿吻沙蚕、双鳃内卷齿蚕和金氏真蛇尾。夏季岱山海域大型底栖动物优势种类有:不倒翁虫、西方拟蛰虫和异足索沙蚕,其中不倒翁虫是两个调查季度月的共同优势种。岱山海域春季各站位平均丰度22ind./m~2,丰度范围为0~90ind./m~2。夏季各站位丰度范围0~165ind./m~2,平均38ind./m~2。春季各站位湿重生物量范围0~2.65g/m~2,平均0.81g/m~2。岱山海域夏季各站位湿重生物量范围0~16.25g/m~2,平均2.29g/m~2。岱山海域春季生物多样性指数(H′)在0~1.75,平均0.70;夏季生物多样性指数(H′)在0~1.75,平均0.67,季节间差异不明显。  相似文献   

8.
山东半岛宁津沿岸潮间带大型底栖动物生态学研究   总被引:1,自引:0,他引:1  
根据2009年11月至2010年8月4个季度(秋、冬、春、夏)对宁津沿岸潮间带2个断面的高潮带(SC1H与SC2H)、中潮带(SC1M与SC2M)和低潮带(SC1L与SC2L)所设6个站位的大型底栖动物生态调查资料,采用种属组成、优势度指数、物种多样性指数、丰富度指数和均匀度度指数等方法,分析了调查区域内大型底栖动物的生态特征和季节变化。结果表明:宁津沿岸潮间带共采集到大型底栖动物45种,其中甲壳动物为优势类群,共计20种;软体动物14种,环节动物多毛类9种,其他类动物2种。优势种组成方面,甲壳动物钩虾类是4个季度的绝对优势种。调查区域大型底栖动物的年平均生物量为45.09 g/m2;最高生物量出现在秋季,最低出现在春季;空间分布上,除春季外其他三个季度的生物量变化趋势均为中潮带低潮带高潮带。年平均丰度为182.67个/m2;最高丰度出现在夏季,最低出现在冬季。宁津沿岸潮间带大型底栖动物的年平均物种多样性指数H′为1.09,季节变化趋势为冬季秋季夏季春季,空间分布趋势为低潮带中潮带高潮带。与邻近潮间带文献资料相比,调查区域的大型底栖动物在物种数量、生物量和丰度、物种多样性方面均处于低值水平。  相似文献   

9.
1995年3~11月对胶州湾北部软底海域进行了 两月一次的大型底栖动物调查。调查期间,大型底栖动物总平均丰度和总平均生物量分别为 1891.3 inds./m2和41.9 g.w.w/m2。与该海域有关大型底栖动物丰度和生物量的历史 资料相比较,本研究所得到的大型底栖动物丰度值显著增加,生物量值则有较明显的下降, 初步分析了发生这些变化主要原因。丰度和生物量比较曲线表明,所研究海域底栖生物群落 处于中等干扰(即污染的影响 )状态。  相似文献   

10.
为了解长江口及邻近海域大型底栖动物生物量、丰度和次级生产力的分布情况于2004年2月、5月、8月和11月共4个航次分别在长江口40个观测站采集大型底栖动物定量样品并利用Brey的经验公式对大型底栖动物栖息丰度、生物量、次级生产力和P/B值进行了研究计算.该调查海域共采到大型底栖动物202种,其中多毛类102种,软体动物51种,甲壳类27种,棘皮动物7种,其它动物15种.大型底栖动物年平均丰度为394.7 ind/m2;年平均生物量以去灰分干重计,为2.58 g(AFDW)/m2;年平均次级生产力以去灰分干重计,为3.52 g(AFDW)/(m2*a);P/B值平均为1.53.结果表明,长江口大型底栖动物次级生产力自长江入海口向东呈递增趋势.本文分析了长江口及其邻近海域大型底栖动物优势种的组成,主要生态类群的分布特征和次级生产力分布格局与生态环境的关系.通过比较,发现长江口大型底栖动物优势种发生了较大的变化;次级生产力高于东海而低于渤海和胶州湾;P/B值高于南黄海、胶州湾和渤海,也说明了长江口大型底栖动物群落中个体小、生活史短,代谢快的种类所占的比例高于以上海域.  相似文献   

11.
In order to assess the impact of deep-sea mining on the in situ benthic life, we measured the microbial standing stock and concentration of organic nutrients in the deep-sea sediments of the Central Indian Ocean Basin in the Indian pioneer area. Sediments were collected using box core and grab samples during September 1996. The total bacterial numbers ranged from 10 10 -10 11 cells per g -1 dry weight sediment. There was a marginal decrease in the number of bacteria from surface to 30 cm depth, though the subsurface section registered a higher number than did the surface. The highest numbers were encountered at depths of 4-8 cm. The retrievable number of bacteria were two orders less in comparison with the direct total counts of bacteria. An almost homogeneous distribution of bacteria, total organic carbon, living biomass, and lipids throughout the depth of cores indicates active microbial and benthic processes in the deep sea sediments. On the other hand, a uniform distribution of total counts of bacteria, carbohydrates, and total organic carbon in all the cores indicates their stable nature and suggests that they can serve as useful parameters for long-term monitoring of the area after the benthic disturbance. Further studies on temporal variability in this region would not only verify the observed norms of distribution of these variables but would also help to understand restabilization processes after the simulated benthic disturbance.  相似文献   

12.
The interdependence between the seismo-acoustic properties of a marine sediment and its geotechnical/physical parameters has been known for many years, and it has been postulated that this should allow the extraction of geotechnical information from seismic data. Though in the literature many correlations have been published for the surficial layer, there is a lack of information for greater sediment depths. In this article, a desktop study on a synthetic seafloor model illustrates how the application of published near-surface prediction equations to subsurface sediments (up to several tens of meters burial depth) can lead to spurious predictions. To test this further, acoustic and geotechnical properties were measured on a number of sediment core samples, some of which were subjected to loading in acoustically-equipped consolidation cells (oedometers) to simulate greater burial depth conditions. For low effective pressures (representing small burial depths extending to around 10 meters subsurface), the general applicability of established relationships was confirmed: the prediction of porosity, bulk density, and mean grain size from acoustic velocity and impedance appears generally possible for the investigated sedimentary environments. As effective pressure increases through, the observed relationships deviate more and more from the established ones for the near-surface area. For the samples tested in this study, in some instances increasing pressure even resulted in decreasing velocities. There are several possible explanations for this abnormal behavior, including the presence of gas, overconsolidation, or bimodal grain size distribution. The results indicate that an appropriate depth correction must be introduced into the published prediction equations in order to obtain reliable estimates of physical sediment properties for greater subsurface depths.  相似文献   

13.
This article reviews information recently available from existing marine and coastal mining for responses to environmental issues affecting marine mining at different depths. It is particularly but not exclusively concerned with those issues affecting seabed biodiversity impact and recovery. Much information has been gathered in the past 10 years from shallow mining operations for construction aggregate, diamonds, and gold, from coastal mines discharging tailings to shallow and deep water, and from experimental deep mining tests. The responses to issues identified are summarized in a series of eight tables intended to facilitate site-specific consideration. Since impacts can spread widely in the surface mixing layer SML, and can affect the biologically productive euphotic zone, the main issues considered arise from the depth of mining relative to the SML of the sea. Where mining is below the SML, the issue is whether it is environmentally better to bring the extraction products to the surface vessel for processing (and waste discharge), or to process the extraction products as much as possible on the seabed. Responses to the issues need to be sitespecific, and dependent on adequate preoperational environmental impact and recovery prediction. For deep tailings disposal from a surface vessel, there are four important environmental unknowns: (1) the possible growth of "marine snow" (bacterial flocs) utilizing the enormous quantities of fine tailings particles (hundreds or thousands of metric tons per day) as nuclei for growth, (2) the possibility that local keystone plankton and nekton species may migrate diurnally down to and beyond the depth of deep discharge and hence be subjected to tailings impact at depth, (3) the burrow-up capability of deep benthos and their ability to survive high rates of tailings deposition, and (4) the pattern and rate of dispersion of a tailings density current through the deep water column from discharge point to seabed. Actions to obtain relevant information in general and site-specifically are suggested.  相似文献   

14.
Particle fluxes were measured 7 m above the sea bottom during the predisturbance, disturbance, and postdisturbance periods by using time series sediment traps attached to seven deep-sea moorings deployed in the INDEX experiment site in the Central Indian Basin. The predisturbance particle fluxes varied between 22.3 to 55.1 mg m -2 day -1 . Increased and variable particle fluxes were recorded by the sediment traps during the disturbance period. The increase observed was 0.5 to 4 times more than the background predisturbance fluxes. The increases in particle fluxes (~4 times) recorded by the sediment trap located in the southwestern direction (DMS-1) were the greatest, which could be the result of preferential movement of resuspended particles generated during the deep-sea benthic disturbance along the general current direction prevailing in this area during the experimental period. Also, the traps located closer to the disturbance area recorded greater fluxes than did the traps far away, across the Deep Sea Sediment Resuspension System path. This variability in recorded particle fluxes by the traps around the disturbance area clearly indicates that physical characteristics such as grain size and density of the resuspended particles produced during the disturbance had an important effect on particle movement. The postdisturbance measurements during ~5 days showed a reduction in particle fluxes of ~50%, indicating rapid particle settlement.  相似文献   

15.
海上大直径钢管桩打桩过程中,桩周土体受到强烈扰动而发生强度弱化,掌握桩周土体强度弱化规律对于准确预测打桩过程、保证工程安全具有重要意义。为研究土体强度弱化规律,开展了环剪试验模拟打桩对桩周土体的扰动,测试土体强度随剪切速率的变化规律,建立了描述土体强度弱化规律的拟合公式,引入到打桩分析软件中。研究结果表明:土体的强度折减程度不仅与土体本身的性质有关还受到土体的埋深和剪切速率的影响,埋深越深土体强度折减程度越低,剪切速率越高土体强度折减越高,在打桩分析中可采用这里推荐的线性折减方法来模拟不同深度处土体强度的折减规律。  相似文献   

16.
An acoustic inversion method using a wide-band signal and two near field receivers is proposed and applied to multiple layered seabed models including a manganese sediment. The inversion problem can be formulated into a probabilistic model comprised of signals, a forward model, and additive noise. The forward model simulates wide-band signals, such as chirp signals, and is chosen to be the source-waveletconvolution plane wave modeling method. The wavelet matching technique, using weighted least-squares fitting, estimates the sediment sound-speed and thickness on which determination of the possible numerical ranges for a priori uniform distribution is based. The genetic algorithm is applied to a global optimization problem to find a maximum a posteriori solution for determined a priori search space. Here the object function is defined by an L 2 norm of the difference between measured and modeled signals. Not only the marginal pdf but also its statistics are calculated by numerical evaluation of integrals using the samples selected during importance sampling process of the genetic algorithm.  相似文献   

17.
The advanced piston corer (APC) has been used by the Ocean Drilling Program since 1985 for recovering soft sediments from the ocean floor. The pullout force measured on extracting the core barrel from the sediment is shown to correlate with the average shear strength of the sediment core measured in the ship's laboratory. A simple rule of thumb is derived relating the shear strength of the sediment to the pullout force. Multiple APC holes at individual sites allow the consistency of the pullout measurements to be assessed. The effects of different operational procedures during APC coring are also explored. Although generally applicable, the correlation between pullout force and laboratory measurements of shear strength breaks down for some APC holes, possibly because of the disturbance of some sediment types during the APC coring process. A better understanding of the physical process of APC coring, and its effect on the properties of the sediment both inside and immediately outside the core barrel, would indicate what confidence can be put on the measurement of pullout force as a way of evaluating the in situ shear strength of deep sea sediments.  相似文献   

18.
Specific properties of the interannual sea level variations and annual tides in the Northwestern Pacific were studied. Several tide stations were monitored. The monthly mean sea level for the year of 1995 was analyzed at each tide station. A seismic event in 1995, some tectonic activity around the subject area, and the Kuroshio (the oceanic western boundary current) may possibly contaminate results which would have occurred from the astronomical annual tide alone.  相似文献   

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