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1.
长江河口淡水端溶解态无机氮磷的通量   总被引:15,自引:1,他引:15  
1998年2和9月在长江河口淡水端连续观测了DIN(NO3-,NO2-,NH4+),PO43-,流速和流向.结果表明,溶解态无机氮、磷浓度的时空变化较复杂;1998年2月NO3-,NO2-,NH4+和PO43-的月通量分别为168241,974.4,19335和2648t,9月的月通量分别为905678,8317,5797和6281t;1998年NO3-,NO2-,NH4+和PO43-年通量分别为497.1×104,3.911×104,10.22×104和4.155×104t.  相似文献   

2.
大亚湾海域低营养盐维持高生产力的机制探讨Ⅰ   总被引:20,自引:0,他引:20  
利用2000年4月大亚湾海域的现场调查数据,分析水体中各种形态氮的含量,分布、转化及其影响因素,探讨大亚湾海域低营养盐维持高生产力的原因,调查结果表明:大亚湾海域水体仍属贫氮海区,氮,磷比约为12:1,生产力水平依然受氮控制;大亚湾海域氮以溶解态的形式居多,占总氮的74.8%,颗粒态占25.2%,而溶解态中又以有机氮居多,占总氮的62.1%,孵化实验表明:(1)充氧条件下氨氮向硝氮转化,缺氧条件下硝氮向氨氮转化;(2)水体中溶解有机氮在有氧条件下可以降解转化为无机氮,这意味着占绝对优势的溶解有机氮降解转化为无机氮可能是大亚湾海域低营养盐维持高生产力的主要原因之一。  相似文献   

3.
洪华生  林杰 《海洋学报》1988,10(6):695-703
本研究表明,在厦门港、九龙江口海区海-气界面微表层中营养盐(NO2-、NO3-、PO43-)、悬浮颗粒、有机物(POC、PON、DOC)、微量金属(Cu、Ni.Cd)发生富集,平均富集系数([Xt]微表层)/[Xt]15cm深度)大多数在1.0—2.0范围之内.所测定组分主要以溶解态富集为主.溶解有机物和悬浮颗粒的富集可引起其他组分总量和形态分布的变化,各组分的浓度、形态分布及其在微表层的富集系数与站位分布不呈规律性变化,而和采样现场海况密切相关,表明海区微表层的复杂和初态变化的特征.  相似文献   

4.
根据2014~2015年江苏近岸海域4个航次现场调查资料,分析探讨了该海区表层海水的溶解无机氮(DIN)、活性磷酸盐和硅酸盐含量及分布特征,并对江苏近岸海域表层水质进行富营养化评价。海区全年表层DIN平均浓度均符合国家4类海水水质标准,表层活性磷酸盐平均浓度均符合国家二类海水水质标准。DIN表现为冬季夏季秋季春季。NO_3-N在4个季节均为DIN的主要存在形态,NO_2-N的比例随水温的升高而呈上升趋势。灌河口和江苏海域南端启东嘴处为营养盐高值区,而海州湾是营养盐低值区。江苏近岸海域在夏季基本处于磷限制潜在性富营养。而秋季北部海域基本处于磷限制潜在性富营养,南部海域处于中度营养及富营养状态;冬季海州湾基本处于磷限制潜在性富营养,其余海域处于中度营养及富营养状态,春季海区整体呈现中度营养及富营养状态。  相似文献   

5.
东、黄海沉积物-水界面营养盐交换速率的研究   总被引:9,自引:0,他引:9  
2000年10月和2001年5月随“东方红2号”考察船在东、黄海进行考察,在A2、E2、E4、E5、E65个站位作了培养实验,研究沉积物-水界面在氧化和还原条件下的交换通量。在东海海域,NO3-、PO43-、总磷(TDP)由水向沉积物中扩散,NH4 、SiO32-由沉积物向水中扩散,NO3-、TDP、NH4 在还原条件下的交换通量大于氧化条件下的交换通量,PO43-、SiO32-在氧化还原条件下的交换通量基本一致。在黄海海域,两站位各溶解态营养盐的迁移方向有较大差异。在距离陆地较近的海域,各溶解态营养盐多由水中向沉积物中扩散,且距离陆地越近,交换通量越大。在东、黄海海域,沉积物释放的SiO32-对初级生产力的贡献分别为13%、10%~18%,与河流输送和大气沉降相比,沉积物对黄海、东海SiO32-的贡献分别占90%、86%,说明沉积物是SiO32-的源。而在整个东、黄海海域,对于溶解无机氮(DIN)和PO43-来说,它们的交换通量为负值,即沉积物从水体中吸附溶解无机氮和磷,说明沉积物是DIN和PO43-的汇。  相似文献   

6.
大亚湾养殖水域沉积物-海水界面营养盐扩散通量   总被引:16,自引:1,他引:15  
1998年5月10日和11日分别在大亚湾的大鹏澳和澳头养殖水域现场调查,分析了底层海水、上覆水、沉积物间隙水中营养盐的含量和磷的化学形态。结果表明:大亚湾养殖水域NH,HPO和H4SiO4含量从大至小为:间隙水,上覆水,底层海水;NO和NO含量变化不大。估算了沉积物一海水界面营养盐扩散通量,NH,NO,NO,HPO,H4SiO4平均通量分别为302.0,-0.06,-1.82,2.53,47.96μmol·(m2·d)-1。水体和沉积物中磷的主要化学形态分别为DOP(占TP的54%)和无机态(占总态的60%)。大亚湾养殖水域浮游生物生长由磷控制。沉积物间隙水中NO,NO,HPO,H4SiO4的浓度垂直分布变化不大,而NH的浓度垂直分布呈指数下降特征。  相似文献   

7.
分析了近20a来大亚湾海域营养盐和叶绿素a含量的时空变化规律及其对生态环境的影响.结果表明:大亚湾海域水体中NH3N、NO3N、NO2N、PO4P、SiO3Si、DIN、叶绿素a的多年平均含量分别为1.73±0.89、1.55±0.86、0.30±0.25、3.57±1.55、0.33±0.35、22.03±9.40μmol/dm3和2.47±1.28μg/dm3.自1991年以来,水体中活性磷酸盐的含量有较大幅度的下降,溶解态的无机氮的含量则上升,活性硅酸盐的含量变化较小.大亚湾大部分水体属于贫营养水平,养殖海区水体属于中营养水平.大亚湾海域水体的N/P平均值为21.69±19.38.浮游植物的生长从过去的氮限制转变为现在的磷限制.大亚湾海域营养盐含量和结构的改变,已对该海湾生态系统产生了一定的影响,如浮游植物的小型化和渔获量的大幅下降等.  相似文献   

8.
以无性繁殖系为材料,开展了缘管浒苔和羽藻对NO3-,NH4+和PO43-的吸收动力学、生长动力学研究。吸收动力学研究结果表明缘管浒苔和羽藻对NO3- 和PO43-的吸收方式为主动运输,对NH4+的吸收方式为被动扩散。缘管浒苔对NO3-的最大吸收速率(Vmax)、对NH4+的吸收斜率都大于羽藻,说明缘管浒苔对高浓度的NO3-和NH4+具有更强的吸收能力。缘管浒苔吸收NO3-和NH4+的a值远大于羽藻,说明在低营养盐浓度时,缘管浒苔对NO3-和NH4+的亲和力更强。在PO43-的吸收中,羽藻的最大吸收速率(Vmax)远大于缘管浒苔,说明羽藻对高浓度PO43-的吸收能力更强,但缘管浒苔的a值远大于羽藻,说明前者在低营养盐浓度时PO43-的亲和力更强。生长动力学研究结果表明,硝酸氮是促进两种海藻快速生长的最适宜氮源形式,氨氮更易促进藻体叶绿素的积累。在相同氮营养条件下,羽藻表现出比缘管浒苔更强的生长优势。  相似文献   

9.
大亚湾海区营养盐的变化及富营养化研究   总被引:42,自引:4,他引:42  
根据1999年1月(冬),4月(春),7月(夏)和10月(秋)4个季节对大亚湾海区的监测,选用一种新分类分级的营养化评价模式,评价了大亚湾海区的富营养水平;根据历史资料,分析了大亚湾海区近十多年来氮,磷营养盐的变化趋势,并与中国沿海几个海湾作了对比,结果表明,大亚湾海区冬,春、夏三季的水质属贫营养水平,秋季有个别站位水质属磷限制中度营养水平和磷限制潜在性富营养水平,大亚湾海区水中总溶解无机氮(TIN)呈逐年增加趋势,而磷酸盐(PO4-P)则呈逐年下降趋势,在中国沿海几个海湾中,大亚湾水中营养盐含量较低。  相似文献   

10.
台湾海峡上升流区氮、磷、硅的化学特性及输送通量估算   总被引:10,自引:1,他引:10  
台湾海峡中北部海域1983~1984年、1987~1988年多次调查资料表明,夏季氮、磷、硅诸营养盐呈近岸、底层高,向上层、外海递减的分布特征,其控制因素是福建近岸上升流。该上升流区NO3--N、PO43--P、SiO32--Si的特征值分别为2.29、0.20、2.83μmol/dm3.诸营养盐含量与温度、盐度溶解氧含量及其饱和度有明显的相关性。N/P比平均值接近于Redfield比值。PO43--P、NO3--N、SiO32--Si垂直输送通量分别估算为23.6、223、302mg/(m2·d),是该海域夏季营养盐的主要来源,PO43--P和NO3--N的输送通量平均分别大约为真光层生物生产力所需营养盐的86%和73%.  相似文献   

11.
We conducted studies of nutrients and water mass movements in a semi-enclosed bay in northern China to understand nutrient dynamics under varying tidal regimes. Four cruises were conducted under varying tidal regimes in Jiaozhou Bay, two at neap tide and one at spring tide in August and one at spring tide in October 2001. In addition to transect surveys, drift experiments and an anchor station were employed to show current and tidal effects. Samples for nutrient evaluation were taken from the five major tributary rivers in March (dry season) and August (flood season) of 2002 to estimate nutrient transport by rivers, and wastewater samples were collected to evaluate nutrients in wastewater discharge. Benthic nutrient fluxes were determined by (1) incubation of sediments with overlying seawater on board the boat and (2) calculated by Fick’s First Law from nutrient pore water profiles. Nutrient concentrations were high in the north, especially the northeast and northwest sectors, reflecting human activities. Jiaozhou Bay was characterized by high nitrogen, but low phosphorus and silica concentrations compared to Chinese coastal seas. Based on nutrient atomic ratios, the limiting elements for phytoplankton growth in Jiaozhou Bay were silica and phosphorus. The fluxes of nutrients between sediment and overlying water varied depending on the specific nutrient, the site and redox conditions. Benthic nutrient fluxes based on sediment incubations were all lower than the estimated diffusive fluxes, implying that the nutrients released from sediment pore waters were probably utilized by benthic microalgal and bottom-water primary production. A preliminary estimate of nutrient budgets demonstrated that riverine and wastewater inputs were greater than atmospheric deposition into Jiaozhou Bay, except that nitrate from wastewater inputs was less than atmospheric deposition. Concentrations of nitrogen and phosphorus increased while silica decreased in the last four decades, similar to other eutrophicated estuaries. The resulting shift in nutrient composition in Jiaozhou Bay affects phytoplankton composition, trophic interactions, and sustainability of living resources.  相似文献   

12.
大亚湾养殖海区沉积物中营养盐的解吸-吸附   总被引:1,自引:0,他引:1  
研究了天然海水体系大亚湾养殖海区表层沉积物营养盐的解吸 -吸附规律。结果表明 :沉积物中磷酸盐和硅酸盐解吸 2h基本达到平衡 ,而铵盐、硝酸盐和亚硝酸盐 0 5h内基本达到平衡 ;各营养盐的解吸随pH值 (小于 8)降低而增大 ,随pH值 (大于 8)升高略有增加 ;盐度仅在低于 1 0时对各营养盐的解吸有影响。研究了磷酸盐在沉积物上的吸附等温线。  相似文献   

13.
Pore Water Nutrient Regeneration in Shallow Coastal Bohai Sea, China   总被引:1,自引:0,他引:1  
The regeneration of pore water nutrients was studied and the contribution of benthic nutrient fluxes to the overlying water was evaluated on the basis of field specific observations conducted in September–October 1998 and April–May 1999 in the Bohai Sea. Nutrient concentrations in sediment pore waters were examined by incubating sediment core samples with overlying seawater in air and/or nitrogen conditions. Nutrient diffusion fluxes calculated by diagenetic equations were within a factor of 2 during incubations. The factors affecting nutrient diffusion across sediment/water interface include bioturbation, nitrification, denitrification, adsorption, and dissolution. The regeneration of nutrients from sediments will increase nutrient loads of the Bohai Sea and affect nutrient atomic ratios in this region. Among nutrient sources from riverine input, atmospheric deposition and sediment regeneration, ammonium and phosphate mainly came from atmospheric deposition (>50%); nitrate was mainly transported by riverine input into the Sea, silicate from sediment regeneration accounts up to 60%. This demonstrates that nutrient regeneration in sediments contributes more silicate than riverine input and atmospheric deposition together, but benthic flux contributes very much less phosphate and nitrate relative to riverine input and atmospheric deposition. The benthic fluxes of nutrients may lead to a decrease of the amount of nitrate, an increase of phosphate, ammonia and silicate in the water column. The release of silicate from sediments may compensate the decrease of silicate due to the reduction of riverine discharge. Nutrient regeneration in sediment may have an important influence on the eutrophic character of coastal waters in this region. This revised version was published online in August 2006 with corrections to the Cover Date.  相似文献   

14.
利用2005年5月到9月对象山港海域五个航次的监测结果,对象山港海域水体和底质中营养元素的分布特征及其控制因素进行了初步的探讨。结果表明,象山港海区水体和沉积物中营养元素含量较高,水质恶化严重;海产养殖是造成本海区营养元素超标的主要因素,也是控制营养元素在空间和时间上变化的主要因素。  相似文献   

15.
Proliferation of fast-growing ephemeral macroalgae in shallow-water embayments constitutes a large-scale environmental change of coastal marine ecosystems. Since inorganic nutrients essential for the initiation and maintenance of macroalgal growth may be supplied from the underlying sediment, we investigated the coupling between benthic inorganic nutrient (mainly N and P) fluxes and sediment properties in 6 bays representing a wide gradient of sediment characteristics (grain size, organic matter content, solid phase C and N). The initial characterization of bays was made in June and also included measurements of oxygen flux and microphytobenthic and macrofaunal biomass. In September, still within the growth season of the macroalgae, complementary experiments with sediment-water incubations for benthic flux measurements of oxygen and nutrients focused on trophic status (balance between auto- and heterotrophy) as a controlling factor for rates of measured benthic nutrient fluxes. Generally, sediments rendered autotrophic by microphytobenthic photosynthesis removed nutrients from the overlying water, while heterotrophic sediments supplied nutrients to the overlying bottom water. Estimations of the green-algal nutrient demand suggested that late in the growth season, net heterotrophic sediments could cover 20% of the N-demand and 70% of the P demand. As the benthic trophic status is a functional variable more closely coupled to nutrient fluxes than the comparably conservative structural parameter organic matter content, we suggest that the trophic status is a more viable parameter to classify sediments and predict benthic nutrient fluxes in shallow-water environments.  相似文献   

16.
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   

17.
According to historical mean ocean current data through the field observations of the Taiwan Ocean Research Institute during 1991–2005 and survey data of nutrients on the continental shelf of the East China Sea(ECS) in the summer of 2006, nutrient fluxes from the Taiwan Strait and Kuroshio subsurface waters are estimated using a grid interpolation method, which both are the sources of the Taiwan Warm Current. The nutrient fluxes of the two water masses are also compared. The results show that phosphate(PO4-P), silicate(SiO3-Si) and nitrate(NO3-N) fluxes to the ECS continental shelf from the Kuroshio upwelling water are slightly higher than those from the Taiwan Strait water in the summer of 2006. In contrast, owing to its lower velocity, the nutrient flux density(i.e., nutrient fluxes divided by the area of the specific section) of the Kuroshio subsurface water is lower than that of the Taiwan Strait water. In addition, the Taiwan Warm Current deep water, which is mainly constituted by the Kuroshio subsurface water, might directly reach the areas of high-frequency harmful alga blooms in the ECS.  相似文献   

18.
大亚湾表层沉积物性质及其对海水养殖的影响   总被引:13,自引:0,他引:13  
根据文献和2001年4月19个站位的分析结果,研究了大亚湾表层沉积物颗粒、孔隙、有机质、通透性等性质对海水养殖的影响因素和机制,提出一些措施供养殖管理部门参考。  相似文献   

19.
IrocrIowThere is a linkage in shallow marine systerns between sea-noor biOgaxhemical pmeessesand water column pnductivity (Bereson et al., l998). Benthic fluxes provide a significantsource of nutrients to the overlying water tO supPOrt primary pnduction and play a role in de-.creasing oxygen concentrations (van et al., l999; Cowan and Boynton, l996; Berelson etal., 1998; Friedl et al., l998; Zabel et al., l998). TherefOre, it is imPOrtant to define theediment di8genetic pathways for the …  相似文献   

20.
近岸海域水体和沉积物是营养盐迁移转化的重要场所。2016年8月对渤海湾水体和沉积物进行采样监测,分析了渤海湾水体和沉积物中不同形态氮、磷的含量,并研究了营养盐在水体和沉积物中的分布特征及其相互关系。结果表明:渤海湾水体中的营养盐在西部近岸地区含量较高,而在离海岸线较远的开阔海域含量较低,表现出一个明显的质量浓度梯度。说明人类活动对近岸海域水体中营养盐含量的贡献较为明显。水体中营养盐主要是以无机态为主,无机氮和无机磷分别占到总氮和总磷的76.65%和76.46%。沉积物中氮、磷营养盐表现出和水体中营养盐含量类似的空间分布特征,但形态主要以有机氮为主,无机磷的含量也仅占到30.42%。这说明夏季渤海湾水体中氮、磷营养盐主要由水中有机体通过同化作用将无机态营养盐合成为有机态营养盐进入沉积物,渤海湾西北海域的富营养化过程是水体中营养盐向沉积物迁移的一个主要驱动力。  相似文献   

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