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1.
1987年3月至1988年12月笔者在九龙江口、厦门西海域调查了颗粒态磷(PP)、溶解无机磷(DIP)、溶解有机磷(DOP)、总磷(TP)及其他水化学要素.研究结果表明,九龙江水携带入海的磷大部分以颗粒态存在,DOP占有相当的比例.各种形态磷的分布有明显的区域性差异.在河水海水混合过程中,PP发生明显转移,在S=15~20水域,达最低值.悬浮颗粒物上吸附的磷在盐度增大时解吸是DIP随S增大而增大的主要原因.该海区生物必需的磷主要不是来自九龙江水的供给,而是从海区磷的再生、转化中得到补充.  相似文献   

2.
1987年3月至1988年12月笔者在九龙江口、厦门西海域调查了颗粒态磷(PP)、溶解无机磷(DIP)、溶解有机磷(DOP)、总磷(TP)及其他水化学要素。研究结果表明,九龙江水携带入海的磷大部分以颗粒态存在,DOP占有相当的比例。各种形态磷的分布有明显的区域性差异。在河水海水混合过程中,PP发生明显转移,在S=15~20水域,达最低值。悬浮颗粒物上吸附的磷在盐度增大时解吸是DIP随S增大而增大的主要原因。该海区生物必需的磷主要不是来自九龙江水的供给,而是从海区磷的再生、转化中得到补充。  相似文献   

3.
长江口夏季水体磷的形态分布特征及影响因素   总被引:2,自引:0,他引:2  
根据2006年7月至9月"海监49号"科学考察船夏季航次的调查数据,分析了长江口及邻近海域水体中磷形态的平面分布特征及其影响因素,结果表明,调查海域水体各种形态磷平均浓度均为底层高于表层,并呈现出由河口向邻近海域降低的趋势.杭州湾及最大混浊带部分区域水体中以颗粒态磷为主,且颗粒态无机磷为磷的主要存在形态;长江口门及江苏东部近海区域水体中以溶解态磷为主,溶解态无机磷为磷的主要存在形态;舟山群岛东部外海区表层水体以溶解态磷为主,溶解态有机磷为磷的主要存在形态,而底层水体中溶解态磷浓度略高于颗粒态磷,以溶解态无机磷为磷的主要存在形态.水体中颗粒态无机磷与颗粒态有机磷、颗粒总磷与总磷、总磷与悬浮颗粒物均呈非常显著的正相关,说明悬浮颗粒物是颗粒态磷的主要影响因素.调查海域外海区域绝大部分站位水体中溶解态无机磷表层浓度接近或小于浮游植物生长限制的动力学最低阈值,是磷限制或潜在的磷限制区域.  相似文献   

4.
9810号台风期间厦门近岸海域磷的分布特征   总被引:1,自引:0,他引:1  
于1998年10号台风期间及台风解除后一周内,对九龙江口和西海域表层水中总磷(TP)、溶解态无机磷(DIP)、溶解态有机磷(DOP)、颗粒态磷(PP)、颗粒态无机磷(PIP)和颗粒态有机磷(POP)进行了为期9d(10月26日至11月3日)的现场观测。根据观测结果,讨论了台风对上述各形态磷的分布特征的影响,认为台风伴随的增水、入海径流量的骤增和底质再悬浮的加剧导致表层水体中各形态磷含量的短期增加。  相似文献   

5.
厦门西港水体中的各形态磷   总被引:4,自引:0,他引:4  
1987年12月-1988年12月调查了厦门西港水体中TP、DP、PP、IP、OP、DIP、DOP、PIP和POP的含量分布及周年变化.结果表明,水体中TP的含量范围为0.22-2.21μmol/dm3.水体中的磷主要以溶解态的形式存在,其中DIP是该区水体磷的主要存在形式,分别占IP的73%和DP的79%.磷的其他形态含量均较小,但PP的周年含量相当恒定.认为PIP和POP是厦门西港水体中磷循环的关键.DIP和DP可作为西港赤潮的预报因素之一.  相似文献   

6.
东、黄海柱状沉积物中有机磷与无机磷的含量与分布研究   总被引:5,自引:0,他引:5  
研究了东、黄海海域典型站位柱状沉积物中总磷(TP)、无机磷(IP)及有机磷(OP)的含量及其分布特征.东海、黄海海域3种形态磷的浓度范围分别如下:东海:TP 13.73~19.85 μmol·g~(-1),IP 11.39~16.03 μmol·g~(-1)和OP 2.11~3.81 μmol·g~(-1);黄海:TP 14.44~18.33 μmol·g~(-1);IP 11.79~15.88 μmol·g~(-1)和OP 2.45~2.65 μmol·g~(-1).两海区沉积物中IP/TP和OP/TP变化范围分别为79%~88%和12%~21%.IP是研究海域沉积物中磷的主要存在形式,陆源输入为影响沉积物磷浓度的主要因素.地处长江口附近的E4站和东海中部海区的E6站分别为所有调查站位中各形态磷浓度的最高和最低者.不同海区柱状沉积物中各形态磷浓度的垂直分布特点不同.其分布特征在一定程度上反映了相应历史时段该站位营养盐输入水平、自然条件和人类活动的重大变化.  相似文献   

7.
三亚湾沉积物中磷释放的初步研究   总被引:14,自引:2,他引:14  
利用现场调查和室内模拟试验的结果,探讨了三亚湾表层沉积物中磷的形态与磷释放的关系以及环境条件变化对该湾沉积物中磷释放的影响。结果表明,三亚湾海水总磷(TP)中以总溶解磷(TDP)为主,总溶解磷约占总磷61%,其余形态磷约占总磷30.7%。初步计算了三亚湾沉积物 海水界面间DIP、TDP和TP的扩散通量分别为15.31、64.99和330.50μmol·(m2·d)-1。沉积物总磷(PT)中以无机结合态磷(PIN)为主,无机结合态磷约占沉积物总磷70.7%,其余形态磷约占沉积物总磷33.3%。沉积物中磷释放取决于磷的形态,总磷、有机结合态磷(POR)和无机结合态磷在沉积物磷的释放中所起的作用较大,其余形态的磷所起的作用较小。温度、盐度和pH的变化对沉积物中磷释放均产生一定的影响,相关分析表明,TDP和DIP这2种形态磷均具有相似的释放规律。  相似文献   

8.
陈水土 《海洋学报》2000,22(4):51-59
闽南-台湾浅滩渔场上升流区研究(1987年12月至1988年11月)及台湾海峡上升流区研究(1987年7月至1988年7月)结果表明,各种形态磷含量变化对上升流生态系具有重要作用.因此,提出以涌升水体中有机、颗粒形态磷和溶解无机态磷的相对比率来表示上升流水体的老化程度,即上升流水体老化指标(AIU)为(DOP+PP)与(DIP+DOP+PP)之比值.研究资料表明AIU这一表达式对于上述两上升流区是合适的,海域AIU的季节性变化与其近岸上升流的消长变化规律相一致.AIU较小的区域,其水体为新涌升水,与上升流中心位置相吻合.  相似文献   

9.
依据2017年8—9月对黄海海域溶解有机物(DOM)的调查,探讨了夏季黄海海水中溶解有机碳(DOC)和有色溶解有机物(CDOM)的空间分布特征。在表层海水中,受陆源影响较大的近岸海域CDOM含量相对较高,北黄海冷水团区域由于水产养殖的饵料引起DOC浓度升高,且该部分DOC以无色为主。DOC浓度随深度逐渐降低,而CDOM逐渐升高,该特征在冷水团区域更为显著,因此DOC和CDOM在冷水团区域的表底差异远大于浅水区的非冷水团区域。陆源输入和初级生产是引起表层DOC升高的主要原因,而光漂白则引起CDOM降低,同时光漂白还导致表层水体中CDOM分子量和芳香性低于底层。底层溶解氧饱和度在冷水团为80%~93%,均表现为弱不饱和状态。层化不仅阻碍了O2向底层水体输送,还抑制了DOC和CDOM的垂向混合,这是引起冷水团区域表底层DOC和CDOM差异较大的主要原因。  相似文献   

10.
春季黄海海域颗粒有机碳的分布特征及影响因素   总被引:1,自引:0,他引:1  
依据2010年4~5月黄海的现场调查资料,分析了黄海颗粒有机碳(Particulate organic carbon,POC)的分布特征及影响因素。结果表明,2010年春季黄海POC浓度范围为78.11~9 189.00μg/L,平均浓度为(413.59±794.23)μg/L;北黄海和南黄海POC分布都呈现表层低、底层高的垂直分布特征和近岸高、远岸低的平面分布特征。其中,北黄海POC的高值区南部近岸水体,主要受陆源输入的影响,北黄海POC的低值区主要位于其中部表层水体,主要由于浮游植物现场生产受限所致;南黄海POC高值区主要位于受沿岸流和陆源输入影响显著的苏北沿岸,底层高值主要与浮游植物碎屑沉降和沉积物再悬浮有关,低值区主要集中在南黄海中部海域,亦由于浮游植物现场生产受限所致。PN的分布趋势和影响因素与POC相一致。  相似文献   

11.
台湾海峡中北部上升流区各种形态磷的化学特性   总被引:4,自引:0,他引:4       下载免费PDF全文
陈水土 《海洋与湖沼》1993,24(6):664-670
根据1988年7月调查资料讨论了台湾海峡中北部海域夏季上升流区各种形态磷的分布特征。结果表明,上升流中心区(即海坛岛东侧一带水域)具有低温、高盐、低溶解氧;DIp,TDP,PP,TP较高;DOP较低(0.27);及DIP/DOP比值(约为1)较高的特性。DOP是该海域磷的主要形态(占TP的49.2%),其含量分布及其形态转化与生物活动直接相关,是该海域生物生产力高的体现。  相似文献   

12.
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   

13.
The studies on the distribution and varatiation of the specification of phosphorus in the southern part of the Yellow Sea are made. The biogeochemistry of phosphorus in the Yellow Sea is discussed. The phosphorus is slightly higher in the bottom than in the surface waters in the southern part of the Yellow Sea and the dissolved organic phosphorus is the main form. The transfer patterns between various forms of particulate and dissolved phosphorus are different in the bottom and surface, probably due to the contribution of dissolved organic phosphorus. The distributions of dissolved inorganic phosphorus and dissolved organic phosphorus are mainly affected by the biological processes and could act as a prediction factor for the red tide. The supply of N and P in most of the areas in the southern part of the Yellow Sea is sufficient, without apparent limitation of N or P.  相似文献   

14.
根据1987年3月至1988年12月笔者在九龙江口、厦门西海域的调查研究资料,着重讨论颗粒态磷(PP)、溶解态无机磷(DIP)、溶解态有机磷(DOP)、总磷(TP)等各种形态磷的含量分布、季节变化,及其与叶绿素(Chl.a)、总悬浮物量(TSM)等其他要素的关系。  相似文献   

15.
九龙江口水体中各形态磷的行为   总被引:12,自引:1,他引:12  
陈淑美  卢美鸾 《台湾海峡》1997,16(3):299-305
199御3月至1996年2月,逐月从九龙江口的淡水端到入海端的全段河口区采取表层水样。测定并计算水体溶解态和颗粒态的磷:DIP,DOP,DTP,PIP,POP,PTP和TP。结果表明,河流为九龙江口带来大量的磷。其主要以无机态的PIP,DIP形式存在。  相似文献   

16.
The phosphorus cycle is studied during 2013–2014 in the Sanggou Bay(SGB), which is a typical aquaculture area in northern China. The forms of measured phosphorus include dissolved inorganic phosphorus(DIP), dissolved organic phosphorus(DOP), particulate inorganic phosphorus(PIP), and particulate organic phosphorus(POP).DIP and PIP are the major forms of total dissolved phosphorus(TDP) and total particulate phosphorus(TPP),representing 51%–75% and 53%–80%, respectively. The concentrations and distributions of phosphorus forms vary among seasons relative to aquaculture cycles, fluvial input, and hydrodynamic conditions. In autumn the concentration of DIP is significantly higher than in other seasons(P0.01), and higher concentrations are found in the west of the bay. In winter and spring the phosphorus concentrations are higher in the east of the bay than in the west. In summer, the distributions of phosphorus forms are uniform. A preliminary phosphorus budget is developed, and shows that SGB is a net sink of phosphorus. A total of 1.80×10~7 mol/a phosphorus is transported into the bay. The Yellow Sea is the major source of net input of phosphorus(61%), followed by submarine groundwater discharge(SGD)(27%), river input(11%), and atmospheric deposition(1%). The main phosphorus sink is the harvest of seaweeds(Saccharina japonica and Gracilaria lemaneiformis), bivalves(Chlamys farreri),and oysters(Crassostrea gigas), accounting for a total of 1.12×10~7 mol/a. Burial of phosphorus in sediment is another important sink, accounting for 7.00×10~6 mol/a. Biodeposition by bivalves is the major source of phosphorus in sediment, accounting for 54% of the total.  相似文献   

17.
Phosphorus dynamics in Tokyo Bay waters were investigated along with other oceanographic variables. Seasonal variations of dissolved inorganic phosphorus (DIP) and particulate phosphorus (PP) are inversely correlated with each other, and reflect variation in biological activity. A high concentration of PP in summer surface waters is caused by high primary production. The PP settled in the deeper layer is decomposed, and orthophosphate is regenerated within the water column and in sediments. Even during summer stratification period, the regenerated orthophosphate is occasionally advected upward by wind-induced water mixing and contributes to phytoplankton growth in the upper layer. Some dissolved organic phosphorus is producedin situ from PP, but it may be rapidly decomposed in the water column. The ratios of Cchlorophylla and CN in particulate matter suggest that phytoplankton in the summer surface waters of Tokyo Bay are limited neither by nitrogen nor by phosphorus. The PN ratio in particulate matter varies substantially but it is positively correlated with the ambient concentration of DIP. Phytoplankton take up and store phosphorus within their cells when ambient DIP exceeds their demand. An abundance of total phosphorus in the summer water column can be attributed to increased discharge of river waters, although enhanced release of orthophosphate from anoxic sediments cannot be discounted.  相似文献   

18.
未来黄、东海营养盐浓度变化情景预测   总被引:1,自引:0,他引:1  
赵一丁  杨波  魏皓  赵亮 《海洋与湖沼》2015,46(5):983-994
本文基于FGOALS(Flexible Global Ocean-Atmosphere-Land System model)对未来气候情景的预测结果,结合千年生态评估的未来两个情景下的河流营养盐载荷特征,利用黄、东海水动力模型和生态模型并采用降尺度的方法对未来黄、东海营养盐的分布特征进行情景预测。结果表明,两个情景下未来河口邻近海区营养盐浓度将显著增加,富营养化加剧;GO(Global Orchestration)情景下,河流无机氮载荷增幅较大,夏季黄海中部无机氮浓度明显升高;AM(Adapting mosaic)情景下,由于河流无机磷载荷增幅较大,海区氮磷比有所下降,夏季黄海中部表层无机氮浓度降低,而在底层升高。通过敏感性实验并结合收支分析对各海区水动力条件未来变化、河流载荷变化的相对贡献进行了评估:相对于水温和水动力环境改变,河流营养盐排放量的增长是未来营养盐浓度增加的主要原因。营养盐收支分析表明,未来对流和混合输运的变化有助于黄海营养盐浓度的增加,夏季生物量升高造成更多碎屑沉降并在底层矿化使得层化季节冷水团底部营养盐浓度增长;长江口邻近海区营养盐浓度增长主要受冲淡水羽流的影响;净初级生产增加加剧了营养盐的消耗。  相似文献   

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