首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 108 毫秒
1.
大鹏澳海域水体磷的形态及其分布特征   总被引:9,自引:0,他引:9  
根据1992年12月(冬季)和1993年7月(夏季)对大鹏澳海域24h定点连续观测和夏季大面调查,统计了该海域各种形态磷的变化范围和平均含量;计算了各种形态磷分别占总磷(TP)和总溶解磷(TDP)的百分比;讨论了各种形态磷之间的相互关系;分析了影响TP和TDP分布的环境因素。  相似文献   

2.
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   

3.
1987年3月~1988年12月笔者于九龙江口、厦门西海域的调查研究结果表明,厦门西海域特殊的地理、水文环境、沉积物的高磷量、磷形态的快速转化是西海域初级生产力[555g/(m2·a)]比九龙江口区[159g/(m2·a)]高得多的主要原因。颗粒态磷(PP)、溶解态无机磷(DIP)、溶解态有机磷(DOP)等以生物为媒介发生了某种程度的形态转化。本文估算了九龙江水总磷(TP)的入海通量为787t/a,其中DIP为69.2t/a,DOP为170t/a,PP为547t/a;九龙江口和厦门西海域沉积物磷的年释放量估计为16t和13t.接初级生产力估算全调查海域消耗磷约为981t/a,而生物活动参与下磷的再生和转化起重要的作用。  相似文献   

4.
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   

5.
1987年3月~1988年12月笔者于九龙江口、厦门西海域的调查研究结果表明,厦门西海域特殊的地理、水文环境、沉积物的高磷量、磷形态的快速转化是西海域初级生产力[555g/(m^2·a)]比九龙江口区[159g/(m^2·a)]高得多的主要原因。颗粒态磷(PP)、溶解态无机磷(DIP)、溶解态有机磷(DOP)等以生物为媒介发生了某种程度的形态转化,本文估算了九龙江水总磷(TP)的入海通量为787t  相似文献   

6.
胶州湾东部磷的形态及分布   总被引:7,自引:0,他引:7  
报道了胶州湾东部自1990年11月-1991年8月4个季节各种磷的含量及分布情况;总磷年平均含量为3.26μmol/dm^3;颗粒磷是主要形态,占总磷的52%,溶解态无机磷占24%;秋季各种磷含量最高,是矿化再生的主要季节,春,冬浮游植物大量繁殖,吸收磷酸盐,浓度下降。夏季磷受物理混合过程所控制。  相似文献   

7.
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   

8.
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   

9.
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   

10.
钦州湾磷营养状态与浮游植物的碱性磷酸酶活性分析   总被引:1,自引:0,他引:1  
碱性磷酸酶(Alkaline phosphatase,AP)是浮游植物在磷胁迫的情况下诱导表达的一种酶,其作用是能够将溶解有机磷(Dissolved organic phosphate,DOP)水解成浮游植物可以直接利用的正磷酸盐形式,因此碱性磷酸酶活性(Alkaline phosphatase activity,APA)可用来指示海区浮游植物的磷胁迫状态。本研究以2015-2016年钦州湾4个航次(春季、夏季、秋季、冬季)的调查资料为依据,研究了钦州湾海域表层无机及有机磷的空间分布特征、APA的分布及其与磷营养之间的调控关系。调查期间,钦州湾海域春季、夏、秋、冬的单位叶绿素APA的平均值分别为20.42±5.32 nmol/μg Chl a/h,138.17±94.32 nmol/μg Chl a/h,142.60±72.60 nmol/μg Chl a/h和29.48±18.52 nmol/μg Chl a/h。经分析,APA与无机磷之间存在显著的负相关(P0.05),与N/P呈极显著负相关(P0.01),该海区APA可以反映钦州湾浮游植物的磷胁迫水平。海区氮磷比平均值在除春季外的三个季节均高于35,存在潜在的磷限制,浮游植物在夏季和秋季遭受较严重的磷胁迫。夏季和秋季浮游植物大量表达AP,由此推测DOP可能在钦州湾浮游植物生物量的维持甚至赤潮发生期间的磷补给上起着重要作用。  相似文献   

11.
According to two cruises investigation information in summer and winter during 1998 and1999, the phosphorous concentration distribution and changes of summer and winter were discussed pri-marily in the South China Sea. The results show that the phosphate concentration of surface seawater insummer is distinctly lower than that in winter, averaging 0.04 μmol/dm3 in summer and 0.35 μmol/dm3 in winter. The organic phosphorous concentration of surface seawater in summer is higher than thatin winter, averaging 0.12μmol/dm3 in summer and 0.04 μmol/dm3 in winter respectively. The season-al changes of total phosphorus are similar to phosphate, averaging 0.22 μmol/dm3 in summer and 0.61μmol/dm3 in winter respectively. In vertical direction, phosphate, TDP and TP content are the lowestin upper 50 m water column, and increase in linearity rapidly with water depth, increasing slowly under500 m, reach to maximum about 1 000 m, then decrease slightly with water depth increasing. The ver-tical distribution is typical in summer, and there is small dispersed for phosphorus concentration for thesame depth of different stations. However, in winter there is a large disperse for phosphate, TDP andTP, specifically for phosphate at 200 m at which the concentration is maximum. This result indicatesthat there are large differences in hydrology and biology conditions that affect largely the chemical envi-ronment of the South China Sea. The organic phosphorus is the predominant in surface seawater of theSouth China Sea, but the inorganic phosphorus is the predominant in layers below depth of 150 m. Theorganic phosphorus concentration in deep water usually decreases with water depth increasing. The or-ganic phosphorus in summer is remarkably more than that in winter because of the strong biology activi-ties in summer.  相似文献   

12.
Phosphorus (P) is an essential nutrient utilized by all organisms for energy transport and growth. Both the conventional molybdenum-blue method and the magnesium-induced coprecipitation (MAGIC) procedures were applied for the measurement of dissolved inorganic phosphorus (DIP) and total dissolved phosphorus (TDP) in more than 840 water samples collected between 2003 and 2005, including seawater (the Huanghai Sea, the East China Sea, and the northern South China Sea), water from rivers and estuaries (the Changjiang, the Huanghe, and the major rivers emptying into the Jiaozhou Bay), groundwater (in the drainage basin surrounding the Jiaozhou Bay), rain- water, and aquaculture water samples. The MAGIC method allows the investigation of phosphorus distributions and cycling for systems in which DIP is below the detection limits of conventional methods. Comparison between the two methods demonstrated that the concentrations obtained with both methods were signiˉcantly correlated. The di?erences of DIP and TDP concentrations measured with the two methods were higher when the concentrations of DIP and TDP were lower, implying the lower reproducibility at low concentrations. The concentration di?erences increase with the increase in the proportion of DOP in TDP, which indicates that the discrepancy of DIP concentrations measured with the two methods increases when the DOP concentration is high. The discrepancies indicated that the composition of P compounds di?ers depending on sample sources and water type; it would be useful to infer the presence of di?erent phosphorus compound pools from di?erences between the two methods. This study indicates the potential presence of a pool of alkaline-labile compounds for samples from rainwater and rivers and estuaries surrounding the Jiaozhou Bay; the potential presence of acid-labile compounds that were adsorbed by Mg(OH)2 for samples from the Changjiang Estuary, Huanghai Sea, East China Sea, and groundwater; the po- tential presence of a substantial pool of acid-labile compounds that were not adsorbed by Mg(OH)2 for samples from the Huanghe Estuary, aquaculture water, the East China Sea algal bloom water, and the northern South China Sea.  相似文献   

13.
南海海域海水中各形态磷的化学分布特征   总被引:6,自引:0,他引:6  
根据1998年7月和1999年1月两个航次的调查资料,对南海水体中磷的含量分布以及夏、冬季变化规律进行了探讨.结果表明,南海表层水体中磷酸盐夏季含量明显低于冬季,夏季平均含量为0.004μmol/dm3,而冬季为0.35 μmol/dm3;有机磷含量夏季高于冬季,含量分别为0.12,0.04 μmol/dm3;总磷含量的季节变化与无机磷酸盐类似,夏、冬季含量分别为0.22,0.61 μmol/dm3.在垂向分布上表层50 m水柱中PO43--P,总溶解态磷和总磷含量最小,随水深增加基本上呈线性快速增加,至500 m增加减缓,1 000 m左右为最大含量,然后随着水深略有下降.在夏季垂直分布比较典型,不同站位在一水深的含量离散性小,而冬季PO43--P,总溶解态磷和总磷的垂直分布则显得离散性大,尤其是PO43--P分布在200 m左右出现最大值,说明当年冬季南海各区域存在着较大水文、生物差异,很大的影响了化学环境的变化.在南海表层水中通常以有机磷占优势,在150 m深处以下的水中则以无机磷为主.深水中溶解的有机磷含量一般随水深减少.夏季的有机磷明显高于冬季,表明夏季的生物作用强烈.  相似文献   

14.
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   

15.
Several methods for analysis of dissolved total phosphorus in seawater were reviewed. Discussions were focused on UV irradiation and persulphate oxidation methods which are the most popular dissolved organic phosphorus determination methods presently. The compounds used for the phosphorus recovery test were categorized into three groups according to their chemical structure. It was found that low power UV irradiation can decompose P-O-C or P-C bonds efficiently but may be inefficient for P-O-P bonds. Heating-bath in acid condition is useful for decomposing P-O-P bonds. Using the continuous flow analysis system (Auto-analyzer Ⅱ), UV digestion and heating-bath, series experiments were carried out based on the above analysis. Eleven model compounds were employed for the phosphorus recovery test and the factors influencing the decomposition efficiency of dissolved compounds containing phosphorus were clarified. Finally, the optimal design for determination of dissolved total phosphorus in seawater based on the routine continuous flow analysis system was presented. For the organic mono-phosphate, the recovery is more than 90% and a recovery of 33%~51% was obtained for inorganic or organic polyphosphates. Up to now, this is the highest decomposition efficiency for dissolved phosphorus based on the continuous flow analysis system.  相似文献   

16.
对紫外(UV)光降解-过硫酸钾方法分析溶解有机磷的条件进行比较分析,在UV/加热条件下溶解有机磷的氧化率最高.进一步考察氧化剂的酸碱性和浓度对溶解有机磷氧化率的影响.Cl-和海水介质可以使溶解有机磷的氧化率显著降低.可以通过改变UV灯的功率、反应时间、反应温度、氧化剂等条件提高溶解有机磷的氧化率.  相似文献   

17.
I~IOXThe alkaline phOSPhataSe (AP) has been more and more studied following the study of thephosphorus limitation (Suttle and Harrision, 1988; Hu et al., 1989; Huang et al., 1996). PeOple used to take dissolved inorganic phOSphorus (DIP) level and uptake rate by algae as phosphOrus limitation indicators (Vera and Petterson 1992; Huang and HOng, 1994). But recent resultsindicate that diSSOlved organic phosphorus (DOP) and particulate organic phOSphorus (PP) couldalso be utilized b…  相似文献   

18.
The concentration and partition ratio of various speciations of nutrients in domestic sewage were determined. The transformation and transportation among the speciations, as well as their biological effects during sewage-seawater mixing were simulated in laboratory. The results are compared with field observation and the following findings are: i) The suitable range of ratio DIN/DIP in seawater for growth of phytoplankton in subtropical estuary and harbor is quite wide. It could grow well even in the range of 15-55 in atom ratio, and is independ of the variation in levels of N and P. ii) The transformation rate among the speciations of phosphorus is within the range of 0. 5 to 1. 1 μmol/d . iii) Phytoplankton uptakes P prior to N during its growth. The growth rate for Skeletonema costatum (the major species) and field algae are 0. 34-0. 58/d and 0. 30-0. 31/d, respectively. iv) The red tide species Prorocentrum micans could become the dominant species to a density 107 cells/L after Skeletonema costatum  相似文献   

19.
湖泊或海湾中的沉积物吸附氮(N)、磷(P)等元素所形成的沉积层成为水体富营养化的內源。在波浪作用下,尤其是强浪作用下,沉积物中的N、P会通过内源释放作用大量进入水体中。本文在自制的U型水槽中开展实验,采用不同水头差来模拟波浪的循环荷载作用,研究了沉积层中的N、P在静置固结状态(Ⅰ)、加波未液化状态(Ⅱ)、加波液化状态(Ⅲ)下的释放规律,并给出该试验条件下的沉积物释放速率的拟合方程。试验结果表明:沉积物中总氮(TN)和溶解性总氮(TDN)的释放速率会随着水动力作用的增强而增加;总磷(TP)、溶解性总磷(TDP)和活性磷酸盐(SRP)的释放速率也随着水动力作用增强而增加,但水体中悬浮物(SS)含量过高会限制其释放速率。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号