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1.
2010年7月至2011年7月,利用高效液相色谱分离分析技术研究了厦门筼筜湖潟湖表层沉积物的底栖微藻生物量(以叶绿素a计)和光合色素组成,探讨了其与环境因子的关系.结果表明,表层沉积物中检出岩藻黄素、别藻黄素、玉米黄素、叶绿素b四种光合色素,对应的微藻类群包括硅藻、隐藻、蓝藻和绿藻.底层(表层沉积物)与水层(水体)微藻叶绿素a生物量呈显著负相关关系(p<0.05),但底层-水层对应的光合色素不存在显著相关关系,此暗示底层光合色素主要是底栖微藻的贡献,而非来自水层浮游微藻的沉降.底栖微藻生物量随时间变化明显,夏季(6~8月)较低(1.30 mg/m2),冬季(12月至翌年2月)较高(86.16 mg/m2).各测站底栖微藻生物量存在空间差异,随湖区的水深增加而降低,与沉积物表层光辐照度呈显著的正相关关系(p<0.05).岩藻黄素与降雨量呈显著负相关,别藻黄素与水体无机氮含量呈显著正相关,玉米黄素分布主要受温度影响,除玉米黄素外,其他光合色素含量与光辐照度呈正相关.初步估算表明,底栖微藻占该浅水潟湖生态系统水层-底层微藻叶绿素a生物量和固碳量的27.64%和12.56%.  相似文献   

2.
长江口邻近海域是我国近海有害藻华高发区之一。受长江冲淡水和台湾暖流影响,海域环境条件复杂,有可能影响到藻华的分布状况、动态过程和危害效应。本文利用"藻华973项目"2011年的现场实测数据,从水体层化状况与藻华的关系入手,绘制出各要素的平面及剖面分布图,对比分析了春季硅藻藻华和甲藻藻华期间的温、盐跃层及其变化情况,探讨了硅、甲藻藻华的分布状况及其与温、盐跃层之间的关系。研究发现,2011年春季藻华期间该海域存在明显的温跃层和盐跃层。硅藻藻华期的温、盐跃层主要受到长江冲淡水影响;而在甲藻藻华期,受外海水入侵影响导致的温、盐跃层现象更加显著。藻华期间,浮游植物生物量高值区均出现在跃层上方的长江冲淡水影响区,其中硅藻藻华分布区与高强度跃层区基本一致,而甲藻藻华则主要分布在层化强度相对较弱的近岸海区,其分布可能受到上升流的影响。综合上述分析结果可以看出,长江口邻近海域春季的硅藻藻华主要受到长江冲淡水影响,而甲藻藻华的分布则在一定程度上受到外海水入侵及上升流影响。这一认识为进一步分析该海域春季硅、甲藻藻华演替过程及藻华优势种的长期演变趋势提供了新的思路和依据。  相似文献   

3.
长江口海域表层沉积物重金属元素的潜在生态风险评价   总被引:10,自引:0,他引:10  
根据三峡水库一期蓄水3 a后(2006年)长江口海域表层沉积物样品中元素(Cd,Cr,Cu,Pb,Zn,Al,As,Ca和Sr等)质量比和黏土组分百分含量,采用Hakanson潜在生态风险指数法,分析了长江口海域表层沉积物中重金属元素(Cd,Cr,Cu,Pb,Zn和As)的污染程度,评价了长江口海域表层沉积物的环境质量现状,定量分析了长江口海域表层沉积物的潜在生态风险程度,并结合2003年的资料,讨论了三峡水库一期蓄水3 a后长江口海域的环境变化。结果表明,长江口海域表层沉积物环境质量状况良好,6种重金属元素的污染程度排序为:AsCrCdZnCuPb;表层沉积物的潜在生态风险程度为"轻度",6种重金属元素的潜在生态风险程度排序为:CdAsCuCrPbZn。从区域差异来看,杭州湾口外泥质区和长江口外东北偏北海域表层沉积物中重金属元素(As,Cr,Zn,Cu和Pb)的污染指数和潜在生态风险指数均出现相对高值。从元素差异来看,Cd的污染指数和潜在生态风险指数高值区的分布明显异于其他重金属元素,说明Cd存在与其他重金属元素不同的富集机制,很可能是因为Cd更易受悬浮体浓度、有机质含量以及水体盐度的影响。与2003年的资料相比,三峡水库一期蓄水3 a后(2006年)表层沉积物总体潜在生态风险程度和重金属元素(除Cd之外)潜在生态风险指数的高值区均未发生显著变化。  相似文献   

4.
长江口水体溶解氧的季节变化及底层低氧成因分析   总被引:4,自引:0,他引:4  
利用2006-2007年“908-ST04区块”任务单元在长江口开展的春、夏、秋、冬四季多学科综合调查资料,分析了长江口水体溶解氧的季节变化,探讨了其底层低氧的形成机制,结果表明:冬季,表层和底层水体溶解氧值总体上呈近岸高、外陆架低的分布趋势,水体上下混合均匀;春季,藻华开始出现,水体层化初成,外陆架入侵的低溶解氧浓度...  相似文献   

5.
根据2013—2016年春季(5月)长江口及其邻近海域4个航次环境综合调查数据,探讨春季长江口水体颗粒有机碳(POC)时空分布特征及其环境影响因素。结果显示:2013—2016年春季长江口POC浓度范围为0.22~16.99 mg/L,均值为1.80 mg/L,总水域POC年际间变化显著,底层浓度高于表层。从口门区、近岸区和近海区三个子水域来看,除近岸底层POC浓度处于高值,年际差异不显著之外,其余水域的表、底层均存在空间变异和年际差异。POC浓度在口门附近偏南部水域达到高值,后沿长江冲淡水(CDW)方向降低,低值区位于近海底层,但表层POC在近海水域123°E附近出现次高值。POC浓度与盐度之间具有显著负相关关系,且相关性逐年递减;POC浓度与总悬浮物浓度(TSM)呈显著正相关,底层相关性高于表层;近海区表层POC与叶绿素a正相关关系极显著,二者高值区均分布在123°E附近。入海径流量与长江口春季POC浓度呈现出截然相反的年际变化趋势,径流对有机碳的稀释作用高于其输入作用。长江口春季POC主要以碎屑源为主,其分布与有机碳源、海水的稀释作用、悬浮物运动等多种因素有关,高浊水体中悬浮物影响显著,陆源有机碳对POC的影响在长江口近海水域有所弱化,而浮游植物对POC的贡献凸显。  相似文献   

6.
基于2005年长江口邻近海域春季现场调查资料,本文采用非线性拟合方法,构建了该海域春季硅藻藻华和甲藻藻华期间浮游植物生物量与无机营养盐、温度和盐度之间的定量关系方程,进而分析了春季硅、甲藻藻华发生的最适环境条件。结果表明,硅藻藻华出现的最适环境条件为:溶解态无机氮浓度10.1μmol/L、磷酸盐浓度0.21μmol/L、硅酸盐浓度6.39μmol/L、温度11.9℃、盐度30.5;甲藻藻华暴发的最适环境条件为:溶解态无机氮浓度3.98μmol/L、磷酸盐浓度0.18μmol/L、温度22.0℃、盐度27.2。上述硅、甲藻藻华发生的最适环境条件可作为硅、甲藻藻华形成的关键环境参数,为开展长江口邻近海域藻华形成和演替过程的数值模拟和参数优化提供参考。  相似文献   

7.
长江口及其邻近海域是我国近海有害藻华高发区之一。自2000年以来,由东海原甲藻(Prorocentrum donghaiense)、米氏凯伦藻(Karenia mikimotoi)和亚历山大藻(Alexandrium spp.)等甲藻形成的大规模有害藻华连年暴发,对海水养殖业、人类健康和生态安全构成了严重威胁。以往调查和研究工作表明,长江口及其邻近海域藻华优势类群近年来已由硅藻逐渐转变为甲藻,同时,有害藻华原因种也表现出明显的年际变异特征和有毒有害藻种增多的态势,亟待解析其演变机理、趋势和驱动因素。长江口及其邻近海域受长江径流影响,富营养化问题突出,是大规模有害藻华形成的重要原因。同时,该海域也受到来自台湾东北部黑潮分支的影响,但对其与有害藻华的关系所知甚少。在中国科学院战略性先导科技专项"热带西太平洋海洋系统物质能量交换及其影响"支持下,针对这一问题开展了较为系统的调查和研究工作,本文对研究中得到的科学认识进行了初步总结。结果表明:东海黑潮分支能够到达长江口及其邻近海域赤潮区,影响该海域赤潮生物多样性状况;黑潮分支对长江口及其邻近海域甲藻赤潮发生过程具有重要调控作用;长江冲淡水和黑潮分支的共同作用决定了长江口及其邻近海域有害藻华的发生过程和演变趋势。在现有结果基础上进一步分析和讨论了未来长江口及其邻近海域有害藻华的研究方向,以期为进一步解析有害藻华演变趋势、提升有害藻华的监测和预警能力提供依据。  相似文献   

8.
为探讨夜光藻赤潮爆发时期,珠江口沉积物营养盐的分布与释放特征及其对水体和沉积物中叶绿素Chl-a、脱镁叶绿酸Pha-a分布的影响,于2015年1月对珠江口进行了采样分析。研究发现,在赤潮爆发期间水体中的NO3-N、NH4-N含量较高,占DIN的比例分别为59%、32.8%。表层水体中营养盐含量均高于底层,这是因为表层水体主要受陆源污染,营养物质含量较高,而在底层水体中,由于赤潮中后期浮游生物沉降到底层,消耗了底层的营养物质,使其浓度低于表层。PO4-P和Si O3-Si的分布特点与前者相似,其平均值分别为0.019 mg/L、0.74 mg/L。与此同时,沉积物间隙水中的营养物质不断向水体中释放,促进了水体中浮游植物的生长繁殖,从而为夜光藻赤潮的爆发提供丰富饵料。此外,浮游植物的生长与沉积物/水界面之间的NH4-N、Si O3-Si扩散通量呈现极显著相关关系(P0.01),此时沉积物起到了污染源的作用。沉积物中叶绿素Chl-a和脱镁叶绿酸Pha-a的含量均较高,尤其在赤潮污染严重海域含量分别高达1.16和3.2μg/g,并且Pha-a的含量与水柱总Chl-a呈现极显著相关(P0.01),这是因为赤潮期间衰老或死亡的浮游植物及夜光藻沉降到表层沉积物所致。因此,赤潮的爆发可显著提升底栖生产力水平。  相似文献   

9.
甘油二烷基甘油四醚(glycerol dialkyl glycerol tetraethers, GDGTs)作为一种重要的膜脂化合物, 广泛存在于海洋水体和沉积物中。基于GDGTs对温度的敏感性, TEX86(TetraEther indeX of tetraethers consisting of 86 carbons)指标被广泛用于海洋古温度重建。然而, 研究表明GDGTs母源生物古菌也会受到环境中溶解氧(DO)变化的影响, 进而影响其膜脂组成, 但边缘海DO对GDGTs组成的影响仍不清楚。本文研究了夏季长江口及其邻近海域颗粒物与表层沉积物中GDGTs的含量与组成, 探讨了表层沉积物中GDGTs的来源及其组成对底层DO的响应。结果表明, 长江口及其邻近海域颗粒物GDGTs的含量随水深的增加而增加, 同时表层沉积物中的GDGT-2/GDGT-3和GDGT-0/Cren比值均与底层颗粒物相近, 表明沉积物中GDGTs主要来源于底层颗粒物的沉降输入。进一步对受陆源有机质输入影响较小的站位研究发现[有机质来源BIT(Branched and Isoprenoid Tetractter)指标<0.2]研究发现, 随着底层DO的降低, 表层沉积物中GDGT-0/Cren比值与底层DO具有较好的正相关性(R2=0.57,P<0.01), 提示GDGT-0/Cren具有指示夏季长江口及邻近海域底层DO变化的潜力。未来还需结合颗粒物与表层沉积物中古菌生物群落和完整极性GDGTs的分析, 进一步阐明GDGTs指示DO的机制及适用性。  相似文献   

10.
2006年6月长江口低氧区及邻近水域浮游植物   总被引:8,自引:1,他引:7       下载免费PDF全文
王丹  孙军  周锋  吴莹 《海洋与湖沼》2008,39(6):619-627
根据2006年6月2-11日在长江12低氧区及邻近水域(26°-34°N,121°-126°E)27个站位的调查,对长江口低氧区及邻近水域的浮游植物群落结构特征进行了相关研究.经Utermohl方法初步分析,共发现浮游植物130种,隶属4门57属.甲藻和硅藻是2006年6月长江口低氧区及邻近水域的主要浮游植物门类,其优势物种是:具齿原甲藻Prorocentrum dentatum(=Prorocentrum donghaiense)、米氏凯伦藻Karenia mikimotoi、尖刺伪菱形藻Pseudo-nitzschia pungens、柔弱伪菱形藻Pseudo-nitzschia delicatissima、锥状施克里普藻Scrippsiella trochoidea和具槽帕拉藻Paralia sulcata.调查区浮游植物物种以广温、广布型为主.本次调查海域浮游植物的细胞丰度介于0.0026×105-37.37×105个/dm3.平均值为1.47×105个/dm3;甲藻占浮游植物细胞丰度的比例最大,细胞丰度介于0.0002×105-32.01×105个/dm3,平均值为1.39×105个/dm3;其次为硅藻,细胞丰度介于0.0001×105-18.72×105个/dm3,平均值为0.52×105个/dm3.具齿原甲藻和米氏凯伦藻所占丰度比例分别达到45.81%和26.44%,优势度分别为0.30和0.18.具齿原甲藻细胞丰度最高值出现在调查海域北部3号站-20m水层,为3.19×106个/dm3;米氏凯伦藻细胞丰度最高值出现在调查海域西南部29号站表层,为1.71×106个/dm3.浮游植物细胞丰度在水体中的垂直分布为表层最大,随着水深增加而逐渐降低.根据浮游植物的表层分布和断面分布可以发现,细胞丰度高值主要集中在调查区的西南部和北部.东南部浮游植物细胞丰度较低.同时调查海域东南部浮游植物多样性指数和均匀度指数较高,近岸低氧区和中部区域则较低.调查区水体层化现象明显,表层水和底层水之间氧的交换变弱,有机碎屑和浮游植物大量繁殖后沉降分解可能导致了底层低氧区的形成.  相似文献   

11.
In order to determine the phytoplankton community composition, the modification and optimizing of the CHEMical TAXonomy (CHEMTAX) running was carried out through samples grouping, successive run and ev...  相似文献   

12.
In order to detect iron (Fe) stress in micro-sized (20–200 μm) diatoms in the Oyashio region, western subarctic Pacific during spring, immunological ferredoxin/flavodoxin assays were applied to samples collected from the surface layer in May 2005. Concomitantly, the community composition of the micro-sized phytoplankton and hydrographic conditions, including dissolved Fe and macronutrient concentrations, were also examined. Chlorophyll (Chl) a concentrations were <2 mg m−3 at all sampling stations, except at a station where the Chl a level was 9.0 mg m−3 and a micro-sized diatom bloom occurred. A high abundance of ferredoxin in micro-sized diatoms was detected only at a rather near-shore station where dissolved Fe and macronutrient concentrations were higher, indicating that the micro-sized diatoms did not suffer from iron deficiency. On the other hand, flavodoxin in micro-sized diatoms was often observed at the other stations, including the bloom station, where macronutrients were replete but dissolved Fe concentration was low (0.31 nM). A significant amount of chlorophyllide a, a degradation product of Chl a, was also observed at the bloom station, suggesting a decline of the diatom bloom. The micro-sized phytoplankton species at all the stations were mainly composed of the diatoms Thalassiosira, Chaetoceros, and Fragilariopsis spp. Our study indicates that micro-sized diatoms were stressed by Fe bioavailability during the spring season in the Oyashio region  相似文献   

13.
CHEMTAX analysis of high-performance liquid chromatography(HPLC) pigment was conducted to study phytoplankton community structure in the northern Bering Sea shelf, where a seasonal subsurface cold pool emerges. The results showed that fucoxanthin(Fuco) and chlorophyll a(Chl a) were the most abundant diagnostic pigments, with the integrated water column values ranging from 141 to 2 160 μg/m2 and 477 to 5 535 μg/m2, respectively. Moreover, a diatom bloom was identified at Sta. BB06 with the standing stock of Fuco up to 9 214 μg/m3. The results of CHEMTAX suggested that the phytoplankton community in the northern Bering Sea shelf was dominated by diatoms and chrysophytes with an average relative contribution to Chl a of 80% and 12%, respectively, followed by chlorophytes, dinoflagellates, and cryptophytes. Diatoms were the absolutely dominant algae in the subsurface cold pool with a relative contribution exceeding 90%, while the contribution of chrysophytes was generally higher in oligotrophic upper water. Additionally, the presence of a cold pool would tend to favor accumulation of diatom biomass and a bloom that occurred beneath the halocline would be beneficial to organic matter sinks, which suggests that a large part of the phytoplankton biomass would settle to the seabed and support a rich benthic biomass.  相似文献   

14.
A soil circulation occurs in the south of Cheju Island in the spring. Nutrients and its influence on chlorophyll a(Chl a) around the circulations were studied from April 9 to May 6, 2007. Spring bloom with elevated concentrations of Chl a was observed during the investigation. High concentrations of phosphate, nitrate and silicate at 0.6, 12, and 8 mmol/m3, respectively, were detected. A low water temperature prevented the growth of phytoplankton. Chl a concentrations in the study area might be strongly associated with the high silicate concentration.  相似文献   

15.
东亚边缘海区浮游植物春华的纬向与年际变化   总被引:1,自引:1,他引:0  
Combined studies of latitudinal and interannual variations of annual phytoplankton bloom peak in East Asian marginal seas(17°–58°N, including the northern South China Sea(SCS), Kuroshio waters, the Sea of Japan and the Okhotsk Sea) are rarely. Based on satellite-retrieved ten-year(2003–2012) median timing of the annual Chlorophyll a concentration(Chl a) climax, here we report that this annual spring bloom peak generally delays from the SCS in January to the Okhotsk Sea in June at a rate of(21.20±2.86) km/d(decadal median±SD). Spring bloom is dominant feature of the phytoplankton annual cycle over these regions, except for the SCS which features winter bloom. The fluctuation of the annual peak timing is mainly within ±48 d departured from the decadal median peak date, therefore this period(the decadal median peak date ±48 d) is defined as annual spring bloom period. As sea surface temperature rises, earlier spring bloom peak timing but decreasing averaged Chl a biomass in the spring bloom period due to insufficient light is evident in the Okhotsk Sea from 2003 to 2012. For the rest of three study domains, there are no significant interannual variance trend of the peak timing and the averaged Chl a biomass. Furthermore this change of spring phytoplankton bloom timing and magnitude in the Okhotsk Sea challenges previous prediction that ocean warming would enhance algal productivity at high latitudes.  相似文献   

16.
本文依托2008年夏季中国第三次北极科学考察航次,对西北冰洋海盆区和楚科奇海陆架营养盐及光合色素进行了测定和分析。根据海水理化性质将研究海区分为5个区,并使用CHEMTAX软件(Mackery et al.,1996)讨论了西北冰洋不同海区浮游植物群落组成结构及其与环境因子之间的关系。结果显示在楚科奇海陆架区,太平洋入流显著影响浮游植物生物量和群落结构。高营养盐Anadyr水团以及白令陆架水控制海域,表现出高Chl a且浮游植物以硅藻为主,相反,低营养盐如阿拉斯加沿岸流控制海域,Chl a生物量低且以微型,微微型浮游植物为主。在外陆架海区,海冰覆盖情况影响着水团的物理特征及营养盐浓度水平,相应地显著影响浮游植物群落结构。在海冰覆盖区域,硅藻生物量站到总Chl a生物量的75%以上;在靠近门捷列夫深海平原海区,受相对高盐的冰融水影响(MW-HS),营养盐浓度和Chl a浓度相对海冰覆盖区略高,浮游植物结构中微型、微微型藻类比重增加,硅藻比例则降至33%;南加拿大海盆无冰海区(IfB),表层水盐度最淡,营养盐浓度最低,相应地显示出低Chl a生物量,表明海冰消退,开阔大洋持续时间延长,将导致低生物量及激发更小型浮游植物的生长,并不有利于有机碳向深海的有效输出。  相似文献   

17.
东海陆架典型断面颗粒态氨基酸的分布及控制因素分析   总被引:3,自引:1,他引:2  
采用高效液相色谱法,通过现场调查对东海典型PN断面(文中为C断面)的颗粒态氨基酸(Particulate Amino Acids,PAA)进行了分析,并结合叶绿素a(Chla)、颗粒有机碳(POC)、颗粒有机氮(PON)及颗粒态氨基酸的构型特征(D和L型)等参数探讨了该区颗粒有机氮的来源和降解情况。结果表明,在长江口最大浑浊带,受咸淡水混合和生物现场生产双重作用影响,POC、PON以及PAA的总浓度均达到了极大值,其中,受再悬浮作用影响,底层水体中的有机物呈现高度降解的状态;近岸水华区域的颗粒态氨基酸则更多来源于现场生产,而且POC/Chla质量比值与降解因子DI值的负相关特征表明冲淡水向海洋输送的过程中,现场生产力对颗粒有机碳的贡献比重逐渐增大,悬浮颗粒物也变得越来越新鲜。值得关注的是,一些D型氨基酸[如D型天冬氨酸(D-Asp),D型丙氨酸(D-Ala)]与细菌生物量之间存在良好的正相关性,暗示颗粒态氨基酸在受到物理水团和生物现场生产作用控制的同时,还受控于微微型浮游生物以及异养细菌。  相似文献   

18.
通过2012年夏季第五次北极科学考察期间在楚科奇海及其邻近海域现场调查所获得的数据分析研究了海域的粒度分级叶绿素a浓度和初级生产力。结果表明,叶绿素a浓度和初级生产力的高值均出现在楚科奇海陆架区,并且远高于深海区。去程时调查海域水层平均叶绿素a浓度的变化范围为0.32~15.66mg/m3,平均(2.77±3.96)mg/m3,高值区出现在南部邻近白令海峡海域、北部阿拉斯加巴罗近岸和冰缘区;初级生产力的范围为50.11~943.28mg/(m2d),高值出现在冰缘水华区。返程时水层平均叶绿素a浓度的变化范围为0.07~1.52mg/m3,平均(0.41±0.40)mg/m3,高值仍出现在陆架区,但比去程时低了一个数量级;初级生产力的分布范围为12.31~41.35mg/(m2d),高值出现在陆架区。浮游植物粒度分级测定结果表明,在生物量较低的深海区,叶绿素a浓度和初级生产力的粒级结构以微微型浮游生物(Pico级份)占优势(其贡献率分别为46.1%和56.9%),小型(Net级份)和微型(Nano级份)对总叶绿素a浓度的贡献差异极小,分别为26.6%和27.3%,对总初级生产力的贡献分别为23.8%和19.3%;而在生物量较高的水深小于200m的陆架区,Net级份叶绿素a浓度所占百分比最高,Pico级份次之,Nano级份最低,分别为59.8%、27.9%和12.3%,初级生产力的粒级结构中叶绿素a浓度所占百分比由高到低同样是Net、Pico和Nano,所占百分比分别为60.6%,32.2%和7.2%。  相似文献   

19.
We adapted the dilution technique to study microzooplankton grazing of algal dimethylsulfoniopropionate (DMSP) vs. Chl a, and to estimate the impact of microzooplankton grazing on dimethyl sulfide (DMS) production in the Labrador Sea. Phytoplankton numbers were dominated by autotrophic nanoflagellates in the Labrador basin, but diatoms and colonial Phaeocystis pouchetii contributed significantly to phytomass at several high chlorophyll stations and on the Newfoundland and Greenland shelfs. Throughout the region, growth of algal Chl a and DMSP was generally high (0.2–1 d1), but grazing rates were lower and more variable, characteristic of the early spring bloom period. Production and consumption of Chl a vs. DMSP followed no clear pattern, and sometimes diverged greatly, likely because of their differing distributions among algal prey taxa and size class. In several experiments where Phaeocystis was abundant, we observed DMS production proportional to grazing rate, and we found clear evidence of DMS production by this haptophyte following physical stress such as sparging or filtration. It is possible that grazing-activated DMSP cleavage by Phaeocystis contributes to grazer deterrence: protozoa and copepods apparently avoided healthy colonies (as judged by relative growth and grazing rates of Chl a and DMSP), and grazing of Phaeocystis was significant only at one station where cells were in poor condition. Although we hoped to examine selective grazing on or against DMSP-containing algal prey, the dilution technique cannot differentiate selective ingestion and varying digestion rates of Chl a and DMSP. We also found that the dilution method alone was poorly suited for assessing the impact of grazing on dissolved sulfur pools, because of rapid microbial consumption and the artifactual release of DMSP and DMS during filtration. Measuring and understanding the many processes affecting organosulfur cycling by the microbial food web in natural populations remain a technical challenge that will likely require a combination of techniques to address.  相似文献   

20.
近20年渤海叶绿素a浓度时空变化   总被引:3,自引:0,他引:3  
浮游植物作为食物链的基础,对海洋生态系统具有重要作用。渤海作为我国最大的内海和重要渔业生物的产卵场、育幼场和索饵场,该区浮游植物研究具有重要意义。叶绿素a浓度是反映浮游植物生物量的重要指标。利用Google Earth Engine平台,对1997–2010年的宽视场海洋观测传感器(SeaWiFS)叶绿素a浓度数据和2002–2018年的水色卫星中分辨率成像光谱仪传感器(MODIS Aqua)叶绿素a浓度数据进行合并,并研究其时空变化特征。研究表明,近20年来,渤海全年叶绿素a浓度增加了14.1%,且增加显著。叶绿素a浓度在所有季节都呈现增加趋势;除11月外,其他各月都呈现稳定或增加趋势。从滦河入河口沿岸至渤海海峡的渤海中部,叶绿素a浓度增加较明显。同时也分析了海洋表面温度、风速和降水量数据。夏季渤海周边区域降水量和风速增加以及秋季海表温度的降低都有助于同季叶绿素a浓度的升高。渤海浮游植物可能受陆源营养物质输入影响较大。  相似文献   

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