首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到10条相似文献,搜索用时 62 毫秒
1.
沉积物释放是海洋环境中甲烷(CH_4)的重要来源。通过2013年7月和8月两个航次,对东、黄海泥质区沉积物中CH_4浓度的垂直分布和沉积物-水界面通量进行了研究。结果表明,除个别站位外,黄海沉积物(50 cm以浅)中CH_4的浓度变化范围在0.2~1.0μmol/L之间,长江口及浙闽沿岸附近的沉积物中CH_4浓度则要更高(1.0~2.0μmol/L),而东海东部海域沉积物中CH_4浓度波动范围为0.2~3.0μmol/L。总体来说,东、黄海沉积物中CH_4浓度偏低,这可能与观测到的高浓度硫酸盐(20 mmol/L)有关。通过整柱密室培养实验估算出东、黄海沉积物-水界面CH_4释放速率在0.64~2.12μmol/(m2·d)之间,东、黄海沉积物CH_4释放总量为6.7×108 mol/yr;但采用菲克定律估算的CH_4扩散通量则要比现场培养的结果低2~5倍,表明不同的方法在估算沉积物-水界面CH_4通量上还具有一定的不确定性。  相似文献   

2.
3.
基于普林斯顿(POM)模式,采用不同的垂直混合方案并考虑太阳短波辐射的作用,对渤海、黄海夏季垂直热结构进行了数值试验。试验结果表明,夏季波浪混合控制着渤海、黄海上混合层的形成,加入波浪混合能明显改善陆架浅海的夏季温度垂直结构。太阳短波辐射对渤海、黄海夏季上层垂直热结构有一定的作用,研究夏季海洋上层垂直热结构应该包括太阳短波辐射的影响,特别是对于水深相对较深的黄海。  相似文献   

4.
5.
黄海、渤海沉积物中生物硅的测定及存在问题的讨论   总被引:16,自引:3,他引:16  
叶曦雯  刘素美  张经 《海洋学报》2002,24(1):129-134
硅是水生态系统中构成生物群落的重要元素[1].海洋中硅主要来源于河流输入(4.2±0.8)×1014g/a和热液喷发(1.9.77;10)×1014g/a[2].另外冰川风化、低温海底玄武岩风化、沉积物的成岩作用和大气沉降亦是其来源之一[3].沉积物中的生物硅又称生物蛋白石(简称蛋白石),指化学方法测定的无定形硅的含量,主要由硅藻、放射虫、硅鞭毛虫和海绵骨针组成.沉积物中蛋白石的积累反映了生产力在时间和空间尺度的变化[4,5].对于生物硅的测定,至今已提出了许多种方法.其中最灵敏、应用最广泛的是化学提取法[6,7].  相似文献   

6.
选取长江口外赤潮多发区沉积物柱状样,在高分辨率测年基础上,通过有机碳、有机碳同位素(δ13C)、生物硅、绿素等多项指标的分析获得了调查海区古生产力的变化信息。并结合近几十年来营养盐浓度及组成结构的变化探讨了海洋浮游藻类组成结构的变化在海洋古环境中的记录。柱状样年代可追溯到20世纪40年代初。δ13C值在柱中的分布为-26.15×10-3~-19.5×10-3,表明有机碳为陆源与海生的混合。生物标志物在柱状样中的分布可大致分为三个阶段,50年代以前含量均较低;50年代至80年代含量均增加,表明海洋浮游藻类活动强烈且以硅藻为主,与此阶段长江口营养盐浓度迅速增加相对应;80年代以后,生物硅的含量下降至整个柱中最低水平,绿素有所降低,但高于50年代前的水平,而有机碳含量增加,表明在该时段硅藻生物量降低,其他藻类生物量有所增加,这与长江口营养盐氮盐持续增加而硅酸盐逐年降低、氮与磷的含量比值、磷与硅的含量比值迅速增大有关。沉积记录还表明此阶段陆源有机碳的贡献增强。  相似文献   

7.
8.
利用2008年夏季我国第3次北极科学考察资料,基于流式细胞技术,对白令海北部陆架区的微微型浮游植物丰度、细胞大小(碳含量)、色素浓度的分布特征进行了分析,并对该类群的环境适应性进行了研究。结果表明,微微型浮游植物中仅含聚球藻和真核藻,其丰度范围分别为0.14×106 2.69×106和0.23×106-12.49×106个/dm3。聚球藻的叶绿素a和藻红蛋白含量、微微型真核藻的叶绿素a含量与类群丰度以及微微型真核藻的类胡萝卜素含量与细胞大小间均存在同向变化趋势。两类藻偏向于喜温嗜淡型,更适合在寡营养环境中保持较高的丰度,但能在高营养盐浓度下形成相对较高的碳含量。越接近陆地,细胞越小,丰度越大,碳含量及FL2/FL3越低;所处层位越深、纬度越高,则细胞越大,碳含量及FL2/FL3越高。北极气温升高和径流量的增加有利于陆架区微微型浮游植物类群丰度的增加。  相似文献   

9.
In October and November 2002, high and relatively high values of the chlorophyll a concentration at the sea surface (C chl) were observed in the English Channel (0.47 mg/m3), in the waters of the North Atlantic Current (0.25 mg/m3), in the tropical and subtropical anticyclonic gyres (0.07–0.42 mg/m3), and also in the southwestern region of the southern subtropical anticyclonic gyre (usually 0.11–0.23 mg/m3). The central regions of the southern subtropical anticyclonic gyre (SATG) and the North Atlantic tropical gyre (NATR) were characterized by lower values of C chl (0.02–0.08 mg/m3 for the SATG and 0.07–0.14 mg/m3 for the NATR). At most of the SATG stations, the values of the surface primary production (C phs) varied from 2.5 to 5.5 mg C/m3 per day and were mainly defined by the fluctuations of C chl (r = +0.78) rather than by those of the assimilation number (r = +0.54). The low assimilation activity of phytoplankton in these waters (1.3–4.6 mg chl a per hour) pointed to a lack of nutrients. An analysis of the variability of their concentration and the composition of photosynthetic pigments showed that, in the waters north of 30° N, the growth of phytoplankton was mostly restricted by the deficiency of nitrogen, while, in more southern areas, at the majority of stations (about 60%), the phosphorus concentrations were the minimum. At the low concentrations of nitrates and nitrites, ammonium represented itself as a buffer that prevented planktonic algae from extreme degrees of nitric starvation. In the tropical waters and in the waters of the SATG, the primary production throughout the water column varied from 240 to 380 mg C/m2 30° per day. This level of productivity at stations with low values of C chl (<0.08 mg/m3) was provided by a well-developed deep chlorophyll maximum and a high transparency of the water. The light curves of photosynthesis based on in situ measurements point to the high efficiency of utilizing the penetrating solar radiation by phytoplankton on cloudy days.  相似文献   

10.
In 1993 and 2007 when the expeditions of the Shirshov Institute of Oceanology were performed in the Kara Sea, a significant part of its aquatic area was occupied by lenses of desalinated water. The fresh-water is supplied by the runoff of the Ob and Yenisei rivers, as well as by meltwaters. The report considers the features of the freshwater chemical transformation in the sea. It is shown that the contribution of meltwaters is small in the highly desalinated lenses (with salinity below 15‰) and the freshwater is supplied by the riverine runoff. It is also shown that, under definite conditions, it is possible to determine the relative shares of the Ob and Yenisei waters using the chemical parameters (the silicon and alkalinity). The data of 1993 when two lenses as such were found in the sea were confirmed; at that, the waters of the Yenisei and Ob rivers were prevailing in the western and northeastern lenses, respectively. In 2007, one lens was found in the treated area of the sea. It is shown that the chemical characteristics of the freshwater in the lens appeared to be sufficiently different from those of the Ob river but similar to the Yenisei river’s characteristics according to the data of 1993. A map of the Ob’s and the Yenisei’s water spreading over the sea’s aquatic area is presented.  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