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71.
有机氯农药(DDT,BHC)和多氯联苯(PCBs)是人工合成的有机氯化合物。它们的化学性质稳定,在环境中能持久地残留并不易受环境中各种因素的作用而降解,它们在生物体内的累积和生物链中的浓缩已构成对人类和生态系统的潜在危害,早已引起世界各国的关注,并公认为全球性的环境污染物。许多国家的学者对不同海区、各大洋海水、沿岸海水、沉积物以及海洋生物体内的DDT, BHC, PCBs作了广泛深入的调查研究(Elear, 1976; Edwand et al, 1975; Ehrhardt, 1981; Harvey, 1973; Osterroht, 1977;Robert, 1976)。我国对近海海域有机氯农药污染状况作过一些调查,但对多氯联苯未见有过报道。、1980年8月作者在渤海湾采集了26个站位的海水样品,22个站位的沉积物样品和8个毛蚶(Arasubcrenata Lischke)样品,分析了其中DDT, BHC, PCBs的含量水平,并对其在渤海湾中的分布特征作了初步探讨。 相似文献
72.
73.
采用Wilbert蛋白银法及Chatton—Lwoff银浸法对一种附生于栉孔扇贝鳃丝上的寄生车轮虫进行了光镜水平下的研究。依据其形态学和纤毛图式特征,该种被鉴定为TrichodinajadranicaRaabe,1958.此为我国新记录,同时也是第一例有关外寄生于扇贝鳃表纤毛虫原生动物的报道。 相似文献
74.
NotesEcologicalstudyofmacrobenthosinFuqingBay¥//INTRODUCTIONTheecologicalstudyOfmacrobenthoshasnotbeenrePOrtedthoughthemarine... 相似文献
75.
使用块体混合层模式对一个固定海洋观测站所测的上层海洋之物理特性进行了模拟,结果发现了难以重复观测到的许多物理特征。文章提出了水块混合层模式,着重模拟了扩展湾流体系(EGSS)中的一个水块,在它被海流从佛罗里达海峡(24°N,80°W)带到挪威海(68°N,10°E)的过程中,其物理特性(其中包括温度、盐度、混合层深度和夹卷速度)随时间的变化。模拟结果较好地再现了所观测的物理特性的演化。 相似文献
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78.
Under the artificial condition the 59Fe morphology in sea water, its concentration in sediment and phytoplankton, its distribution and metabolism in tissue organs of marine animals were studied. The results showed that the morphology of 59Fe was in a particulate state in sea water. The adsorption rule of 59Fe by three kinds of sediments was similar. The concentration ability of 59Fe by phytoplankton was very strong. The critical concentration organs of S9Fe by marine animals were viscera. The gross radioactivity of 59Fe was mainly concentrated in protein. The concentration factor of 59Fe by DNA was the highest one. After excretion experiment, 59Fe of all the tissue organs was not detected. Small part of59Fe remained in the organic acid and protein state. There was a redistribution process in sediment for59Fe. 相似文献
79.
Riccardo?Geletti Emanuele?LodoloEmail author Anatoly?A.?Schreider Alina?Polonia 《Marine Geophysical Researches》2005,26(1):17-28
The structural framework of the southern part of the Shackleton Fracture Zone has been investigated through the analysis of
a 130-km-long multichannel seismic reflection profile acquired orthogonally to the fracture zone near 60° S. The Shackleton
Fracture Zone is a 800-km-long, mostly rectilinear and pronounced bathymetric lineation joining the westernmost South Scotia
Ridge to southern South America south of Cape Horn, separating the western Scotia Sea plate from the Antarctic plate. Conventional
processing applied to the seismic data outlines the main structures of the Shackleton Fracture Zone, but only the use of enhanced
techniques, such as accurate velocity analyses and pre-stack depth migration, provides a good definition of the acoustic basement
and the architecture of the sedimentary sequences. In particular, a strong and mostly continuous reflector found at about
8.0 s two-way traveltime is very clear across the entire section and is interpreted as the Moho discontinuity. Data show a
complex system of troughs developed along the eastern flank of the crustal ridge, containing tilted and rotated blocks, and
the presence of a prominent listric normal fault developed within the oceanic crust. Positive flower structures developed
within the oceanic basement indicate strike-slip tectonism and partial reactivation of pre-existing faults. Present-day tectonic
activity is found mostly in correspondence to the relief, whereas fault-induced deformation is negligible across the entire
trough system. This indicates that the E–W-directed stress regime present in the Drake Passage region is mainly dissipated
along a narrow zone within the Shackleton Ridge axis. A reappraisal of all available magnetic anomaly identifications in the
western Scotia Sea and in the former Phoenix plate, in conjunction with new magnetic profiles acquired to the east of the
Shackleton Fracture Zone off the Tierra del Fuego continental margin, has allowed us to propose a simple reconstruction of
Shackleton Fracture Zone development in the general context of the Drake Passage opening. 相似文献
80.
A nutrient dynamic model coupled with a 3D physical model has been developed to study the annual cycle of phytoplankton production in the Yellow Sea. The biological model involves interactions between inorganic nitrogen (nitrate and ammonium), phosphate and phytoplankton biomass. The model successfully reproduces the main features of phytoplankton-nutrient variation and dynamics of production. 1. The well-mixed coastal water is characterized by high primary production, as well as high new production. 2. In summer, the convergence of tidal front is an important hydrodynamic process, which contributes to high biomass at frontal areas. 3. The evolution of phytoplankton blooms and thermocline in the central region demonstrate that mixing is a dominant factor to the production in the Yellow Sea. In this simulation, nitrate- and ammonium-based productions are estimated regionally and temporally. The northern Yellow Sea is one of the highly ranked regions in the Yellow Sea for the capability of fixing carbon and nitrogen. The annual averaged f-ratio of 0.37 indicates that regenerated production prevails over the Yellow Sea. The result also shows that phosphate is the major nutrient, limiting phytoplankton growth throughout the year and it can be an indicator to predict the bloom magnitude. Finally, the relative roles of external nutrient sources have been evaluated, and benthic fluxes might play a significant role in compensating 54.6% of new nitrogen for new production consumption. 相似文献