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52.
南海北部早渐新世发生明显的营养供给和二氧化碳浓度的变化,相关地质记录为研究颗石藻的生理机制提供了理想的自然实验室。在本研究中,我们建立了一个新的颗石藻群落演化的指标,定义为E*比值。该比值由富营养属种和中等-贫营养属种的相对丰度计算而得(E*=e/(e+c)×100,e代表富营养属种,c代表中等-贫营养属种)。其中富营养属种包括小Reticulofenestra, Reticulofenestra lockeri组,Reticulofenestra bisecta组和Coccolithus pelagicus组,而中等-贫营养属种包括Cyclicargolithus spp.。E*指标与早渐新世营养盐指标具有较强的相关性,但在不同二氧化碳浓度的条件下表现不同的公变趋势。将群落组合与已发表的二氧化碳浓度数据对比,我们提出颗石藻可能在二氧化碳持续降低的环境下改变其对碳源和营养盐的利用方式,指示颗石藻的碳浓缩机制可能开始于早渐新世。 相似文献
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为研究岩相潮间带大型海藻有机碳含量及δ~(13)C值的季节变化特征,分别于2016年11月(秋)和2017年2月(冬)、5月(春)、8月(夏)对獐子岛岩相潮间带(39°01′E,122°43′N)的大型海藻进行调查,并对其有机碳含量和δ~(13)C值进行分析。结果表明:共鉴定出大型海藻3门49种,其中红藻门24种,占总数的48.98%;褐藻门17种,占总数的34.69%;绿藻门8种,占总数的16.33%。大型海藻种类数为春季(35种)冬季(24种)=夏季(24种)秋季(23种)。不同种类海藻体内的有机碳含量为15.54%~35.03%,δ~(13)C值在–33.42‰~–7.43‰之间变动。不同季节海藻体内有机碳含量为冬季春季夏季秋季,δ~(13)C值为夏季春季冬季秋季。 相似文献
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李刚 《海洋学报(英文版)》2019,38(8):78-85
Mixing of freshwater and seawater creates the well-known salinity gradients along the estuaries. In order to investigate how phytoplankton respond to the acute salinity changes, we exposed natural phytoplankton assemblies from the Jiulong River Estuary to differential saline field water while continuously monitoring their photosynthetic performances under both indoor-and outdoor-growth conditions. When the natural cell assemblies from salinity 30 field water were exposed to series low saline field water(salinity 25, 17, 13 and 7.5), the effective Photosystem II quantum yield(ΔF/F_m′) decreased sharply, e.g., to one-fifth of its initials after 5 min exposure to salinity 7.5 field water, and then increased fast during the following 40 min and almost completely recovered after 320 min. During such an exposure process, non-photochemical quenching(NPQ) sharply increased from 0 to 0.85 within 5 min, and then decreased to nearly 0 within the following 70 min. When these cells re-acclimated to salinity 7.5 field water were exposed to series high saline field water(salinity 13, 17, 25 and 30), a similar response pattern was observed, with the decreased ΔF/F_m′ accompanied with increased NPQ, and followed by the recovery-induced increase in ΔF/F_m′ and decrease in NPQ. A similar response pattern as ΔF/F_m′to the acute osmotic stress was also observed in the photosynthetic carbon fixation capacity according to radiocarbon(~(14)C) incorporation. Our results indicate that estuarine phytoplankton assemblies could rapidly recover from the acute osmotic stress, implying a potential cause for their frequent blooms in coastal-estuarine waters where despite drastically varying salinity, available nutrients are abundant due to the land-derived runoffs or mixing-caused relaxations from sediments. 相似文献
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М.Lebedeva 《山地科学学报》2009,6(2):132-138
Micromorphology of solonetz species with special attention to natric horizon was studied in microcatenas at the Dzhanybek Research Station (northwestern Caspian Lowland). The solonetzic (natric) horizon is easily identified, and it occurs at varying depths, which are the criteria for subdividing solonetzes into 4 species, namely, crusty, shallow, medium and deep. In this sequence, the depth of humus-accumulative horizons increases, and the upper boundary of salinity manifestations goes down. The following micromorphological features are assumed as typical for natric horizons: angular blocky microstructures with partially accommodated aggregates having sharp boundaries and narrow plane-like packing voids; b-fabric speckled in the aggregates' centers and monostriated at their peripheries merging into stress coatings; very few interpedal voids; organo-clay coatings; humus- enriched infillings; no calcite and gypsum pedofeatures. A complete set of "natric" features was found only in the crusty solonetz; the shallow solonetz lacks only illuviation coatings, while the medium and deep species have several modifications of fabric elements: blocky aggregates have a rounded shape and are penetrated by biogenic channels favoring their further biogenic reworking; plant residues became more abundant and diverse, and blackened tissues occur; illuviation clay coatings evolved into papules; stress coatings gave birth to striated bfabrics, thus maintaining a high plasma orientation. The thin sections of natric horizons made 50 and 20 years ago were examined to study the influence of environmental changes (increase in precipitation and rise of ground water table) on micropedofeatures. The following processes took place: (i) in the topsoil: humus accumulation and biogenic structurization; (ii) in the natric horizon - re-arrangement of clay coatings into micromass b-fabrics; and (iii) in the lower part of the natric horizon - development of pseudosand fabric, calcite and gypsum formation. The trends revealed are in good agreement with the environmental events. 相似文献
57.
排海污水处理直接关系到近海的污染,而氮、磷及有机污染物是近海的重要污染物。文章综述了几种对氮、磷及有机污染物处理的新工艺技术和各工艺的进展状况并提出应尽快推广应用。 相似文献
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The Qiongdongnan Basin and Zhujiang River(Pearl River) Mouth Basin, important petroliferous basins in the northern South China Sea, contain abundant oil and gas resource. In this study, on basis of discussing impact of oil-base mud on TOC content and Rock-Eval parameters of cutting shale samples, the authors did comprehensive analysis of source rock quality, thermal evolution and control effect of source rock in gas accumulation of the Qiongdongnan and the Zhujiang River Mouth Basins. The contrast analysis of TOC contents and Rock-Eval parameters before and after extraction for cutting shale samples indicates that except for a weaker impact on Rock-Eval parameter S_2, oil-base mud has certain impact on Rock-Eval S_1, Tmax and TOC contents. When concerning oil-base mud influence on source rock geochemistry parameters, the shales in the Yacheng/Enping,Lingshui/Zhuhai and Sanya/Zhuhai Formations have mainly Type Ⅱ and Ⅲ organic matter with better gas potential and oil potential. The thermal evolution analysis suggests that the depth interval of the oil window is between 3 000 m and 5 000 m. Source rocks in the deepwater area have generated abundant gas mainly due to the late stage of the oil window and the high-supper mature stage. Gas reservoir formation condition analysis made clear that the source rock is the primary factor and fault is a necessary condition for gas accumulation. Spatial coupling of source, fault and reservoir is essential for gas accumulation and the inside of hydrocarbon-generating sag is future potential gas exploration area. 相似文献