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101.
南海溶解氧垂直结构的季节变化分析 总被引:2,自引:0,他引:2
溶解氧在生物活动较小的情况下,与温盐相似,同样具有保守性。本文基于WOD05数据集中实际观测的溶解氧标准层资料,对南海溶解氧的垂直结构及其季节变化进行阐述,指出在浅水陆架区、中央海盆和吕宋岛以东深水区,溶解氧具有不同的垂向分布特点。重点分析了深水区的溶解氧垂向结构,发现其极大值存在季节性变化,量值在冬、春较大,夏、秋较小,出现的深度夏季最深,超过50 m,秋、冬较浅且现象不够明显;极小值基本不存在季节变化,出现的深度约860 m;对比温盐关系曲线,发现溶解氧极大值对应着南海次表层水团上界、衰减缓慢的稳定阶段对应次表层水团高盐核心水层、而极小值则对应中、深层水团的交界。 相似文献
102.
长江口邻近海域溶解态铝的分布及季节变化 总被引:2,自引:0,他引:2
基于2006年6、8、10月对长江口邻近海域的大面调查资料,分析了溶解态Al的分布及季节变化,讨论了水团混合、悬浮颗粒物及浮游植物水华对溶解态铝分布的影响。结果表明,3个航次溶解态铝的水平分布规律相似,都是近岸浓度最高,随着离岸距离的增加浓度降低,6、8、10月溶解态Al的平均浓度分别为(119±77)、(109±80)和(138±73)nmol/L,统计结果表明该海域的溶解态铝具有明显的季节变化。影响溶解态铝分布的主要因素有水团混合、底沉积物的再悬浮以及浮游植物的调节作用。 相似文献
103.
通过PCR扩增直接测序得到10种徐闻石珊瑚线粒体Cyt b基因部分序列,分析其碱基组成和变异频率,并采用Neighbor-Joining和Maximum Parsimony法构建系统发育树。结果显示:序列中A+T比例为61.0%,G+C比例为39.0%,前者明显高于后者,碱基替换主要发生在密码子第3位;滨珊瑚科分类与传统分类存在一定差异,揭示传统形态学分类可能受珊瑚骨骼生长可塑性限制,造成分类不准确;刺柄珊瑚属与蜂巢珊瑚科各属亲缘关系较近。 相似文献
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利用连续小波分析1962~2009年西畴县年降水量和年平均气温序列的小波变化特征,揭示了西畴县降水量与平均气温存在多时间尺度的周期变化特征。其中降水有2个明显的特征时间尺度,分别是4年和8年,平均气温存在以准2~4年为周期的周期振荡。此外,也可以看出近48年来,平均气温存在明显升高的趋势,降水也有减少的趋势,为掌握西畴县的气候变化规律及今后的气象预报服务工作提供了一定的参考价值。 相似文献
109.
Seismic observations have shown structural variation near the base of the mantle transition zone(MTZ)where subducted cold slabs,as visualized with high seismic speed anomalies(HSSAs),flatten to form stagnant slabs or sink further into the lower mantle.The different slab behaviors were also accompanied by variation of the "660 km" discontinuity depths and low viscosity layers(LVLs) beneath the MTZ that are suggested by geoid inversion studies.We address that deep water transport by subducted slabs and dehydration from hydrous slabs could affect the physical properties of mantle minerals and govern slab dynamics.A systematic series of three-dimensional numerical simulation has been conducted to examine the effects of viscosity reduction or contrast between slab materials on slab behaviors near the base of the MTZ.We found that the viscosity reduction of subducted crustal material leads to a separation of crustal material from the slab main body and its transient stagnation in the MTZ.The once trapped crustal materials in the MTZ eventually sink into the lower mantle within 20-30 My from the start of the plate subduction.The results suggest crustal material recycle in the whole mantle that is consistent with evidence from mantle geochemistry as opposed to a two-layer mantle convection model.Because of the smaller capacity of water content in lower mantle minerals than in MTZ minerals,dehydration should occur at the phase transformation depth,~660 km.The variation of the discontinuity depths and highly localized low seismic speed anomaly(LSSA) zones observed from seismic P waveforms in a relatively high frequency band(~1 Hz) support the hypothesis of dehydration from hydrous slabs at the phase boundary.The LSSAs which correspond to dehydration induced fluids are likely to be very local,given very small hydrogen(H~+) diffusivity associated with subducted slabs.The image of such local LSSA zones embedded in HSSAs may not be necessarily captured in tomography studies.The high electrical conductivity in the MTZ beneath the northwestern Pacific subduction zone does not necessarily require a broad range of high water content homogeneously. 相似文献
110.
Different downstream variation patterns were observed for a range of bed sediment-borne metals (aqua regia-extractable fraction) in a subtropical stream system receiving acid mine drainage. Mine-originated Fe tended to be deposited in the acidic (mean pH < 4.9) upstream reach in forms of goethite and/or hematite. In contrast, other metals tended to be transported farther downstream and settled in a low-gradient reach with high pH (mean pH > 5.6). The peak of sediment-borne Al, Be, Ca, Cd, Co, Cu, La, Mn, Ni and Zn corresponded very well with the peak of the sediment-borne organic matter, suggesting a close association between the water-borne organic colloids and the inorganic metal oxides/hydroxides during their transport. The marked increase in the sediment-borne Al and Pb started more upstream than the other metals, suggesting that the water-borne Al and Pb were more susceptible to pH rise-induced precipitation, as compared to the other metals. It appeared that the organic colloids played no important role in Pb transport and settlement. The iron precipitates had a limited role to play in affecting the transport and fates of other metals since they were predominantly formed and deposited in the acidic reach, which made them incapable of scavenging cationic metals by co-precipitation or adsorption. 相似文献