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31.
《Limnologica》2017
To test the hypothesis of longitudinal variations in phytoplankton compositions from a eutrophic lake to its river downstream and determine the length of the transition zone, we applied functional groups as well as taxonomical methods to this coupled aquatic system, which is composed of the Dianchi Lake upstream and the Tanglang River downstream, by sampling at 9 stations during Microcystis blooms in the Dianchi Lake in 2013. The longitudinal variations in phytoplankton compositions from lacustrine species to fluvial species were reflected by: (1) the shift from Microcystis to Chlorococcales green algae and centric diatoms; (2) the shift from the dominance of codon M to the coexistence of a variety of coda without one outstanding codon; and (3) except for codon M, the shift from lacustrine coda (H1, LO, T) towards coda that are adapted to both lacustrine and fluvial circumstances (MP, X1, X2). The prominent difference of phytoplankton compositions between the Dianchi Lake and the lower reaches of the Tanglang River revealed that there was a transition zone in between. The upper and middle reaches of the Tanglang River with a length of approximately 26.4 km were considered the transition zone because: (1) the dominant lentic codon M in the Dianchi Lake disappeared at the lower reaches of the river; (2) the amount of codon P that is sensitive to stratification rose at the beginning of the river; and (3) the codon T, which is well adapted to the persistently mixed layer or epilimnia of lakes, lost a large number of biomass at the upper and middle reaches of the Tanglang River. In this study, we found that the eutrophic lake had a significant influence on the river downstream. In addition, we found that functional groups were sensitive to the changes of external aquatic conditions and helpful in determining the length of the transition zone. 相似文献
32.
J. Taylor G. Nicoli G. Stevens D. Frei J.‐F. Moyen 《Journal of Metamorphic Geology》2014,32(7):713-742
Anatexis of metapelitic rocks at the Bandelierkop Quarry (BQ) locality in the Southern Marginal Zone of the Limpopo Belt occurred via muscovite and biotite breakdown reactions which, in order of increasing temperature, can be modelled as: (1) Muscovite + quartz + plagioclase = sillimanite + melt; (2) Biotite + sillimanite + quartz + plagioclase = garnet + melt; (3) Biotite + quartz + plagioclase = orthopyroxene ± cordierite ± garnet + melt. Reactions 1 and 2 produced stromatic leucosomes, which underwent solid‐state deformation before the formation of undeformed nebulitic leucosomes by reaction 3. The zircon U–Pb ages for both leucosomes are within error identical. Thus, the melt or magma formed by the first two reactions segregated and formed mechanically solid stromatic veins whilst temperature was increasing. As might be predicted from the deformational history and sequence of melting reactions, the compositions of the stromatic leucosomes depart markedly from those of melts from metapelitic sources. Despite having similar Si contents to melts, the leucosomes are strongly K‐depleted, have Ca:Na ratios similar to the residua from which their magmas segregated and are characterized by a strong positive Eu anomaly, whilst the associated residua has no pronounced Eu anomaly. In addition, within the leucosomes and their wall rocks, peritectic garnet and orthopyroxene are very well preserved. This collective evidence suggests that melt loss from the stromatic leucosome structures whilst the rocks were still undergoing heating is the dominant process that shaped the chemistry of these leucosomes and produced solid leucosomes. Two alternative scenarios are evaluated as generalized petrogenetic models for producing Si‐rich, yet markedly K‐depleted and Ca‐enriched leucosomes from metapelitic sources. The first process involves the mechanical concentration of entrained peritectic plagioclase and garnet in the leucosomes. In this scenario, the volume of quartz in the leucosome must reflect the remaining melt fraction with resultant positive correlation between Si and K in the leucosomes. No such correlation exists in the BQ leucosomes and in similar leucosomes from elsewhere. Consequently, we suggest disequilibrium congruent melting of plagioclase in the source and consequential crystallization of peritectic plagioclase in the melt transfer and accumulation structures rather than at the sites of biotite melting. This induces co‐precipitation of quartz in the structures by increasing SiO2 content of the melt. This process is characterized by an absence of plagioclase‐induced fractionation of Eu on melting, and the formation of Eu‐enriched, quartz + plagioclase + garnet leucosomes. From these findings, we argue that melt leaves the source rapidly and that the leucosomes form incrementally as melt or magma leaving the source dumps its disequilibrium Ca load, as well as quartz and entrained ferromagnesian peritectic minerals, in sites of magma accumulation and escape. This is consistent with evidence from S‐type granites suggesting rapid magma transfer from source to high level plutons. These findings also suggest that leucosomes of this type should be regarded as constituting part of the residuum from partial melting. 相似文献
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塔里木盆地库车坳陷东部阳霞煤矿一带出露绿泥绢云母石英片岩,原被划分为古元古界地层,该片岩中的碎屑锆石呈自形形态,锆石的环带丰富,具有典型的岩浆锆石特点。对锆石进行的ICP MS U Pb同位素地质年代学研究表明,锆石的年龄介于1179~794 Ma之间,峰期年龄集中于810~794 Ma,说明该片岩之原岩的沉积上限年龄不早于794 Ma。结合区域资料分析认为,该基底地层应该属于新元古界,形成时代相对较新,因此导致库车坳陷具有较高的地温梯度和较强的构造活动性。此外,在810~794 Ma时塔里木地块东北部发生过岩浆事件,该事件应该与塔里木地块的裂解有关。 相似文献
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青海祁漫塔格玛兴大坂晚三叠世花岗岩年代学、地球化学及Nd-Hf同位素组成 总被引:11,自引:5,他引:6
青海东昆仑祁漫塔格玛兴大坂岩体岩石类型为二长花岗岩,主要矿物组合为斜长石(30%~35%)+钾长石(25%~33%)+石英(23%~25%)+黑云母(3%~5%),全岩地球化学总体显示SiO2为68.61%~69.37%,K2O为3.95%~4.08%,P2O5为0.11%~0.12%,FeOT/MgO为4.02~4.21,A/CNK(0.96~0.99)<1,为高钾钙碱性系列准铝质花岗岩,具有Ⅰ型花岗岩的特征.其稀土元素配分图和蛛网图显示具有大陆弧花岗岩特点,富集Rb、Th等大离子亲石元素,而相对亏损Sr、P、Ti、Nb和Ta等元素;玛兴大坂二长花岗岩的143Nd/144 Nd比值为0.512326~0.512340、εNd(t)=-2.5~-3.2,指示该花岗岩具有壳幔混合Ⅰ型花岗岩的特征;锆石LA-MC-ICP-MS U-Pb年龄数据显示玛兴大坂二长花岗岩体的侵位时代为218±2Ma;锆石176Hf/177 Hf比值较低(0.28251~0.282623),εHf(t)值为-4.43~-0.62,可能为幔源物质(大的正εHf(t)值)与古老地壳物质(大的负εHf(t)值)混合后的结果.Nd同住素tDM2(1.20~1.25Ga)与Hf同位素tDM2(1.08~1.28Ga)基本一致,推测中元古代末期祁漫塔格地区存在壳幔分异作用,而玛兴大坂二长花岗岩的部分源岩为中元古代以前的物质.认为玛兴大坂二长花岗岩与祁漫塔格晚三叠世火山岩形成时代相近,响应于三叠纪末古特提斯洋的关闭. 相似文献
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青藏高原东南缘哀牢山大坪金矿成矿流体演化 总被引:5,自引:2,他引:3
大坪金矿是青藏高原东南缘哀牢山构造带中的大型石英脉型金矿床,由北矿区和南矿区组成.北矿区和南矿区的成矿流体包裹体均一温度及其氢、氧、硫同位素、气液相成份的测试结果表明其成矿温度为:187~329℃(平均为281℃)和168~338℃(平均为264℃)、氢同位素组成(δDV-SMOW)为:-70‰~-81‰和-71‰~-86‰、氧同位素组成(δ18OH2o)为:2.9‰~9.8‰和3.5‰~5.1‰、硫同位素值(δ34S)为:0.7‰~15.5‰和10.6‰~15.8‰.在氢-氧同位素图解上,所有样品均落在岩浆水和地下水趋势线之间.其中,北矿区样品更靠近岩浆水区域,部分样品落在岩浆水区域内,南矿区相时靠近地下水区域.流体包裹体成份分析表明,气相成份主要为H2O和CO2,其次为N2,并含有少量CH4、C2H2、C2H4、C2H6和CO;离子成份主要为K+、Na+、Ca2+、Cl-和SO42-,及少量NO3-、Mg2+、F-和Br-.含金石英脉ESR定年数据揭示了北矿区成矿时代为27.2~29.1Ma,南矿区为17.3~22.1Ma.总体来看,北矿区成矿时代要早于南矿区;北矿区成矿流体是以岩浆流体为主,并有少量地下水混入,而南矿区成矿流体中地下水的参与程度要大于北矿区;成矿流体具有从北矿区向南矿区、从早到晚以及从深部向浅部,岩浆流体组分相对减少,地下水组分逐渐增加的演化趋势. 相似文献
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