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31.
本文报导了山西省中条山的真菌116种和1个变种,隶属于24科67属,食用菌64种,药用菌20种,毒菌8种,木腐菌39种,菌根菌7种;其中35种是山西省新记录。全部标本由秦孟龙、赵春贵于1985年8月22日至29日采自沁水县。全部标本保存在山西大学真菌标本室。  相似文献   
32.
龙门山中段茂汶─汶川韧性剪切带中可见到绿片岩相到角闪岩相的古生界。该地的巴罗型中压变质相相当于松潘—甘孜褶皱带中地壳的绿泥石带,构成了北东—南西向的茂汶—汶川变质带。雪隆包花岗岩体正位于该变质带的中心部位。三次韧性变形作用(D1~D3)造就了印支褶皱带,并在三叠纪末末形成了松潘—甘孜褶皱带。D1变形作用为北东—南西向的挤压作用和冲断作用,形成了大型的等斜褶皱,使古生界缩短和加厚。在持续的D2北京—南西向挤压作用下,松潘—甘孜褶皱带和稳定的扬子克拉通之间的差异应变由茂汶—汶川剪切带中非同轴左旋剪切作用所容纳。雪隆包花岗岩体是在D2变形作用的晚期侵入到剪切带的。产生蓝晶石的变质条件也是在D2或D2变形作用后出现的。D3变形作用为北西—南东向挤压,在局部地方形成糜棱岩状的道冲剪切带。这些特征与绿泥石退变质作用有关,揭示出在D3变形期间茂汶—汶川变质带有较大幅度的隆升。尽管雪隆包岩体在空间上与茂汶—汶川变质带有关,但作者认为其变质作用是岩层加厚引起的热作用重新达到平衡的产物,而不是由侵入作用引起的热接触变质作用。然而,与岩浆作用伴生的高温和活动性流体仍是产生D3局部变形和雪隆包岩体隆升的原因,这也是局部出现角闪告相  相似文献   
33.
龙门山造山带中生代花岗岩带成因及其构造意义   总被引:3,自引:0,他引:3  
总结了龙门山造山带印支末 -燕山期花岗岩带地质地球化学特征及演化规律。在探讨其成因及构造意义的基础上 ,将龙门山造山带与传统的 A型与 B型俯冲带的岩浆作用进行了对比 ,指出龙门山造山带的岩浆作用的不同特点是其区别于传统 A型、B型及其他的一些内陆挤压俯冲带的重要证据  相似文献   
34.
芦芽山自然保护区生态旅游客源特征分析   总被引:4,自引:1,他引:4  
生态旅游给自然保护区的发展赋予了新的机遇。芦芽山自然保护区具有丰富的生态旅游资源,但其具有明显的季节性。旅游市场以太原,大同和忻州区为主,25岁-45岁的游客占有绝对优势,大部分游客月收入400元-800元,其职业为工人,干部和教师为主,学历以高中以上为主,这不仅与游客的经济和社会地位相适应,而且与芦芽山的旅游品牌相一致。  相似文献   
35.
The U-Pb isotope compositions of rutile, omphacite and garnet in the eclogite from the Jinheqiao area in the Southern Dabie ultrahigh-pressure metamorphic zone were analyzed. The consistent high precision U-Pb age (218 ±(1.2) Ma of rutile in eclogite from the Dabie Mountains was obtained by two ways of isochron and common Pb correction based on the composition of omphacite. This proves that the omphacite in eclogite has a U/Pb ratio (μ = 2.8) low enough to be used for common Pb correction in the analyses of rutile. Under the rapid cooling condition (40℃/Ma) the closure temperature for U-Pb diffusion in rutile is about 470℃. Thus, this U-Pb age of rutile proves that 218 Ma should be the cooling age of eclogite at 470℃ instead of the peak metamorphic age.  相似文献   
36.
在大量野外工作和充分讨论国内外石炭——二叠系界线划分意见的基础上,本文初步分析了北祁连山西段石炭——二叠系界线,讨论了该区大黄沟群、大黄沟组和山西组的关系及时代,指明早二叠世早期地层在北祁连山西段确实存在,没有缺失。  相似文献   
37.
太岳山种子植物区系的初步分析   总被引:21,自引:0,他引:21  
太岳山位于山西省中南部,植物资源丰富,计有种子植物1403种,538属,102科。本文对该山种子植物区系进行了分析,并与秦岭太白山和关帝山的云顶山植物区系组成作了比较。  相似文献   
38.
The U-Pb isotope compositions of rutile, omphacite and garnet in the eclogite from the Jinheqiao area in the Southern Dabie ultrahigh-pressure metamorphic zone were analyzed. The consistent high precision U-Pb age (218 ± 1.2) Ma of rutile in eclogite from the Dabie Mountains was obtained by two ways of isochron and common Pb correction based on the composition of omphacite. This proves that the omphacite in eclogite has a U/Pb ratio (m = 2.8) low enough to be used for common Pb correction in the analyses of rutile. Under the rapid cooling condition (40℃/Ma) the closure temperature for U-Pb diffusion in rutile is about 470℃. Thus, this U-Pb age of rutile proves that 218 Ma should be the cooling age of eclogite at 470℃ instead of the peak metamorphic age.  相似文献   
39.
This note reports the SHRIMP U-Pb data of zircons from the Caledonian Xiongdian eclogite, western Dabie Mountains. Zircons from the rock occur mainly in garnet and other metamorphic minerals with sharp boundaries and exhibit textures growing under metamorphic conditions. Analyses of 7 grains give 206Pb/238U ages ranging from 335 to 424 Ma, showing a certain degree of radiogenic lead loss. This suggests a minimum age of (424±5) Ma for the metamorphic zircons, as well as the high-pressure metamorphic event. The outer peripheral zone of a zircon gives 206Pb/238U age of about 300 Ma. Combined with Sm-Nd, 40Ar-39Ar, U-Pb and 207Pb/206Pb ages, the peak metamorphism of the Xiongdian eclogite is documented between 424—480 Ma.  相似文献   
40.
This paper presents the stable isotope data of the snow pack and summer precipitation collected at the July 1 Glacier, Qilian Mountains in northwest China and analyses their relationships with meteorologi- cal factors. On an event scale, there is no temperature effect on the δ 18O values in the summer pre- cipitation, whereas the amount effect is shown to be clear. By tracing the moisture transport history and comparing the precipitation with its isotopic composition, it is shown that this amount effect not only reflects the change in moisture trajectory, which is related to the monsoon activities, but is also associated with the cooling degree of vapor in the cloud, the evaporation of falling raindrops and the isotopic exchange between the falling drops and the atmospheric vapor. As very little precipitation occurs in winter, the snow pack profile mainly represents the precipitation in the other three seasons. There are low precipitation δ 18O ratios in summer and high ratios in spring and autumn. The Meteoric Water Line (MLW) for the summer precipitation is δ D = 7.6 δ 18O 13.3, which is similar to that at Delingha, located in the south rim of the Qilian Mountains. The MWL for the snow pack is δ D = 10.4 δ 18O 41.4, showing a large slope and intercept. The deuterium excess (d) of the snow pack is positively correlated with δ 18O, indicating that both d and δ 18O decrease from spring to summer and increase from early autumn to early spring. This then results in the high slope and intercept of the MWL. Sea- sonal fluctuations of d in the snow pack indicate the change of moisture source and trajectory. During spring and autumn, the moisture originates from continental recycling or rapid evaporation over rela- tively warm water bodies like Black, Caspian and Aral Seas when the dry westerly air masses pass over them, hence very high d values in precipitation are formed. During summer, the monsoon is responsi- ble for the low d values. This indicates that the monsoon can reach the western part of the Qilian Mountains.  相似文献   
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