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硅岩在雅鲁藏布江缝合带广泛发育。在 1∶ 2 5万萨嘎县幅、桑桑区幅区域地质调查中 ,在缝合带及其南侧宗卓组中识别出 3种硅岩沉积组合 :1嘎学群内与玄武岩伴生的硅岩 ;2构造混杂带内夹于页岩中的硅岩 ;3宗卓组内夹于页岩—岩屑石英杂砂岩的硅岩。在硅岩中分离出的放射虫组合时代为白垩纪。运用地球化学研究手段 ,对硅岩岩石组合、岩石化学、微量元素和稀土元素特征进行了综合分析 ,与玄武岩伴生的硅岩 Al/ (Al Fe Mn)为 0 .5 33~ 0 .5 4 6 <0 .6 19(除 9号样外 ) ,Ce/ Ce* 为 0 .6 7(平均 ) ,L an/ Ybn为 0 .83~ 1.37和 L an/ Cen为0 .82~ 2 .2 3;夹于页岩中的硅岩 Al/ (Al Fe Mn)为 0 .5 5 7~ 0 .6 19,Ce/ Ce*为 0 .995~ 1.35 0 ,L an/ Ybn为 0 .71~ 1.0 3和 L an/ Cen为 0 .6 8~ 0 .98;宗卓组内的硅岩 Al/ (Al Fe Mn)为 0 .6 15~ 0 .70 7>0 .6 19,Ce/ Ce* 为 0 .94~1.14 ,L an/ Ybn 为 1.4 4~ 1.6 6和 L an/ Cen 为 0 .85~ 1.0 7。研究证实 ,3种背景的硅岩均反映非热水或生物成因。嘎学群内与玄武岩伴生的硅岩具深水盆地沉积特征 ;宗卓组中的硅岩具典型大陆边缘沉积环境特征 ;构造混杂带内的硅岩形成于近大陆边缘环境中  相似文献   
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大洋富钴结壳和锰结核一样是潜在的海底矿产资源,对其成因的研究将有助于指导找矿和资源评价。通过大型反光显微镜、透射电子显微镜和其他测试手段,系统研究了结壳的结构构造、物质组成以及叠层石纹层与超微生物的关系。发现结壳与光滑型锰结核的叠层石类型及超微生物种极其相似,它们都以微小叠层石和中华微放线菌为主要特征,具有相同的生物成因机制。认为超微生物建构的锰质叠层石柱体是大洋富钴结壳的基本框架,从而对结壳矿体的形成提出了新的见解。  相似文献   
3.
太平洋中国开辟区锰结核生物成因研究   总被引:13,自引:2,他引:11  
陈建林  张富生等 《地质学报》2001,75(2):228-233,T005,T006
本文对叠层石(微小叠层石与奇异叠层石)及其建造者(中华微放线菌与太平洋螺球孢菌)在结核中显示的规律性特征,叠层石纹层与超微生物生长,主要锰矿物及Fe、Mn元素与叠层石类型之间关系以及超微生物直接成矿等作了深入研究。结果表明:锰结核中叠层石柱体一般都显示出纹层、纹层组与纹层带3个级别的生长韵律,明层菌丝体密集,暗层菌丝体稀疏;两种叠层石类型与超微生物化石种存在着良好的对应关系;主要锰矿物含量变化与叠层石类型密切相关;叠层石柱体内Fe、Mn元素分布比柱间空隙具有明显的规律性,而全球性大气化程度比生殖菌丝强;超微生物的生化作用与沉积粘附作用直接造成了结核中Fe、Mn元素的富集,而全球性大气修与洋底微环境的周期性变化,影响了微生物生长的兴衰,导致了明暗相间纹层的交替出现。我们认为,叠层石纹层显示的韵律性特征,是胶体化学作用与沉积作用难以形成的,只有微生物群体的世代繁衍,才能构筑成几乎固定不变的叠层石柱体形态。上述研究成果,进一步确立了大洋锰结核的生物成因观点。  相似文献   
4.
杨雪英  龚一鸣 《地球科学》2011,36(4):643-658
莓状黄铁矿这一奇妙的微晶(0.1~1 μm)矿物集合体(5~50 μm)自科学家首次发现(1923年)和冠名(1935年)至今一直是不同学科竞相研究的热点.主要从莓状黄铁矿的形成机制、莓状黄铁矿与环境的关系等方面回顾了莓状黄铁矿的生物成因说(1923-1969年)、非生物成因说(1969-2000年)和多元成因说(2000-现今)各研究阶段取得的进展和存在的问题,指出莓状黄铁矿作为表层生物圈、深部生物圈和地外环境与生命示踪计具有巨大潜力,提出从地球科学、生命科学、材料科学、化学和纳米科技以及凝聚态物理学融合的角度加强对莓状黄铁矿研究的建议.   相似文献   
5.
Significantly high abundant methyl-MethylTrimethylTridecylChromans (MTTCs) have been detected in aromatic hydrocarbon fractions in crude oils from the Jizhong Depression and Jianghan Basin. The distribution of these compounds is dominated by methyl-MTTC and dimethyl-MTTC series, which indicate diagenetic products of a hypersaline depositional environment in the early stage and show a low degree of methylation. The occurrence of significantly high abundant methyl-MTTC depends mainly on good preservation conditions with a strongly reductive, hypersaline and water-columned depositional environment and subsequent non-intensive diagenetic transformations. The stable carbon isotopic compositions of the methyl-MTTCs and dimethyl-MTTCs in two samples are far different from the stable carbon isotopic composition of C30 hopane of apparent bacteria biogenesis (up to 4.11‰ and 5.75‰, respectively). This obviously demonstrates that the methyl-MTTC and dimethyl-MTTCs cannot be of bacteria origin, which is different from the previous point of view about non-photosynthetic bacteria products or possible bacteria-reworked products. On the contrary, the stable carbon isotopic compositions of methyl-MTTC and dimethyl-MTTCs in the two samples were similar to that of the same carbon-numbered n-alkanes (nC27-nC28-nC29), which indicates that they share the same source origin. Especially in the crude oil from the Zhao61 well, stable carbon isotopic compositions are also similar to that of the same carbon-numbered steranes with ααα-20R isomer (mostly less than 0.4‰). In consideration of the results of previous studies on saline lake ecological sedimentation, the authors hold that the methyl-MTTC and dimethyl-MTTCs in the saline lake sediments should be of algal biogenesis origin.  相似文献   
6.
太平洋多金属结核中铁锰矿物分析及成因研究   总被引:12,自引:2,他引:10  
铁锰矿物是大详多金属结核的重要组成,了解不同类型结核中主要铁锰矿物种类、形态、分布特点和结晶程度等,不仅有助于对锰矿物乃至多金属结核成因的研究,而且对选矿冶炼和资源的综合利用也具有现实意义.本文通过透射电子显微镜等多种手段综合分析与鉴定,指出多金属结核中主要铁锰矿物有钙锰矿、水羟锰矿、水钠锰矿、方锰矿、锰铁矿和针铁矿等.结晶程度普遍较差,钙锰矿结晶相对好于其他矿物,并在粗糙型结核中含量高,外层至核心含量稳定,变化小.水羟锰矿广为分布,但结晶差.铁矿物含量东区低于西区,结核外壳铁含量高于内核.锰矿物分布在叠层石柱体和纹层内,呈束状、纤维状和树枝状,与建造多金属结核的超微生物菌丝体形态一致.粗糙型结核是选冶的主要对象.  相似文献   
7.
Natural gases discovered up to now in Lishui Sag,the East China Sea Basin,differ greatly in gaseous compositions,of which hydrocarbon gases amount to 2%―94%while non-hydrocarbon gases are dominated by CO2.Their hydrocarbon gases,without exception,contain less than 90%of methane and over 10%of C2 heavier hydrocarbons,indicating a wet gas.Carbon isotopic analyses on these hydrocarbon gases showed thatδ13C 1 ,δ13C 2 andδ13C 3 are basically lighter than-44‰,-29‰and-26‰, respectively.The difference in carbon isotopic values between methane and ethane is great,suggesting a biogenic oil-type gas produced by the mixed organic matter at peak generation.δ13C CO2 values of nonhydrocarbon gases are all heavier than-10‰,indicating a typical abiogenic gas.The simulation experiment on hydrocarbon generation of organic matter in a closed gold-tube system showed that the proportion of methane in natural gases produced by terrigenous organic matter in the Lingfeng Formation marine deposit is obviously higher than that in natural gases derived from the aquatic and terrigenous mixed organic matter in the Yueguifeng Formation lacustrine deposit,consequently the proportion of heavier hydrocarbons of the former is remarkably lower than that of the latter.Moreover, δ13C 1 values of natural gases produced by terrigenous organic matter in the Lingfeng Formation marine deposit are about 5‰heavier than those of natural gases derived from the aquatic and terrigenous mixed organic matter in the Yueguifeng Formation lacustrine deposit whileδ13C 2 andδ13C 3 values of the former are over 9‰heavier than those of the latter.Currently the LS36-1 oil-gas pool is the only commercial oil-gas reservoir in Lishui Sag,where carbon isotopic compositions of various hydrocarbon components differ greatly from those of natural gases produced by the Lingfeng Formation organic matter but are very similar to those of natural gases derived from the Yueguifeng Formation organic matter,therefore,natural gases in the LS36-1 oil-gas pool are mainly derived from the Yueguifeng Formation lacustrine source rock rather than the Lingfeng Formation marine or Mingyuefeng Formation coal-measures source rocks.  相似文献   
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