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1.
Two Greek Pleistocene tufa stromatolites were examined petrographically and with stable isotope geochemistry to determine whether calcite spar is of primary or diagenetic origin. The younger (ca 100 ka) tufa from Zemeno primarily is micritic, with primary columnar calcite spar restricted to areas immediately above chironomid larval tubes. This relationship suggests that chironomid larval feeding behaviour is responsible for the development of Zemeno tufa columnar calcite, probably involving biological substances smeared onto the tufa surface. Most micritic crystals are not suitably oriented to allow later post‐depositional growth resulting in columnar fabrics. The older (ca 1 Ma) predominantly sparry tufa from Nemea contains some chironomid tubes and organic cyanobacterial filaments preserved in crystal fans but also contains many fabrics found in primary speleothem spar. Columnar spar here is unlikely to be the result of post‐depositional crystal growth. A comparison of stable isotopic trends between the two tufa deposits suggests that both contain interpretable seasonal trends and implies little or minor post‐depositional alteration of either tufa. Consequently, there is no basis for the common assumption that sparry tufa fabrics must be of diagenetic origin.  相似文献   
2.
在河南省西部寒武系的渑池-登封小区,共出露23层叠层石,主要集中在馒头组、张夏组和三山子组.笔者在逐层详细描述该叠层石外部宏观形态和地层展布的基础上,分析了叠层石上下地层岩相变化,找出寒武纪叠层石地层展布的规律及其控制因素,认为影响叠层石地层展布的主要因素有沉积环境、水动力条件和后生动物干扰等,并讨论了叠层石生长与核形石、竹叶状灰岩和后生动物的相互关系,提出了叠层石与后生动物共生的生态位观点  相似文献   
3.
Following the Frasnian–Famennian mass extinction, which eliminated most skeletal reef-building fauna, the early Famennian reefs of the Canning Basin were constructed primarily by reef-framework microbial communities. In the Napier and Oscar Ranges, the Famennian reef complexes had high-energy, reef-flat depositional environments on a reef-rimmed platform that transitioned into low-energy, deep-water reefs growing in excess of 50 m below sea level. High-energy, reef-flat depositional environments contain doming fenestral stromatolites that grade into porous thrombolites and are associated with coarse-grained sandstones and grainstones. The reef-margin subfacies contains mounds of microdigitate thrombolites, which are more delicate than the reef-flat thrombolites and locally contain abundant red algae, Girvanella, renalcids and sediment-filled tubes. Within the thrombolites, the red algae are in upright growth positions, suggesting that the thrombolites are largely composed of carbonate that precipitated in situ. Reefal-slope environments are dominated by Wetheredella and Rothpletzella with locally abundant Girvanella, renalcids and Uralinella. In reefal-slope strata, delicate fans and microdigitate stromatolites of Wetheredella and Rothpletzella are often oriented horizontal or diagonal to bedding and are interpreted as syndepositionally toppled over. Most mesoscale microbial community structures contain several species of microbial fossils, and no single microbial species appears to have controlled the morphology of the community structure. Therefore, the depositional environment must have determined the distribution and morphology of the stromatolites, thrombolites and other microbial community structures. The adaptability of microbial communities to various reef environments allowed them to fill ecological niches opportunistically after the Frasnian–Famennian mass extinction.  相似文献   
4.
贺兰山中元古代三个叠层石组合及其地层意义   总被引:3,自引:0,他引:3  
华洪  邱树玉 《地层学杂志》2001,25(4):307-311
贺兰山原划归蓟县系王全口群中、下部的碳酸盐岩中新建立了两个叠层石组合 ,即下部以 Colonnella sp.、Gaoyuzhuangia sp.、Conophyton garganicum、C.cf.cylindricum等锥叠层石和块茎状柱叠层石为代表的闵家沟组合 ,其属种和总体面貌与长城系高于庄叠层石组合较为相似 ;中部以 L ochmecolumella和 Pseudogymnosolen等微小类型叠层石为代表的冰沟叠层石组合 ,其特征与蓟县系雾迷山叠层石组合完全一致。同时通过对王全口组叠层石分子的全面分析 ,判定王全口叠层石组合的时代应是蓟县纪中、晚期 ,其底界不低于雾迷山组底部。据此 ,重新厘定了贺兰山地区中元古代地层划分。  相似文献   
5.
本文通过笔者实际考察资料及国内外学者研究资料,综合分析了叠层石与沉积矿产关系的研究现状,探讨了叠层石和造叠层石底栖微生物群落对铁、铜、多金属、磷、锰等矿产的成矿作用。叠层石可以溉括为直接的和间接的两种成矿作用:①叠层石为容矿体,其本身就是一种矿石类型;②叠层石不含矿,其岩礁为矿的间隔体。后者是一种金属硫化物避开叠层石岩礁而在礁侧沉积成巨大的富矿模式。  相似文献   
6.
付茜 《江苏地质》2017,41(2):218-223
北京西山下苇甸剖面崮山组和凤山组地层分别属于寒武系第三统和芙蓉统。其中,崮山组发育浅水叠层石生物丘,凤山组发育浅水叠层石生物层,二者都发育深水环境碳酸盐泥丘,代表了碳酸盐岩沉积的多样性;大量存在的不同类型的竹叶状砾屑灰岩,代表了“风暴海”时期特殊的沉积组构。特殊沉积组构作为寒武纪贫乏骨骼风暴海后中奥陶世生物大辐射前的特殊现象,为研究较深水背景下微生物造礁作用提供了典型的岩石记录,同时也代表了这一特殊时期的沉积作用样式  相似文献   
7.
The relict Fairmont Hot Springs deposit, formed largely of carbonates, covers an area of 0·5 km2, and is up to 16 m thick. The triangle‐shaped discharge apron, which broadens down‐valley, is divided into a proximal part with beds dipping at <10° and a distal part with beds dipping at 10° to 15°. The deposit is formed of the: (1) Basal Macrophyte; (2) Lower Carbonate; (3) Middle Clastic; (4) Upper Carbonate; and (5) Upper Clastic Sequences. Two charcoal samples embedded in the Lower Carbonate Sequence yielded dates of 8690 ± 90 and 8270 ± 70 cal yr bp , indicating that much of the deposit formed post‐glacially during the Early to Mid‐Holocene. Deposit aggradation ceased in the Mid to Late Holocene when the Fairmont Creek valley was incised. The Lower and Upper Carbonate Sequences, which are the thickest sequences, are composed of nearly equal parts of travertine (abiotic) and tufa (biotic), with feather dendrite travertine, radiating dendrite travertine and stromatolite tufa dominating. Competition between calcite precipitation rates and biotic growth rates controlled the distribution of tufa and travertine across the discharge apron. Calcite and biotic growth rates were controlled largely by flow velocity across the apron which, in turn, was controlled by topography and regular fluctuations in spring water discharge volume. During times of high spring discharge, slow sheet flow over the proximal part of the apron promoted stromatolite growth, whereas fast, turbulent flow on the distal part of the apron induced rapid feather dendrite formation. During times of low spring discharge, quiescent, shallow evaporative pools, conducive to radiating dendrite formation, formed on the proximal part of the apron, whereas slow flow on the distal part promoted stromatolite growth. Facies with high calcite supersaturation experienced rapid abiotic dendrite growth that precluded most biotic growth.  相似文献   
8.
梅朝佳 《古地理学报》2018,20(3):453-464
作为微生物碳酸盐岩的主要类型之一,叠层石是微生物席的主要建造物已成为共识。天津蓟县中元古界铁岭组二段叠层石生物礁灰岩发育,其中的细粒叠层石被前人解释为微生物席捕获碳酸盐泥的微生物建造物,使得其既不同于现代叠层石,也不同于显生宙尤其是寒武纪的叠层石。更为特殊的是,这些叠层石中的海绿石和黄铁矿代表着2种特殊的矿化作用,其中研究区普遍产出的黄铁矿,作为硫酸盐还原细菌的产物,是了解古代微生物的窗口;而发育在高能浅海的海绿石,产出环境不同于现代海绿石,不能作为慢速沉积环境的指示矿物,亦不具有沉积间断的地质意义。2种矿化作用表明铁岭组叠层石是由沉淀作用而非捕获碳酸盐泥形成,这为了解中元古代叠层石的形成和特征提供了一些有益的线索。  相似文献   
9.
Despite extensive research, the environmental and temporal significance of microbial lamination is still ambiguous because of the complexity of the parameters that control its development. A 13 year monitored record of modern fast‐accreting calcite stromatolites (mean 14 mm year?1) from artificial substrates installed in rapid flow in the River Piedra (north‐east Spain) allows comparison of the sedimentological attributes of successive six‐month depositional packages with the known climatic, hydrophysical and hydrochemical parameters of the depositional system. The stromatolites are formed of dense, porous and macrocrystalline composite laminae. The dense and porous composite laminae, which are composed of two to eight laminae consisting largely of calcified cyanobacteria, are characterized by: (i) dense composite laminae, up to 15 mm thick, mostly with successive dense laminae and minor alternating dense and porous laminae; and (ii) porous composite laminae, up to 12 mm thick, consisting mainly of porous laminae alternating with thinner dense laminae. Most of the dense composite laminae formed during the warm periods (April to September), whereas most of the porous composite laminae developed in the cool periods (October to March). Each dense and porous composite lamina represents up to or slightly longer than six months. The alternation of these two types of composite laminae parallels seasonal changes in temperature. The dense and porous laminae result from shorter (for example, intraseasonal) variations in temperature, insolation and hydrological conditions. The macrocrystalline laminae, with crystals >100 μm long, occur isolated and grouped into composite laminae up to 1·7 mm thick. Their occurrence suggests the absence or poor development of microbial mats over periods of weeks to several months. Thus, stromatolite lamination can record different‐order, periodic and non‐periodic changes in the magnitude of environmental parameters over a single year. These results hold important implications for the temporal and environmental interpretation of lamination in microbial structures.  相似文献   
10.
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