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991.
Ureilites are a common group of achondrites with a high abundance of carbon. They probably have a genetic relationship with chondrites, hence provide an insight into origin and evolution of terrestrial planets. A new meteorite-rich region, Grove Mountains (GRV), was found by the Chinese Antarctic Research Expedition, with discovery of 9834 meteorites. Of 2433 meteorites classified, 9 ureilites have been identified. In this paper, we report petrography of 6 of these ureilites. Four ureilites contain graphite and exhibit triangle conjunction and common reduced margins of olivine. GRV 052382 probably experienced heavy shock metamorphism followed by fast cooling, as indicated by mosaic texture or fine-grained granular texture of olivine. GRV 022931 was highly reduced of these ureilites, with olivine as isolated grains in abundant carbonaceous matrix. All 9 ureilites are monomict, and are classified into subtype II (with medium FeO content, Fa15-18) and subtype I (with high FeO content, Fa>18) based on compositions of the cores of olivine. The diverse mineral compositions and petrography of these ureilites suggest that they are not paired and reveal a multi-event history of the parent body. Partial melting of the parent body produced carbon-rich magma, followed by crystallization of graphite and silicates. Later, graphite was partially inverted to diamond by shock events. Reburial of the shocked debris experienced various degree of thermal metamorphism. Finally, these rocks were excavated from the parent asteroid and ejected into Earth-cross orbit by another impact event.  相似文献   
992.
Water flow is greatly influenced by the characteristics of the domain through which the process occurs. It is generally accepted that earth materials have extreme variations from point to point in space. Consequently, this heterogeneity results in high variation in hydraulic properties of soil. In order to develop an accurate predictive model for transport processes in soil, the effects of this variability should be considered. In this study a two‐dimensional stochastic finite element flow model was developed for simulation of water flow through unsaturated soils. In this model, the stochastic partial differential governing equation of water flow, obtained from implementation of the perturbation‐spectral stochastic method on classical Richard's equation, was solved using a finite element method in the space domain and a finite difference scheme in the time domain. The effective hydrological parameters embedded in the mathematical model depend on time derivatives of capillary tension head; this makes possible to consider the hysteresis due to large‐scale variability of soil hydrological properties. The model is also capable of simulating infiltration and evaporation events and rapid change in the land surface boundary condition from one type event to another, based on a scheme used in the model for implementation of land surface boundary condition. The model was validated with the data obtained from a layered lysimeter test. The model was also used to simulate water flow under a long irrigation furrow. The results obtained with this model show better agreement with experimental measurements in comparison with a deterministic model. The possible reason for this agreement is that in the developed model, the influence of the variability of the properties of soil and effects of parameter hysteresis on water flow and water content redistribution are considered. Copyright © 2010 John Wiley & Sons, Ltd.  相似文献   
993.
Invasions by non-indigenous species (NIS) have been suggested to alter local, regional and global biota on unprecedented scales. To manage NIS, it is pivotal to identify whether a species is introduced or native, but even today the geographical origin of thousands of species worldwide remain uncertain. Most of these ‘cryptogenic species’ are inconspicuous and rare, but in a few instances, they can also be abundant and conspicuous species, with large impacts on community structure. The identification of cryptogenic species, and summarizing information on their most likely origin, is an important task in invasion biology, and can highlight the need for research and management. Here, we document that the gastropod Batillaria australis in the Swan River estuary (Perth, Western Australia) is a conspicuous species of uncertain origin. A literature review combined with new survey data revealed that all evidence point to a recent human-mediated transfer; for example, it is absent from the fossil record, was first collected in 1954, has a low parasite diversity, has increased its population size dramatically in recent times, is separated by >3000 km from conspecifics, has no long-distance dispersal mechanisms, and existing ocean currents run against a natural range extension. Surprisingly, despite political and scientific focus on NIS hardly any ecological data have been published on this species from Western Australia. We show that B. australis is highly abundant in both seagrass beds (424 ± 29 ind m−2) and on unvegetated sand flats (92 ± 22 ind m−2) being orders of magnitudes more abundant than any native gastropod in the Swan River. Experiments showed that high resistance to predation and environmental stress potentially explains its success. From our survey data, we calculated that >3.6 billion invasive snails today occupy the Swan River. This large snail populations support other organisms; for example, almost 1 billion macroalgae are found attached to living B. australis and >100 million hermit crabs occupy its empty shells. Given Battilaria’s high abundance, wide distribution, large size, persistent shells that support other organisms and bioturbating behavior, it seems inescapable that this potential invader has impacted the ecosystem functioning of the Swan River. We argue that the search for abundant species of uncertain origin should continue, and that these species generally should be treated with the same interest as high status invaders to mitigate impacts in already invaded systems and to avoid secondary spread into neighboring ecosystems.  相似文献   
994.
《International Geology Review》2012,54(13):1626-1640
Dolerite dike swarms are widespread across the North China Craton (NCC) of Hebei Province (China) and Inner Mongolia. Here, we report new geochemical, Sr–Nd–Pb isotope, and U–Pb zircon ages for representative samples of these dikes. Laser ablation-inductively coupled plasma-mass spectrometry (LA-ICP-MS) U–Pb analysis yielded consistent Permian ages of 274.8 ± 2.9 and 275.0 ± 4.5 Ma for zircons extracted from two dikes. The dolerites have highly variable compositions (SiO2 = 46.99–56.18 wt.%, TiO2 = 1.27–2.39 wt.%, Al2O3 = 14.42–16.20 wt.%, MgO = 5.18–7.75 wt.%, Fe2O3 = 8.03–13.52 wt.%, CaO = 5.18–9.75 wt.%, Na2O = 2.46–3.79 wt.%, K2O = 0.26–2.35 wt.%, and P2O5 = 0.18–0.37 wt.%) and are light rare earth element (LREE) and large ion lithophile element (LILE, e.g. Rb, Ba, and K, and Pb in sample SXG1-9) enriched, and Th and high field strength element (HFSE, e.g. Nb and Ta in sample SXG1-9, and Ti) depleted. The mafic dikes have relatively uniform (87Sr/86Sr)i values from 0.7031 to 0.7048, (206Pb/204Pb)i from 17.77 to 17.976, (207Pb/204Pb)i from 15.50 to 15.52, (208Pb/204Pb)i from 37.95 to 38.03, and positive ?Nd(t) (3.6–7.3), and variable neodymium model ages (TDM1 = 0.75–0.99 Ga, TDM2 = 0.34–0.74 Ga). These data suggest that the dike magmas were derived from partial melting of a depleted region of the asthenospheric mantle, and that they fractionated olivine, pyroxene, plagioclase, K-feldspar, and Ti-bearing phases without undergoing significant crustal contamination. These mafic dikes within the NCC formed during a period of crustal thinning in response to extension after Permian collision between the NCC and the Siberian Block.  相似文献   
995.
江西广丰杨村超大型滑石矿床成因探讨   总被引:1,自引:0,他引:1  
江西广丰杨村滑石矿储量达上亿吨,是世界上超大型滑石矿床之一。矿石主要由鲕粒状滑石组成,含少量石英和碳酸盐矿物及浸染状有机质,具有典型的沉积鲕粒状结构;赋矿围岩白云岩硅化较强烈。研究结果表明,白云岩与滑石矿页岩标准化稀土元素分配模式基本一致,重稀土元素相对轻稀土元素弱富集,稀土元素总量低,弱负铈异常,并且它们具有相同的87Sr/86Sr比值(0.7092~0.7101),白云岩的δ13CV-PDB值变化范围在-4.9‰~+0.7‰之间,与同期海水大体一致。这些地球化学特征暗示了滑石矿和白云岩具有相同的物质来源,滑石成矿所需的镁可能来源于海水。部分样品显示正铕异常,且白云岩中δ18OV-SMOW值(+14.5‰~+19.7‰)较同期海水偏低,87Sr/86Sr比值比同期海水稍高,暗示成矿物质并非由海水单一提供,可能还有高87Sr/86Sr比值、富硅的热液提供了成矿所需的硅。综合滑石和白云岩岩相学和地球化学特征,认为江西广丰杨村滑石矿为同生热水沉积成因,滑石中镁来源于富镁海水,硅来源于海水下渗淋滤古老硅铝质地层形成的富硅、高87Sr/86Sr比值的热液,海水中镁与热液中硅结合形成滑石。滑石矿在经历了同生沉积-热液期之后,又受到了后期强烈的变质变形作用的叠加,形成了具片理构造的滑石片岩。  相似文献   
996.
为了探讨准噶尔盆地西北缘乌尔禾-风城地区二叠系风城组白云质岩类的成因, 利用岩矿鉴定技术,地球化学分析技术等手段, 系统分析该套云质岩类的地球化学特征。研究表明,该区云质岩类有别于海相碳酸盐岩,受外物源的影响较大,成份复杂,多为过渡性岩类。以泥质白云岩和白云质泥岩和白云质粉砂岩为主,含有少量的凝灰质白云岩和白云质凝灰岩。岩石矿物学特征和地球化学分析数据均表明,研究区的云质岩类主要形成于水体安静、深度较大、盐度偏高的半封闭陆源近海湖湾环境。二叠系时期气候炎热,蒸发作用强烈与火山活动频繁,加之淡水补给相对匮乏,为该区的云质岩类形成提供了良好的镁离子来源和水动力条件。这时湖湾中沉积的富含文石或高镁方解石的泥岩或凝灰岩,在早成岩阶段经过渗透回流白云石化作用形成了大量泥质白云岩、白云质泥岩和白云质粉砂岩。在中晚成岩阶段,经过埋藏作用生成自形或半自形的细晶-中晶白云石。  相似文献   
997.
妥善解决流动人口在流入城市的住房问题是实现流动人口市民化和提高新型城镇化发展质量的关键。本文基于2017年全国流动人口动态监测调查数据,揭示了流动人口的跨等级流动格局,并探讨了跨等级流动对流动人口在流入城市住房选择的影响。研究发现:① 流动人口以跨等级向上流动为主,其中向上跨三级、两级流动的比例较大;② 不同流出地的流动人口在流入城市的住房选择存在显著差异,流出城市的人均GDP和平均房价越高,流动人口在流入城市获得住房产权的概率越大;③ 流入城市的平均房价越高,流动人口获得商品房的概率越低,随着流入城市人均GDP的增加,流动人口购买商品房的概率先增后降,而购买不完全产权房的概率则恰恰相反;④ 随着流动人口跨越城市等级的增加,其获得住房产权的概率降低,而租赁正规住房的可能性增大。研究结果有助于深化理解流动人口在流入城市住房选择的地理根源,对进一步优化面向流动人口的住房政策具有参考意义。  相似文献   
998.
陈大春  何英  曹伟 《水文》2014,34(2):66-70
利用非参数核密度估计方法建立了乌鲁木齐河月径流随机模拟的NP模型。其中,通过以最小二乘交叉验证(LSCV)指标为目标的粒子群优化获取NP模型带宽参数;采用可变核带宽方法进行边界修正。使用1958~2010年间53a月径流数据,经过250组分组模拟进行实用性检验。最后,与使用SAMS2007所建立的季节自回归PAR模型进行了对比。结果表明:所建乌鲁木齐河月径流NP模型能较好保持原序列统计特性;与PAR模型相比,它具有参数少、计算简单的特点。  相似文献   
999.
江华军  李长安  张玉芬  姜端午 《地球科学》2014,39(11):1566-1574
为了明确嘉陵江曲流型叠置河谷形成原因及其对区域地质环境演化的响应, 在综合分析区域地质地貌背景、水系演化模式等基础上, 认为嘉陵江曲流型叠置河谷的成因可能是三峡贯通这一重大地质事件作用的结果.三峡贯通前, 古分水岭两侧的四川盆地和江汉盆地水系相互独立发育; 由于江汉盆地水系溯源侵蚀速率快, 切穿其与四川盆地的古分水岭, 分水岭西侧水系被袭夺后东流, 两大水系完成统一; 在三峡贯通事件作用下, 嘉陵江古自由河曲快速下切嵌入基岩, 形成了曲流型叠置河谷的壮观地貌景观.基于砾石层中冲积物的电子自旋共振(electron spin resonance dating, ESR)测年结果, 表明三峡贯通的时间大致在早-中更新世之交.第四纪地壳活跃, 三峡的贯通可能与该时期内的"昆仑-黄河运动"密切相关.   相似文献   
1000.
琥珀是一类有机宝石,其经济价值和科学意义日益受到重视.琥珀是植物树脂的化石形式.本文综述了现代的和已绝灭的产树脂植物的种类与地史分布.现代的产树脂植物包括松柏类和诸多被子植物科,现代松柏类如南洋杉科的琥珀最早可追溯至晚三叠世—早侏罗世,但在白垩纪中期至中新世的地层中更为丰富.始新世以来,热带和亚热带被子植物来源的琥珀开始占优势地位.绝灭的产树脂植物包括繁盛于石炭—二叠纪的科达类和髓木类种子蕨以及石炭纪以来出现并已绝灭的一些松柏类裸子植物.目前已知最早的琥珀产自晚石炭世地层(距今约3.2亿年).琥珀中含丰富的动植物化石,为研究地球生命的演化历史提供了重要材料.  相似文献   
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