24 resultados para 4500
Resumo:
为了对长江源头高寒草地退化的时空过程规律取得全面客观的科学认识,本文利用20世纪70年代末、90年代初和2004年的陆地卫星遥感影像为信息源,结合气象数据、DEM、草地分布图及社会统计数据等辅助资料,以青海省治多县为例分析了近30年来长江源头的高寒草地生态系统退化的时空格局与过程及其驱动因素,从新的视角阐释高寒草地退化的过程与机理,为退化高寒草地的恢复、治理与区域可持续发展提供了科学依据。结果表明,研究区高寒草地生态系统的退化呈现自东南向西北,退化面积减少、退化程度降低、退化类型由复合型向单一型过渡的总体趋势。研究区东部是草地退化最严重的区域,主要表现为沿着原退化草地斑块的扩张,而西部即唐古拉山以北的广大地区由于下垫面起伏较低则以草地覆盖度的轻度下降退化为主。草地退化时间过程特征的总体趋势是持续退化、后期加剧,前后两个时段对比可以看出草地退化比重和程度皆呈逐渐加剧的趋势,退化面积比重净增9.86%。地形因素的影响分析亦发现,研究区高寒草地退化主要发生在海拔4500~4900m、坡度5~15°范围内的阴坡。研究区草地退化格局在20世纪70年代以前就已经形成,气候变化对高寒草地退化的影响是长期、缓慢的,而研究区人口和家畜数量变化的分析可以得出人类活动特别是过度放牧是草地退化发生的最重要诱因。
Resumo:
Change in thermal conditions can substantially affect crop growth, cropping systems, agricultural production and land use. In the present study, we used annual accumulated temperatures > 10 degrees C (AAT10) as an indicator to investigate the spatio-temporal changes in thermal conditions across China from the late 1980s to 2000, with a spatial resolution of 1 x 1 km. We also investigated the effects of the spatio-temporal changes on cultivated land use and cropping systems. We found that AAT10 has increased on a national scale since the late 1980s, Particularly, 3.16 x 10(5) km(2) of land moved from the spring wheat zone (AAT10: 1600 to 3400 degrees C) to the winter wheat zone (AAT10: 3400 to 4500 degrees C). Changes in thermal conditions had large influences on cultivated land area and cropping systems. The areas of cultivated land have increased in regions with increasing AAT10, and the cropping rotation index has increased since the late 1980s. Single cropping was replaced by 3 crops in 2 years in many regions, and areas of winter wheat cultivation were shifted northward in some areas, such as in the eastern Inner Mongolia Autonomous Region and in western Liaoning and Jilin Provinces.
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The glass sample based on the composition of 45PbF(2)-45GeO(2)-10WO(3) co-doped with Yb3+/Er3+ was prepared by the fusion method in two steps: melted at 950 degreesC for 20 similar to 25 min then annealed at 380 degreesC for 4 h. Through the V-prism it is found that the refractive index of host glass and the sample are 1.517 and 1.65 respectively. The transmittance was observed by using the ultraviolet-visible-infrared spectrometer in the wavelength range from 0.35 to 2.5mum. The transmittaitce of the host glass is beyond 73%. That of the sample is beyond 50% and there are characteristic absorption peaks of rare-earth ions. The emission spectrum was measured by using the Hitachi F-4500 fluorescent spectrometer pumped by 980 nm semiconductor laser. There are a strong emission peak at 530 nm and a weak peak at 650 nm.
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BaLiF3属立方钙钛矿型复合氟化物,作为高效闪烁晶体可用于热中子检测[1].由于其能带隙宽,易于实现各种不同价态稀土离子掺杂,可以获得许多可调谐性质,因此它也是比较理想的光学功能材料的基质[2].Ce3+激活的BaLiF3晶体作为紫外发射的短波固体激光材料和光放大材料的研究多有报道[3~5].Ce3+的发射特性强烈依赖于基质晶体结构[6,7].氟化物基质中氧杂质的含量是影响光谱性质的重要因素[8].为了寻找氧含量低、发射波长更短、可调谐范围更宽的激光材料,本工作制备了BaLiF3∶Ce3+纳米晶,获得了一些新的有意义的实验结果.如果将其引入合适的聚合物基体制备出纳米复合体系,有可能为新一代杂化激光材料提供更理想的光学活性组分[9].1实验部分1.1仪器用日本R igaκu D/maxⅡB型X射线衍射仪(XRD)测量样品的晶体结构,辐射源CuKα1(λ=0·154 1 nm);用日本H itachi S-570环境扫描电子显微镜(ESEM)观察样品的形貌和粒径大小;用日立F-4500荧光光谱仪测试样品的激发和发射光谱;用英国VG公司ESCALAB MKⅡX射线电子能谱仪(XPS)检测样品的含氧量.1.2实验过...
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本文通过对渤海泥质区不同位置岩芯的粒度、矿物、化学元素等方面的分析,结合浅地层地震剖面、AMS 14C测年、微体古生物分析、稳定同位素测量、古地磁数据等,对全新世渤海泥质区中沉积物物质组成特征、物质来源、形成历史其环境响应进行了探讨。 结果显示,在早全新世期间黄河曾流经渤海南部,其携带泥沙对渤海沉积作用造成一定影响,但不同位置沉积环境及所受黄河影响的大小存在差异。 渤海泥质区的主体部分从约6000 aBP开始形成。当时沉积记录存在突变现象,不仅显示了沉积环境氧化还原条件的改变,而且温度与盐度值的变化以及沉积速率的明显偏高以及浮游有孔虫的出现说明本区开始受到黄海暖流余脉的影响。4500 aBP以来,沉积物中重矿物组合、化学成分等与黄河沉积物已较为接近,说明此时黄河物质对渤海泥质沉积的影响已经占据主导地位。渤海泥质区虽然有着离黄河口较近的特点,但并未出现明显高于陆架其它泥质沉积区的沉积速率,说明受输运机制控制,黄河物质向泥质区的输送量不大,远不如向黄海的输出量。 北部记录着全新世期间发生的两次地磁极漂移,分别发生于2800~3100 aBP(对应Starno事件)和7500~8200 aBP。漂移发生前后,气候、物质来源与海平面均有较大变化,说明地磁极漂移对气候有着重要影响。
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本发明涉及一种花锚植物的引种栽培技术,该技术包括种子处理技术和引种栽培技术。本发明通过采用花锚种子的物理和化学处理方法,使花锚种子萌发率达75%以上;通过地膜覆盖技术,即在种子播种前采用地膜覆盖7- 28天,可有效地控制杂草数量和生长,为规模化种植奠定可靠的基础;通过在拔1500 —4500米的原产水浇大田或适宜旱耕地的引种栽培途径,可快速恢复花锚植物的资源量,并有效地保证花锚植物的药材品质和药效成分。
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本发明涉及扁蕾植物的引种栽培技术,该技术包括种子处理和引种栽培工艺。本发明通过对扁蕾植物种子进行物理和化学处理,使扁蕾种子萌发率达70%以上;通过地膜覆盖技术,即在种子播种前采用地膜覆盖7-28天,可有效地控制杂草数量和生长,为规模化种植奠定可靠的基础;通过在海拔 1500-4500米的原产水浇大田或适宜旱耕地的引种栽培途径,可快速恢复扁蕾的资源量,并有效地保证扁蕾的药材品质和药效成分。
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This thesis focuses on the present-day thermal field features, evolution and their connections to hydrocarbon generation of the three continental margin basins-the Yinggehai (Yingge Sea), Qiongdongnan(southeast Qiong), and Pear River Mouth basins-in northern South China Sea, based on available data from drillings, loggings, seismic cross-sections, BHTs, thermal indicators (Ro%, inclusion, etc) and geopressure measurements. After studying of present-day distribution of geothermal field and thermal disturbance of fluid in the sedimentary strata, the author discovered that the distribution of gas fields in Yinggehai Basin are closely related to the distribution of anomalously high thermal gradient area, whereas it is not the case for the Pear River Mouse Basin. And detailed processing of the fluid inclusion data indicates that geothermal fluids activated frequently in this area, and they may mainly be derived upward from the overpressure and hydrocarbon-generating beds, 3000-4500 m in depth. Therefore, the abnormal gradients in sedimentary beds were mainly caused by the active geothermal fluids related to hydrocarbon migrating and accumulating in this area. Because of the effect of overpressure retarding on vitrinite reflectance, the thermal indicators for thermal history reconstruction should be assessed before put into use. Although some factors, such as different types of kerogen, heating ratio, activities of thermal fluids and overpressure, may have effects on the vitrinite reflectance, under the circumstance that thermal fluids and overpressure co-exist, overpressure retarding is dominant. And the depth and correction method of overpressure retarding were also determined in this paper. On the basis of reviewing the methods of thermal history studies as well as existing problems, the author believes that the combination of thermal-indicator-inversion and tectono-thermal modeling is an effective method of the thermal history reconstruction for sedimentary basins. Also, a software BaTherMod for modeling thermal history of basins was successfully developed in this work. The Yinggehai Basin has been active since Tertiary, and this was obviously due to its tectonic position-the plate transition zone. Under the background of high thermal flow, long-term quick subsidence and fluid activities were the main reasons that lead to high temperature and overpressure in this basin. The Zhujiangkou Basin, a Tertiary fault-basin within the circum-Pacific tectonic realm, was tectonically controlled by the motion of the Pacific Plate and resembles the other petroliferous basins in eastern China. This basin developed early, and characterized intensive extension in the early stage and weak activity in the later stage of its development. Whereas the Qiongdongnan Basin was in a weak extension early and intensity of extension increased gradually. The relative geographical locations and the extensional histories of three basins ilustrate that the northern continental margin of South China Sea spread from south to north. On the other hand, the Qiongdongnan and Yinggehai Basins may have been controlled by the same tectonic regime since later Tertiary, whereas the Zhujiangkou Basin was not meaningfully influenced. So, the tectono-thermal evolution character of the Qiongdonnan basin should be closely to the other two. It may be concluded that the three basins have been developed within the active continental margin since Tertiary, and the local lithosphere might undergo intensive extension-perhaps two or three times of episodic extension occurred. Extension lead to large tectonoc subsidence and extreme thick Tertiary sediments for hydrocarbon generation in the basins. In response to the periodic extension of the basins, the palaeothermal flow were also periodical. The three basins all have the characteristics of multi-phase thermal evolutions that is good for oil-gas generation. And the overpressure expands the depth range of oil-gas habitat, which is meaningful to petroleum exploration in this region.
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Daihai Lake, a graben-type closed lake, lies ca. 10 km east of Liangcheng County, Inner Mongolia, north-central China. For its location at the transition of semi-humid and semi-arid areas, and in the north edge of the East Asian monsoon, the lake is sensitive to changes in climate and environment. Based on analyses of total inorganic carbon (TIC), total organic carbon (TOC) and the ratio of total organic carbon to total nitrogen (C/N ratio) of DH99a core sediments recovered in the central part of Daihai Lake, the data suggest Holocene climatic history of the lake region is reconstructed. In this paper, the TIC and TOC contents of the lake sediments are closely related to climate changes. 1) Changes in TIC content of the lake sediments is closely related to climate, which directly reflect changes of temperature in the lake region, i.e., higher TIC content is linked with warmer temperature and stronger evaporation; 2) Changes in TOC and C/N ratio reflect the regional precipitation, i.e., relatively higher TOC content and C/N ratio indicate higher rainfall which results in stronger river flow and more organic matter entering into the lake. Data of the TIC content, TOC content and C/N ratio of DH99a core sediments suggest that climatic history of the Daihai Lake region is characterized by 4 stages. During the interval of ca. 11200-7500 a BP, higher TIC content, relatively lower TOC content and C/N ratio value indicate a warmer and slight dry condition over the lake area. From ca. 7500 to 4500 a BP, high values of TIC content, with an increase in TOC content and C/N ratio suggest the climate was warm and humid. Changes of TIC content, TOC content show that both temperature and precipitation displayed obvious fluctuations during the period, i.e., slightly cool and humid ca. 7500-6700 a BP, warm and moist ca. 6700-5300a BP, mild and comparatively humid ca. 5300-4500a BP. Between ca. 4500 and 2900 a BP, TIC content and TOC content decreased gradually while fluctuating, C/N ratio displayed a decreasing trend. These data imply that the climate generally became cooler and drier than the preceding period. The lowest values of TIC content, TOC content and C/N ratio during the interval of ca. 2900-0 a BP, demonstrate that the climate was severe, and became cool and dry. However the relative higher values of TIC content, TOC content and C/N ratio between ca. 1700 and 1300 a BP may denote an increase both in temperature and in precipitation. Data of TIC content, TOC content and C/N ratio in Daihai DH99a core sediments indicate that the warm period was asynchronous with the humid time, the warm interval began in ca. 11200 a BP, and ended in ca. 2900 a BP. The humid period was ca. 7500-2900 a BP. During ca. 7500^500 a BP, the climate was warm and humid, which was the climatic optimum of the Holocene Epoch in the Daihai Lake region. Data of TIC content, TOC content and C/N ratio in Daihai DH99a core sediments imply that the Holocene climate was unstable, the fluctuating events happened occasionally. Such as the cold and dry climate in ca. 4400-4200a BP, the warm and humid climatic condition in the period between ca.1700 and 1300a BP.