30 resultados para 26-250
em Chinese Academy of Sciences Institutional Repositories Grid Portal
Resumo:
本文主要针对 250 ka 以来渤海南部Lz908 孔的沉积序列进行年代学和沉积 学研究,通过年代框架的建立、环境代用指标的意义解读,并与区域和全球变 化相对比,讨论了渤海南部晚中更新世以来的环境过程和驱动因素。主要结论 如下: 1. 沉积物粒度对比试验表明,是否去除碳酸盐,对于渤海南部海岸带沉积 物的粒度分析结果产生了显著的影响。未去除碳酸盐的沉积物样品,显著增加 了黏土粒级、超细粒组分的含量;但就粒度分布而言,是否去除碳酸盐不会改 变粒度分布的基本形态。通过实验对比,我们认为,粒度测量的前处理过程去 除碳酸盐是必要的。 2. 粒度参数的计算方法主要有图解法和矩值法两种,为了比较不同方法计 算结果的差异,利用LZ908 孔岩心,在粒度分析的基础上,综合运用相关分析、 回归分析、聚类分析等统计方法,从参数计算过程、沉积物粒度分布形态(多 峰态粒度特征)等方面讨论了两种参数估计方法对计算结果的可能影响及其影 响因素。结果表明:平均粒径、标准偏差相互替代的程度高,而偏度、峰度相 互替代的程度低,或者不可替代;两者的差异是由各自本身的计算过程引起的, 是沉积物粒度分布特征的一种反映,并且与沉积水动力条件密切相关。 3. 释光年代学的研究表明,钻孔0-25 米内未见大的沉积间断,可以通过线 性内插的方式获得各个层位的年龄。25-54 米的海相地层,因为钻孔位于构造 稳定的沉降区,沉积物源单一,因此通过线性外推获得年龄。确定钻孔海侵层 渤海南部Lz908 孔250 ka 以来的环境演化研究 的底部年龄为为 250 ka。根据建立的渤海地区首条释光标准生长曲线,推测光 释光简单多片再生剂量法的理论测年上限为350 ka。 4. 粒度、磁化率等指标间的关系,以及区域和全球的对比表明:沉积物中 细颗粒组分代表了夏季风的变化,但细颗粒含量增高时,指示了夏季风的强盛, 反之则减弱;粗颗粒组分含量和磁化率与冬季风相关,粗颗粒组分含量增加、 磁化率升高时,代表了冬季风的强盛,反之则弱;与黄土-古土壤序列、石笋氧 同位序列和深海氧同位素序列在轨道尺度上对比良好;沉积序列包含27 ka 和 126 ka 的显著周期成分,暗示了区域环境变化是由太阳辐射驱动控制的。
Resumo:
研究采用PCR-SSCP技术研究番鸭不同就巢群体(就巢1月群、就巢2月群、就巢3月群)、番鸭非就巢群和白改鸭5个群体250个个体PRL基因第4外显子多态性与就巢性状之间的相关性.结果表明,在外显子4编码区内发现2个SNP位点,分别位于该基因的3 777 bp(T/C)和3 785 bp(MG)处.基因型与就巢性状指标相关分析的结果表明,番鸭非就巢群体与各就巢群体间差异极显著(P<0.01),同时番鸭与白改鸭差异显著(P<0.05),推测PRL基因与就巢性有一定的相关.
Resumo:
寻找适合脑内多种神经活性物质免疫组织化学研究的固定方案。方法 以胆碱乙酰化酶、P 物质和γ- 氨基丁酸为递质合成酶、多肽及氨基酸递质的代表,以大鼠隔O斜带O基底核此三类阳性神经元的数量、染色和形态 变化为依据,检测了一系列复合固定配方对此三类抗原免疫组化的影响。结果 经0. 2 %戊二醛、4 %多聚甲醛和 0. 2 %苦味酸灌注固定和4 %多聚甲醛后固定,并经1 %硼氢化钠处理的脑组织,能很好地显示该三类神经元。此结 果还得到猫脑免疫电镜研究的支持。结论 有可能设计一种满足脑内尽可能多种类递质及合成酶免疫组化光、电 镜研究所需的复合固定配方,以期在同一实验动物获得最大程度的化学神经解剖学信息。
Resumo:
The Yunnan snub-nosed monkey (Rhinopithecus bieti), an endangered species in China, has received more protection in theory than in practice. Therefore it is on the very verge of extinction. The population of the species was estimated less than 2,000 individuals spread in 19 distinct groups. It was confirmed that the monkey was confined to the Yunling Mountain System, the area between the Yangtze River (Changjiang, aka Jinshajiang) to the east and the Mekong River (Lancangjiang) to the west. We further concluded that a lowland belt to the east, about 100 km long and 20 - 30 km wide was not suitable habitat for the monkeys, and appeared to serve as the natural ecogeologic barrier for the species. Our results indicated that the southern limit of the distribution was at Longma (26-degrees 14'N), and that the northern limit of the distribution was at Xiaochangdu (29-degrees 20'N). The distribution area of the species was substantially smaller than previously estimated. There were substantial ecological differences between the southern and northern parts of the species range. The monkey was found only in fir-larch forest.
Resumo:
从 2003 年12 月至2005 年1 月,我在黑白仰鼻猴(Rhinopithecus bieti)分 布区的南端(26.23o N, 99.25o E,海拔2700-3600 m)运用直接观察法与食物遗迹 法收集了龙马山群(大约80 只)的生境利用和食性数据。通过种内及种间比较, 评估该种的食性与栖息地特化程度。 龙马山群春季偏好落叶阔叶树的嫩芽与花;春末夏初偏好竹笋;秋季偏好果 实;冬季偏好壳斗科的种子。全年的食用植物共计27 科52 属97 种,多于中部 和北部猴群利用的种数。与疣猴亚科其他成员的食谱相比,这个数目仍然偏大。 龙马山群的生境利用方式可归纳如下:(1)家域被山脊分割为5 个相对独立 的斑块,斑块之间走廊状况差;(2)进入地图方格(250 m x 250 m)数与观察天 数的关联曲线呈台阶状上升,在120 个观察日前后达到渐近线;(3)年家域面积 约为9.56 km2,个体密度约8.5 只 / km2;(4)冬季与春季生境利用模式相似;(5) 夏季仅充分利用1 个斑块;(6)平均利用海拔高度为3023.75m。 考虑到(1)北端(西藏小昌都)猴群的食用植物种数为20,而中部(云南 维西塔城)是59 种;(2)地衣类的取食时间(树冠或以树冠为主的扫描观察) 在北端是82.1%,而中部是60%;(3)龙马山群具高度生境选择性,全部家域 在针阔混交林范围内。由此可以得出结论,黑白仰鼻猴的食性,以及相应的生境 需求并没有特化。北方猴群当前的食物与生境的‘不寻常’状态,或多或少是无 可奈何的生态适应。 与位于西藏芒康县的米拉卡群比较,龙马山群所受到的人类干扰主要是生境 的破坏与丧失,而米拉卡群面临的主要为偷猎。尽快建立保护区,禁止烧山毁林, 实施巡护制度,杜绝偷猎是龙马山群避免灭绝的唯一出路。
Resumo:
利用金属有机气相淀积方法生长了一种新型吸收体:高反射率半导体可饱和吸收镜.用这种吸收体兼作端镜,实现了1.044μm半导体端面泵浦Yb∶YAB激光器被动锁模,脉冲宽度为3.05ps,重复率为375MHz,输出功率为45mW.
Resumo:
黄龙世界自然遗产地岷江冷杉林(Abies faxoniana)生境类型多样,群落结构复杂,群落植物种类组成多样性丰富。揭示不同生境的生物多样性及其差异是认识生物多样性格局、形成及维持机制的前提和进行多样性保育的基础。本文采用样方法对黄龙钙化滩生境、阴坡非钙化生境及半阳坡非钙化生境的岷江冷杉原始林植物群落结构及植物多样性进行了研究。结果表明: 黄龙岷江冷杉林具有明显的复层异龄结构,垂直结构明显,乔木、灌木、草本、苔藓层次分明。共发现高等植物386 种,其中维管植物46 科103 属163 种,苔藓植38 科83 属物223 种。各层片结构及物种组成如下: (1)钙化滩生境、阴坡非钙化生境、半阳坡非钙化生境分别发现乔木18 种、13种、8 种。乔木层均可分为两个亚层,第一亚层优势种均为岷江冷杉,第二亚层主要为岷江冷杉异龄树或其它大高位芽物种。钙化滩生境第一亚层除优势种岷江冷杉外混生有巴山冷杉(Abies fargesii)、粗枝云杉(Picea asperata)以及阔叶树种白桦(Betula platyphylla)等,第二亚层主要为岷江冷杉异龄树;阴坡非钙化生境第一亚层除优势种岷江冷杉外间有巴山冷杉和白桦,第二亚层物种主要为川滇长尾槭(Acer caudatum var. prattii);半阳坡非钙化生境第一亚层除优势种岷江冷杉外混生有巴山冷杉,第二亚层主要为岷江冷杉异龄树。依乔木层优势种的差异,钙化滩生境及半阳坡非钙化生境为岷江冷杉纯林,阴坡非钙化生境为岷江冷杉-川滇长尾槭混交林。不同生境乔木层郁闭度、乔木密度、树高结构、直径结构均存在差异。 (2)钙化滩生境发现灌木41 种,平均盖度为18.49±1.72(%),平均高度为52.12±4.45(cm),优势种为直穗小檗(Berberis dasystachya);阴坡非钙化生境发现灌木30 种,平均盖度为29.33±2.56 (%),平均高度为119.55±8.01 (cm),优势种为箭竹 (Fargesia spathacea) 、唐古特忍冬(Lonicera tangutica) 和袋花忍冬(Lonicera saccata);半阳坡非钙化生境发现灌木29 种,平均盖度为31.35±1.93 (%),平均高度为107.55±4.24 (cm),优势种为箭竹(Fargesia spathacea)。不同生境灌木层结构和物种组成多样性差异显著,钙化滩生境的灌木盖度、高度总体上较非钙化的坡地生境低, 钙化滩生境灌木以小型叶的落叶灌木为主,沟两侧非钙化的坡地生境上则发育了丰富箭竹。 (3)钙化滩生境发现草本46 种,平均盖度为7.18±0.79 (%),平均高度为5.04±0.26(cm),以山酢浆草(Oxalis griffithii)为优势种;阴坡非钙化生境发现草本物种71 种,平均盖度达29.04±2.31(%),平均高度为9.08±0.52(cm),以钝叶楼梯草(Elatostema obtusum)、山酢浆草为优势种;半阳坡非钙化生境草本物种50 种,平均盖度为以8.79±0.82(%),平均高度为7.67±0.43 (cm),以扇叶铁线蕨(Adiantum flabellulatum)、双花堇菜(Viola biflora)、华中蛾眉蕨(Lunathyrium shennongense)、山酢浆草为优势种。阴坡非钙化生境草本层片发育良好,多样性最为丰富,盖度和物种丰富度均显著高于钙化滩生境和半阳坡非钙化生境。 (4)钙化滩生境发现苔藓物种140 种,平均盖度达84.25±1.30 (%),以仰叶星塔藓(Hylocomiastrum umbratum) 等大型藓类为优势种;阴坡非钙化生境发现苔藓物种115 种,平均盖度为79.29±1.64 (%),以刺叶提灯藓(Mnium spinosum)、大羽藓(Thuidium cymbifolium)、毛尖燕尾藓(Bryhnia trichomitra)等个体较小的物种为优势种;半阳坡非钙化生境发现苔藓物种91 种,平均盖度为60.64±1.93 (%),也以刺叶提灯藓为优势种。 (5)钙化滩生境、阴坡非钙化生境、半阳坡非钙化生境的物种数分别为234 种、221 种、175 种。乔木层的Shannon-Wiener 指数分别为0.75 ±0.12、1.87±0.12、1.78±0.07(灌木层,0.44±0.08、1.71± 0.15、2.49±0.06;草本层,0.33±0.13、1.31±0.15 、2.15±0.08; 苔藓层1.30±0.11、2.08±0.04、1.73±0.11,);Pielou 均匀度指数分别为0.45±0.05、0.29±0.06、0.28±0.08(灌木层,0.75±0.03、0.68±0.05、0.52±0.06;草本层,0.68±0.02、0.77±0.02、0.74±0.02;苔藓层,0.40±0.03、0.63±0.02、0.52±0.03);Simpson's 优势度指数分别为0.63±0.06、0.78±0.04、0.83±0.07(灌木层,0.21±0.03、0.28±0.05、0.45±0.06;草本层,0.25±0.02、0.12±0.01、0.17±0.01;苔藓层,0.45±0.04、0.18±0.01、0.31±0.04)。三种生境间乔木层、草本层的Sorenson 群落相似性系数较低, 灌木层、苔藓层的的Sorenson 群落相似性系数较高。 综上所述,黄龙岷江冷杉林的群落结构、植物多样性在三种生境间存在差异性,这将意味着我们在进行黄龙世界自然遗产地的森林经营管理时要较多地关注岷江冷山林群落在不同生境中的差异性。 There were multiplex habitat types, complicated community structure and abundant species composition in the Huanglong World Natural Heritage Site. Uncovering the differences of biodiversity among different habitats was a precondition to understand the distribution, formation and sustaining mechanism of the biodiversity, and the foundation of biodiversity conservation. In the present study, using plenty of quadrants, we investigated the community structure and the biodiversity of the primitive Abies faxoniana forest in different habitats (travertine bottomland, semi-sunny-slope non-calcified habitat and shady-slope non-calcified habitat) in the Huanglong World Natural Heritage Site. The main results are as follows: All the primitive Abies faxoniana forests in the three habitats were uneven-aged with obvious vertical structure including tree layer, shrub layer, herb layer and bryophyte layer. A total of 386 higher plants including 163 vascular plant species (103 generic, 46 families) and 223 bryophyte species (83 generic, 38 families) were investigated. The structure and species composition of each layer are as follows: (1) There were 18, 13 and 8 tree species in travertine bottomland, shady-slope non-calcified habitat and semi-sunny-slope non-calcified habitat, respectively. The tree layers in all habitats can be divided into two clear sub-layers. The upper tree layers were dominated by Abies faxoniana, and the lower tree layers were dominated by uneven-aged Abies faxoniana or other phanerophytes species. There were Abies fargesii , Picea asperata and Betula platyphylla besides the dominated species (Abies faxoniana) in the upper tree layer in travertine bottomland, and the lower tree layers were dominated by uneven-aged Abies faxoniana; There were Abies fargesii and Betula platyphylla besides the dominated species (Abies faxoniana) in the upper tree layer in shady-slope non-calcified habitat, and the lower tree layers were dominated by Acer caudatum var. prattii; There was Abies fargesii besides the dominated species (Abies faxoniana) in the upper tree layer semi-sunny-slope non-calcified habitat, and the lower tree layers were dominated by uneven-aged Abies faxoniana. According to composition percentage of dominate species in tree layer, both the forest in travertine bottomland and in semi-sunny-slope non-calcified habitat could be ranked as pure forest, and the forest in shady-slope non-calcified habitat could be ranked as mingled forest. There were significant differences in crown density, plant density, height structure and diameter structure among the three habitats. (2) A total of 41 shrub species (average coverage 18.49±1.72%; average height 52.12±4.45 ㎝)were found in travertine bottomland, and the dominate species was Berberis dasystachya; A total of 30 shrub species (average coverage 29.33±2.56 %;average height 119.55±8.01 ㎝)were found in shady-slope non-calcified habitat, and the dominate species was Fargesia spathacea, Lonicera tangutica and Lonicera saccata. A total of 29 shrub species (average coverage 31.35±1.93%; average height 107.55±4.24 ㎝) were found in semi-sunny-slope non-calcified habitat, and the dominate species was Fargesia spathacea. There were significant differences in structure and species diversity of the shrub layers among the three habitats. The coverage and height of shrub had lower value in travertine bottomland than in two non-calcified habitats. Moreover, travertine bottomland was dominated by deciduous shrub species with microphyll and non-calcified habitats developed abundant Fargesia spathacea species. (3) A total of 46 herb species (average coverage 7.18±0.79%;average height 5.04±0.26 ㎝)were found in travertine bottomland, and the dominate species was Oxalis griffithii; A total of 71 herb species (average coverage 29.04±2.31%;average height 9.08±0.52 ㎝)were found in shady-slope non-calcified habitat, and the dominate species was Elatostema obtusum and Oxalis griffithii. A total of 50 herb species (average coverage 8.79±0.82%;average height 7.67±0.43 ㎝) were found in semi-sunny-slope non-calcified habitat, and the dominate species was Adiantum flabellulatum, Viola biflora, Lunathyrium shennongense and Oxalis griffithii. Herb layers developed well in shady-slope non-calcified habitat and had the higher species richness and coverage than travertine bottomland and semi-sunny-slope non-calcified habitat. (4) A total of 140 bryophyte species (average coverage 84.25±1.30%)were found in travertine bottomland, and the dominate species was big bryophyte species such as Hylocomiastrum umbratum and so on; A total of 115 bryophyte species (average coverage 79.29±1.64%)were found in shady-slope non-calcified habitat, and the dominate species was small bryophyte species such as Mnium spinosum, Thuidium cymbifolium, Bryhnia trichomitra and so on. A total of 91 bryophyte species (average coverage 60.64±1.93%) were found in semi-sunny-slope non-calcified habitat, and the dominate species was Mnium spinosum. (5) There were 234, 221 and 175 plant species in travertine bottomland, shady-slope non-calcified habitat and semi-sunny-slope non-calcified habitat, respectively. Shannon-Wiener index of the tree layer was 0.75 ±0.12, 1.87±0.12 and 1.78±0.07 (the shrub layer, 0.44±0.08, 1.71± 0.15 and 2.49±0.06; the herb layer, 0.33±0.13, 1.31±0.15 and 2.15±0.08; the bryophyte layer, 1.30±0.11, 2.08±0.04 and 1.73±0.11.) for the three habitats, respectively; Pielou index of the tree layer was 0.45±0.05, 0.29±0.06 and 0.28±0.08 (the shrub layer, 0.75±0.03, 0.68±0.05 and 0.52±0.06; the herb layer, 0.68±0.02, 0.77±0.02 and 0.74±0.02; the bryophyte layer, 0.40±0.03, 0.63±0.02 and 0.52±0.03.) for the three habitats, respectively. Simpson's index of the tree layer was 0.63±0.06, 0.78±0.04 and 0.83±0.07 (the shrub layer, 0.21±0.03、0.28±0.05、0.45±0.06; the herb layer, 0.25±0.02, 0.12±0.01 and 0.17±0.01; the bryophyte layer, 0.45±0.04, 0.18±0.01 and 0.31±0.04.) for the three habitats, respectively. There were low Sorenson index both in the tree layer and in the herb layer among the three habitats, whereas, high Sorenson index occurred both in the shrub layer and in the bryophyte layer. To sum up, there were differences both in community structure and plant diversity among the three different habitats, which means that we should pay more attention to habitats heterogeneities of the primitive Abies faxoniana forest when we take action to manage the forest in the Huanglong World Natural Heritage Site.
Resumo:
Within the framework of the dinuclear system (DNS) model, production cross sections of new superheavy nuclei with charged numbers Z=108-114 are analyzed systematically. Possible combinations based on the actinide nuclides U-238, Pu-244, and Cm-248,Cm-250 with the optimal excitation energies and evaporation channels are pointed out to synthesize new isotopes that lie between the nuclides produced in the cold fusion reactions and the Ca-48-induced fusion reactions experimentally, which are feasible to be constructed experimentally. It is found that the production cross sections of superheavy nuclei decrease drastically with the charged numbers of compound nuclei. Larger mass asymmetries of the entrance channels enhance the cross sections in 2n-5n channels.