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11.
Comparison of ecophysiological characteristics between introduced and indigenous mangrove species in China 总被引:1,自引:1,他引:1
Luzhen Chen Nora F.Y. Tam Jianhui Huang Xueqin Zeng Xiangli Meng Cairong Zhong Yuk-shan Wong Guanghui Lin 《Estuarine, Coastal and Shelf Science》2008,79(4):644-652
Due to its rapid growth, the introduced mangrove species Sonneratia apetala from Bangladesh has been widely used in mangrove restoration in southeastern China since 1985. As an indigenous mangrove species in Hainan, China, Sonneratia caseolaris was also planted in Guangdong Province for afforestation purposes. Both species have developed well in their new habitats, but their ecophysiological differences with the native mangrove species have not been studied. In this study, leaf gas exchange, water and nitrogen use efficiencies of two Sonneratia species were compared with those of selected native mangrove species (Avicennia marina, Aegiceras corniculatum, Kandelia candel, and Excoecaria agallocha) in Hainan and Shenzhen. The introduced S. apetala maintained lower carbon assimilation rate (A) and photosynthetic nitrogen use efficiency (PNUE) than the indigenous S. caseolaris. In Shenzhen, the two introduced Sonneratia had comparable photosynthetic rates and water use efficiency (WUE) with the native mangrove species, except that PNUE in S. caseolaris was significantly higher than in the native mangrove species. The two Sonneratia species showed significant overlap in PNUE and long-term WUE. Photosynthetic parameters derived from leaf photosynthetic light–response curves and A–Ci curves also suggested lower carbon assimilation capacities for the introduced Sonneratia than for the native mangrove species in both study sites. The lower light compensation point (LCP) of two introduced Sonneratia in both study sites also indicated a better adaptation to a low light regime than the native mangrove species. The results of photosynthetic capacities indicated that the introduced mangrove species have little competitive advantage over local native mangrove species in their respective new habitats. 相似文献
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本文首先介绍了在频率域上对爆破加速度测量系统的低频响应误差和高频响应误差的详细分析过程,并对输入、输出波形采用频谱分析及计算幅频曲线,用幅频曲线所包围的不同面积来计算经过测量系统后所引起的误差.其次介绍了采用傅里叶变换法如何在频率域上标定冲击加速度计,给出了确定加速度灵敏度的方法. 相似文献
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历史时期(1765-1980年)西藏水旱雪灾规律的探讨 总被引:7,自引:0,他引:7
本文利用近千份藏文灾情历史档案和清政府驻西藏办事大臣有泰的日记和联豫的奏稿,以及西藏气象观测记录(1951—1980年),对西藏高原历史时期的水、旱、雪灾作了初步探讨,主要结论如下: 1.近百年来藏南的水旱灾是交替出现的,有三个多水期(1883—1906,1916—1934,1947—1962)和三个干旱期(1907—1915,1935—1946,1963—1980)。干旱期有逐渐加长的趋势。 2.西藏除了有变干的总趋势外,水旱灾还有明显的3.8—2.6年的周期。这与普遍存在的“准两年脉动”周期大体上一致。 3.藏南农区的降水量即使高于常年的一倍也不易形成洪水泛滥和大面积的内涝,但年降水量比常年少100mm以上就可造成严重干旱,农业生产大幅度减产。 4.造成西藏干旱的原因很多也很复杂,除高原气候近期有变干暖的总趋势外,近20年来水浇地和有效灌溉面积的扩大,以及农作物的种植比例不适当,象过份扩大冬小麦种植面积等亦会造成农业干旱。 5.19世纪以来,藏北高原共发生15次严重大雪灾,其中尤以1828—1829年,1927—1928年,1887—1888年三次雪灾最为严重。但近50年,发生的雪灾较过去有所减轻。不过,1967—1968年雪灾也较为严重。 相似文献
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洞穴沉积铀含量及其同位素初始234U/238U[(234U/238U)0]变化均与过去气候环境变化关系密切。文章分别对石笋中U含量和(234U/238U)0的气候意义进行统计分析发现,多数研究认为洞穴沉积U含量和(234U/238U)0可能指示土壤湿度和有效降水变化。然而,不管是对洞穴沉积的U含量还是(234U/238U)0,其气候环境意义解读还存在两种观点。但无论如何,这些研究成果都显示了洞穴沉积的U含量和(234U/238U)0是研究过去气候环境变化的重要替代指标。在未来的研究中,除了土壤环境和过程,还应关注U来源的相对贡献变化和其他微量元素与U元素的关系。这一指标可能在对东亚地区的大气粉尘活动和冬季风演化、地表生物量的变化研究等方面发挥重要作用。 相似文献
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福建明溪上地幔热结构及流变学特征 总被引:3,自引:0,他引:3
通过对采自福建明溪的幔源包体样品的详细研究,建立了该区上地幔的地温线,探讨其流变学特征。所获地温线高于大洋地温线,但稍低于中国东部和澳大利亚东南部地温线。由该地温线推导的壳幔边界为38km左右,但尖晶石二辉橄榄岩在32km左右即已开始出现,表明存在上地幔物质的底侵作用。同样,尖晶石二辉橄榄岩和石榴子石二辉橄榄岩包体平衡温度有所重叠,表明两者不是截然分开,其间存在有5 ̄10km的过渡带。包体的变形特 相似文献
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Lateral extrusion along the Altyn Tagh Fault,Qilian Shan (NE Tibet): insight from a 3D crustal budget 下载免费PDF全文
Feng Cheng Marc Jolivet Guillaume Dupont‐Nivet Lin Wang Xiangjiang Yu Zhaojie Guo 《地学学报》2015,27(6):416-425
The lithospheric strike‐slip Altyn Tagh Fault has accommodated hundreds of kilometres of displacement between the Qaidam and Tarim blocks since its Eocene reactivation. However, the way the deformation is accommodated in the Qilian Shan and further east remains uncertain. Based on 360 km of north‐eastward migration of the relatively rigid Qaidam block along the Altyn Tagh Fault and 3D isovolumetric balancing of the crustal deformation within the Altyn Tagh Fault–Qilian Shan system, we demonstrate that 250 ± 28 km (43.8–49.4%) of N20E directed crustal shortening and an additional ~250–370 km of eastward motion of the Qilian Shan crust must be accounted for by strike‐slip faulting in the Qilian Shan and crustal thickening in the Qinling area, as well as by extension in the adjoining North China block graben systems. 相似文献
20.
Lin Ding Satybaev Maksatbek FuLong Cai HouQi Wang PeiPing Song WeiQiang Ji Qiang Xu LiYun Zhang Qasim Muhammad Baral Upendra 《中国科学:地球科学(英文版)》2017,60(4):635-651
The initial collision between Indian and Asian continents marked the starting point for transformation of land-sea thermal contrast, uplift of the Tibet-Himalaya orogen, and climate change in Asia. In this paper, we review the published literatures from the past 30 years in order to draw consensus on the processes of initial collision and suturing that took place between the Indian and Asian plates. Following a comparison of the different methods that have been used to constrain the initial timing of collision, we propose that the tectono-sedimentary response in the peripheral foreland basin provides the most sensitive index of this event, and that paleomagnetism presents independent evidence as an alternative, reliable, and quantitative research method. In contrast to previous studies that have suggested collision between India and Asia started in Pakistan between ca. 55 Ma and 50 Ma and progressively closed eastwards, more recent researches have indicated that this major event first occurred in the center of the Yarlung Tsangpo suture zone (YTSZ) between ca. 65 Ma and 63 Ma and then spreading both eastwards and westwards. While continental collision is a complicated process, including the processes of deformation, sedimentation, metamorphism, and magmatism, different researchers have tended to define the nature of this event based on their own understanding, an intuitive bias that has meant that its initial timing has remained controversial for decades. Here, we recommend the use of reconstructions of each geological event within the orogenic evolution sequence as this will allow interpretation of collision timing on the basis of multidisciplinary methods. 相似文献