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61.
62.
FPAR的Monte Carlo模拟研究 总被引:2,自引:0,他引:2
FPAR (fraction of photosynthetically active radiation absorbed by the canopy)是植被冠层阻截太阳光合有效辐射的比例,是遥感估算陆地生态系统植被净第一性生产力(NPP)的重要参数.利用Monte Carlo方法模拟光子在植被冠层中的辐射传输过程,以植被冠层二向反射分布函数的模拟来验证模拟的正确性;在此基础上对400-700nm光合作用波段范围内的植被叶片吸收光子辐射比例的FPAR进行模拟.FPAR的Monte Carlo模拟结果,揭示了FPAR与太阳天顶角及植被冠层参数之间的关系. 相似文献
63.
Monitoring and minimizing tourist’s water consumption is essential for the sustainable development of mountain destinations in the world. However, available data and a generally accepted protocol on such measurement are still limited. This study uses water footprint accounting to quantify tourist’s water demand in the Liming valley, a World Heritage site and a rapidly growing tourism destination in Northwest Yunnan, China. Both the water for direct and indirect use is taken into account based on the consump... 相似文献
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加拿大萨斯喀彻温省西北部阿萨巴斯卡盆地McArthur River铀矿床是世界上最大、最富的不整合面型铀矿床。笔者通过对该矿床的剖析,从宏观上对这类铀矿床的一些形成规律进行了初步探讨,并对在我国寻找不整合面型或相似类型的铀矿床提出了一些认识。 相似文献
67.
Sulfur isotope fractionation during bacterial sulfate reduction in organic-rich sediments 总被引:18,自引:0,他引:18
Isotope fractionation during sulfate reduction by natural populations of sulfate-reducing bacteria was investigated in the cyanobacterial microbial mats of Solar Lake, Sinai and the sediments of Logten Lagoon sulfuretum, Denmark. Fractionation was measured at different sediment depths, sulfate concentrations, and incubation temperatures. Rates of sulfate reduction varied between 0.1 and 37 micromoles cm-3 d-1, with the highest rates among the highest ever reported from natural sediments. The depletion of 34S during dissimilatory sulfate reduction ranged from 16% to 42%, with the largest 34S-depletions associated with the lowest rates of sulfate reduction and the lowest 34S-depletions with the highest rates. However, at high sulfate reduction rates (>10 micromoles cm-3 d-1) the lowest fractionation was 20% independent of the rates. Overall, there was a similarity between the fractionation obtained by the natural populations of sulfate reducers and previous measurements from pure cultures. This was somewhat surprising given the extremely high rates of sulfate reduction in the experiments. Our results are explained if we conclude that the fractionation was mainly controlled by the specific rate of sulfate reduction (mass cell-1 time-1) and not by the absolute rate (mass volume-1 time-1). Sedimentary sulfides (mainly FeS2) were on average 40% depleted in 34S compared to seawater sulfate. This amount of depletion was more than could be explained by the isotopic fractionations that we measured during bacterial sulfate reduction. Therefore, additional processes contributing to the fractionation of sulfur isotopes in the sediments are indicated. From both Solar Lake and Logten Lagoon we were able to enrich cultures of elemental sulfur-disproportionating bacteria. We suggest that isotope fractionation accompanying elemental sulfur disproportionation contributes to the 34S depletion of sedimentary sulfides at our study sites. 相似文献
68.
TEILHARD DE CHARDIN 《地质学报》1932,11(4):401-416
Since the beginning of their survey of the Gobi (1922), the geologists of the American Central Asiatic Expedition were struck by the almost universal presence, in the old floor of the Mongolian Plateau, of a very thick slates and graywackes formation, admitting a few marine limestone intercalations, and more or less strongly metamorphosed (s. Berkey and Morris. 1927, passim). 相似文献
69.
Marine beds, containing numerous well preserved shells, are actuallyexposed in a broad pit recently open, one mile south from the Hoangho-PaihoMuseum (Race Course Road, Tientsin), in order to get the earth required forthe filling of some pools along the Race Course Road. 相似文献
70.
P.TEILHARD DE CHARDIN 《地质学报》1939,19(3)
Two exceptionally well preserved skulls of Machairodus foundin the Lower Pleistocene of Choukoutien are described herein.They belong to twodifferent sections of the Machairodus group,roughly referable to the EuropeanEpimachairodus and Megantereon respectively.The persistence and developmentof the two forms side-by-side since the Pliocene is suggested. 相似文献