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中新世以来我国季风-干旱环境演化与青藏高原的生长 被引量:202
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作者 安芷生 张培震 +13 位作者 王二七 王苏民 强小科 李力 宋友桂 常宏 刘晓东 周卫健 刘卫国 曹军骥 李小强 沈吉 刘禹 艾莉 《第四纪研究》 CAS CSCD 北大核心 2006年第5期678-693,共16页
根据中国北方地质、生物和构造记录与南海及全球记录的对比研究,讨论了中国中新世以来季风-干旱环境与青藏高原阶段性生长耦合演化的关系。研究认为,在研究季风环境的同时,应加强我国季风-干旱环境整体系统变迁及其动力学的研究。
关键词 季风-干旱环境 青藏高原生长
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Profile of Methane Concentrations in Soil and Atmosphere in Alpine Steppe Ecosystem on Tibetan Plateau 被引量:1
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作者 Pei Zhiyong Ouyang Hua +1 位作者 Zhou Caiping Xu Xingliang 《Chinese Journal of Population,Resources and Environment》 2009年第1期3-10,共8页
The methane concentration profile from -1.5m depth in soil to 32m height in air was measured in alpine steppe lo-cated in the permafrost area. Methane concentrations showed widely variations both in air and in soil du... The methane concentration profile from -1.5m depth in soil to 32m height in air was measured in alpine steppe lo-cated in the permafrost area. Methane concentrations showed widely variations both in air and in soil during the study period. The mean concentrations in atmosphere were all higher than those in soil, and the highest methane concentration was found in air at the height of 16m with the lowest concentration occur-ring at the depth of 1.5m in soil. The variations of atmospheric methane concentrations did not show any clear pattern both temporally and spatially, although they exhibited a more steady-stable state than those in soil. During the seasonal variations, the methane concentrations at different depths in soil were sig-nificantly correlated (R2>0.6) with each other comparing to the weak correlations (R2<0.2) between the atmospheric concentra-tions at different heights. Mean methane concentrations in soil significantly decreased with depth. This was the compositive influence of the decreasing production rates and the increasing methane oxidation rates, which was caused by the descent soil moisture with depth. Although the methane concentrations at all depths varied widely during the growing season, they showed very distinct temporal variations in the non-growing season. It was indicated from the literatures that methane oxidation rates were positively correlated with soil temperature. The higher methane concentrations in soil during the winter were deter-mined by the lower methane oxidation rates with decreasing soil temperatures, whereas methane production rates had no reaction to the lower temperature. Relations between methane contribution and other environmental factors were not discussed in this paper for lacking of data, which impulse us to carry out further and more detailed studies in this unique area. 展开更多
关键词 METHANE concentration profile temperature MOISTURE alpine steppe Tibetan Plateau
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