论坛时间:2019年11月5-8日论坛时间:2019年10月21-25日
2007年11月5日至7日,来自澳大利亚、美国、加拿大、日本、匈牙利、中国等财神app下载新手怎么玩的近百名农业科学家聚会中国杨凌,以“国际农业合作、创新与发展”为主题,就旱区农业与节水农业、高效畜牧业与动物疾病防控、食...
【点击查看更多内容】
2016 主页» 杨凌国际农业科技论坛» 论文摘要» 2016

Jin-Sheng He and Hao Wang

Department of Ecology, College of Urban and Environmental Sciences, Peking University, 5 Yiheyuan Rd., 100871 Beijing, China 相关阅读

Alpine wetland and grassland, representing ~61% of the land surface of the Tibetan Plateau, play an important role in global methane (CH4) budgets. Generally, alpine wetlands is a CH4 source and alpine grassland is a CH4 sink, but so far the source/sink strength and temporal pattern remain highly uncertain because of technical limitations and the harsh environments. In addition, rapid climate changes and intensifying human activities have resulted in water table lowering and enhanced nitrogen deposition. These changes may alter the magnitude and direction of greenhouse gas emissions, affecting the climate impact of these fragile ecosystems. To quantify the CH4 source/sink strength, we conducted the first in situ year-round CH4 flux observation using eddy covariance method in a fen (2011.7-) and a mesic meadow (2016.8-). Meanwhile, a mesocosm experiment combined with a metagenomics approach (GeoChip 5.0) was established to elucidate the effects of water table lowering (-20 cm relative to control) and nitrogen deposition (30 kg N ha-1 yr-1) on CO2, CH4 and nitrous oxide (N2O) fluxes as well as the underlying mechanisms. We found that the annual CH4 emissions were 26.4 and 33.8 g CH4 m-2 in 2012 and 2013, respectively, and a two-peak seasonal variation in CH4 fluxes was observed, with a small peak in the spring thawing period and a large one in the peak growing season. Furthermore, the non-growing season CH4 emissions accounted for 43.2-46.1% of the annual emissions, highlighting an indispensable contribution that was often overlooked by previous studies. Results from mesocosm experiment showed that water table lowering largely reduced CH4 emissions but did not affect net CO2 uptake and N2O fluxes, while N deposition increased net CO2 uptake and N2O emissions but had little influence on CH4 emissions. As a result, both water table lowering and N deposition reduced the overall global warming potential. GeoChip analysis revealed that decreased CH4 production potential, rather than increased CH4 oxidation potential, led to the reduction in net CH4 emissions, and decreased nitrification potential and increased denitrification potential affected N2O fluxes under WTL conditions. Our study highlights the importance of microbial mechanisms in regulating ecosystem-scale greenhouse gas responses to environmental changes. 相关阅读

Greenhouse Gas Emissions from Tibetan Alpine Ecosystems: Temporal Pattern and Responses to Water Table Lowering
发布时间:2016-12-18 来源:


上一篇: $article.name
下一篇: $article.name
Jin-Sheng He and H
Department of Ecol
版权所有 © 2006-2012 财神app下载新手怎么玩 国际合作与交流处
中国.陕西.杨凌邰城路3号 Tel: +86-29-87082857 Fax:+86-29-87082892 Email: ipo@nwsuaf.edu.cn

相关阅读

以下内容与「财神app下载新手怎么玩」同属公开资讯,可按栏目继续浏览相关条目。 继续了解

本站按公开材料组织页面。需要原文时请核对应栏目发布页。

若从搜索引擎进入,可先确认当前栏目名称,再按需打开相关阅读。

参会代表Participants | 2014 | $article.name | $article.name | 交通示意Transportation | 2012 | 论坛日程Agenda | 2017

栏目一览

forum / 主页 / Abstract / 2016lwzy

公开资讯滚动更新。建议通过站内栏目继续浏览,核对最新条目。