论文部分内容阅读
Net fluxes of ammonium and nitrate in association with H+fluxes in fine roots of Populus popularis
【机 构】
:
College of Life Sciences,Northwest Agriculture & Forestry University,Yangling,Shaanxi,712100,P.R.Chi
【出 处】
:
International Symposium on Forest Soils(2013年森林土壤国际研讨会)
【发表日期】
:
2013年11期
其他文献
Sustained inputs of nitrogen (N) via atmospheric deposition or N fertilizers,important global change drivers,are likely to change soil organic matter quantity and quality and ultimately affect soil C
Soil fauna can be an agent to create a hot spot of N2O production in soil but its quantitative importance has been poorly understood. Here, we studied total dose of N2O production and the nitrogen cyc
Impacts of Ageratina adenophora invasion on soil water, soil organic matter and soil nitrogen in Euc
Eucalyptus tree-Ageratina adenophora compound system is considered as a new invasion in Yunnan, southwest China in recent years. In this paper, the impacts of A. adenophora invasion on soil water, soi
Effects of forest management on organic matter cycling and soil acidification in a Japanese cedar pl
In Japanese cedar plantations, forest management strategies to minimize soil degradation including acidification need to be established. Both clear-cutting and stem girdling (removal of bark and phloe
Enhanced sequestration of plant-carbon (C) inputs to soil may alleviate rising atmospheric C02 concentrations and related climate change but how this sequestration will respond to anthropogenic nitrog
Eastern Asia,China in particular,is becoming the third hot spot of atmospheric N deposition.So far,little is known about the N dynamics and the response to increasing N deposition in subtropical fores
会议
The stable nitrogen isotope (δ15N) patterns of soil and leaf decrease with increasing mean annual precipitation (MAP) have been found both in regional and global scale. However, the mechanisms for the
Modeled effects of climate change on soil N20 emission in broad-leaved Korean pine mixed forest, Cha
Soil-emitted N2O contributes to two-thirds of global N2O emissions,and is sensitive to climate change.We used DayCent model to project soil N2O emissions in broad-leaved Korean pine mixed forest,Chang