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资源简介:
the effect of organic or bio-organic substitution on soil N2O emissions
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创建时间:
2023-03-01
相关数据集
2000-2009,2010-2015中国陆地生态系统0.05°×0.05°土壤N2O通量V0版
土壤N2O产生与排放是全球陆地生态系统氮循环的关键环节,是气候变化研究的重点领域之一。该数据集为不同时期中国陆地生态系统土壤N2O通量模拟栅格数据,包括两期:2000至2009年为第一期,2010至2015年为第二期。
地球大数据科学工程2020-06-04 更新60
Soil biochar amendment shapes the composition of N2O-reducing microbial communities
Soil biochar amendment has been described as a promising tool to improve soil quality, sequester carbon, and mitigate nitrous oxide (N2O) emissions. N2O is a potent greenhouse gas. The main sources of
NIAID Data Ecosystem40
Data for opposing effects of maize straw and its biochar on soil N2O emissions by mediating microbial nitrification and denitrification in a subtropical Moso bamboo forest
Application of straw and biochar has been shown to significantly affect greenhouse gas emissions from soil. However, microbial mechanisms underlying the effects on soil N2O effluxes within subtropical
Figshare2025-05-08 更新20
Effect of N fertilizer forms on efficacy of 3,4-dimethylpyrazole phosphate (DMPP) in a grey desert soil
The nitrification inhibitor, 3,4-dimethylpyrazole phosphate (DMPP), can be used to reduce N2O emissions from agricultural ecosystems. However, the efficacy of DMPP on soil nitrification under differen
NIAID Data Ecosystem50
Maize root and shoot litter incubation experiment. soil metagenome
Chemical composition of root and shoot litter controls decomposition and, subsequently, C availability for biological nitrogen transformation processes in soils. While plant residues have been proven
NIAID Data Ecosystem40



