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Isotopocule analysis of biologically produced nitrous oxide in various environments
Natural abundance ratios of isotopocules, molecules that have the same chemical
constitution and configuration, but that only differ in isotope substitution, retain a record of a …
constitution and configuration, but that only differ in isotope substitution, retain a record of a …
Pathways of soil N2O uptake, consumption, and its driving factors: a review
H Liu, Y Li, B Pan, X Zheng, J Yu, H Ding… - … Science and Pollution …, 2022 - Springer
Nitrous oxide (N2O) is an important greenhouse gas that plays a significant role in
atmospheric photochemical reactions and contributes to stratospheric ozone depletion. Soils …
atmospheric photochemical reactions and contributes to stratospheric ozone depletion. Soils …
The soil N cycle: new insights and key challenges
The study of soil N cycling processes has been, is, and will be at the centre of attention in
soil science research. The importance of N as a nutrient for all biota; the ever-increasing …
soil science research. The importance of N as a nutrient for all biota; the ever-increasing …
Assessment of the straw and biochar application on greenhouse gas emissions and yield in paddy fields under intermittent and controlled irrigation patterns
H He, D Li, Z Wu, Z Wu, Z Hu, S Yang - Agriculture, Ecosystems & …, 2024 - Elsevier
Water-saving irrigation and straw and biochar application are common agronomic practices
in rice production, and their profound impact on greenhouse gas (GHG) emissions from …
in rice production, and their profound impact on greenhouse gas (GHG) emissions from …
[HTML][HTML] Mitigation of greenhouse gas emissions and reduced irrigation water use in rice production through water-saving irrigation scheduling, reduced tillage and …
SF Islam, BO Sander, JR Quilty, A De Neergaard… - Science of the Total …, 2020 - Elsevier
Rice production systems are the largest anthropogenic wetlands on earth and feed more
than half of the world's population. However, they are also a major source of global …
than half of the world's population. However, they are also a major source of global …
Contribution of Ammonium-Induced Nitrifier Denitrification to N2O in Paddy Fields
Y Qin, S Wang, X Wang, C Liu… - Environmental Science & …, 2023 - ACS Publications
Paddy fields are one of the most important sources of nitrous oxide (N2O), but
biogeochemical N2O production mechanisms in the soil profile remain unclear. Our study …
biogeochemical N2O production mechanisms in the soil profile remain unclear. Our study …
[HTML][HTML] Increased N2O emission due to paddy soil drainage is regulated by carbon and nitrogen availability
L Wu, S Tang, R Hu, J Wang, P Duan, C Xu, W Zhang… - Geoderma, 2023 - Elsevier
Conversion from paddy field to upland cultivation, driven by economic benefits, generally
increases N 2 O emission. However, the underlying mechanisms regarding the changes in …
increases N 2 O emission. However, the underlying mechanisms regarding the changes in …
Soil properties shape the heterogeneity of denitrification and N2O emissions across large‐scale flooded paddy soils
Y Tang, X Su, T Wen, AB McBratney… - Global Change …, 2024 - Wiley Online Library
Flooded paddy soils after rewetting dry soils accompanied by extensive nitrogen fertilizer
input are important anthropogenic N2O emitters due to the denitrification process. Owing to …
input are important anthropogenic N2O emitters due to the denitrification process. Owing to …
Impacts of alternate wetting and drying on greenhouse gas emission from paddy field in Central Vietnam
Vietnam is the world's fifth largest rice producing country. Since methane (CH4), a potent
greenhouse gas (GHG), emission from the rice cultivation accounts for 14.6% of the national …
greenhouse gas (GHG), emission from the rice cultivation accounts for 14.6% of the national …
Nitrification and coupled nitrification-denitrification at shallow depths are responsible for early season N2O emissions under alternate wetting and drying management …
There is increasing pressure to reduce water use in irrigated rice production to save water,
reduce methane emissions and reduce grain arsenic uptake arising from anaerobic …
reduce methane emissions and reduce grain arsenic uptake arising from anaerobic …