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[HTML][HTML] Influence of biochar on soil air permeability and greenhouse gas emissions in vegetated soil: a review
The increasing emission of greenhouse gases such as CO 2, CH 4, and N 2 O from the soil
has become a growing concern globally. To address this issue, biochar has emerged as an …
has become a growing concern globally. To address this issue, biochar has emerged as an …
[HTML][HTML] Towards a net-zero greenhouse gas emission egg industry: A review of relevant mitigation technologies and strategies, current emission reduction potential …
Despite having relatively low greenhouse gas (GHG) emissions compared to other terrestrial
animal protein sources, egg production is among the fastest-growing livestock sectors and …
animal protein sources, egg production is among the fastest-growing livestock sectors and …
Global evaluation of inhibitor impacts on ammonia and nitrous oxide emissions from agricultural soils: A meta‐analysis
Inhibitors are widely considered an efficient tool for reducing nitrogen (N) loss and improving
N use efficiency, but their effectiveness is highly variable across agroecosystems. In this …
N use efficiency, but their effectiveness is highly variable across agroecosystems. In this …
A global synthesis of soil denitrification: Driving factors and mitigation strategies
Dinitrogen (N 2) and nitrous oxide (N 2 O) produced via denitrification may represent major
nitrogen (N) loss in terrestrial ecosystems. A global assessment of soil denitrification rate, N …
nitrogen (N) loss in terrestrial ecosystems. A global assessment of soil denitrification rate, N …
[HTML][HTML] Use of urease and nitrification inhibitors to reduce gaseous nitrogen emissions from fertilizers containing ammonium nitrate and urea
H Wang, S Köbke, K Dittert - Global Ecology and Conservation, 2020 - Elsevier
Nitrogen (N) fertilizers increase agricultural yields, but also lead to the release of the
greenhouse gases nitrous oxide (N 2 O) and ammonia (NH 3). This not only reduces the …
greenhouse gases nitrous oxide (N 2 O) and ammonia (NH 3). This not only reduces the …
Comprehensive assessment of the effects of nitrification inhibitor application on reactive nitrogen loss in intensive vegetable production systems
Previous studies regarding environmental impacts of nitrification inhibitors (NIs) in intensive
vegetable production systems mainly focused on the fate of individual nitrogen (N) …
vegetable production systems mainly focused on the fate of individual nitrogen (N) …
Overview of recent researches on nitrifying microorganisms in soil
M Hayatsu, C Katsuyama, K Tago - Soil Science and Plant …, 2021 - Taylor & Francis
Nitrogen cycle, a most important elemental cycle in earth ecosystem, is carried out by three
major microbial processes including nitrogen fixation, nitrification and denitrification …
major microbial processes including nitrogen fixation, nitrification and denitrification …
The efficacy of 3, 4-dimethylpyrazole phosphate on N2O emissions is linked to niche differentiation of ammonia oxidizing archaea and bacteria across four arable soils
X Fan, C Yin, H Chen, M Ye, Y Zhao, T Li… - Soil Biology and …, 2019 - Elsevier
Abstract The nitrification inhibitor, 3, 4-dimethylpyrazole phosphate (DMPP), can be used to
reduce N 2 O emissions from agricultural ecosystems. However, the effectiveness of DMPP …
reduce N 2 O emissions from agricultural ecosystems. However, the effectiveness of DMPP …
Effects of water regimes on soil N2O, CH4 and CO2 emissions following addition of dicyandiamide and N fertilizer
Water regimes strongly impact soil C and N cycling and the associated greenhouse gases
(GHGs, ie, CO 2, CH 4 and N 2 O). Therefore, a study was conducted to examine the impacts …
(GHGs, ie, CO 2, CH 4 and N 2 O). Therefore, a study was conducted to examine the impacts …
Optimizing nitrogen and water management for sustainable greenhouse vegetable production with less greenhouse gas emissions
P Zhou, X Bai, H Wang, M Yang, L Bao, X Deng… - Agriculture, Ecosystems …, 2023 - Elsevier
Intensive greenhouse vegetable production is considered a major source of greenhouse
gas emissions and ammonia volatilization in China because the overuse of nitrogen (N) …
gas emissions and ammonia volatilization in China because the overuse of nitrogen (N) …