Incorporating straw into intensively farmed cropland soil can reduce N2O emission via inhibition of nitrification and denitrification pathways.
暂无分享,去创建一个
R. Bol | Xin Zhang | Haowen Zhang | Aijun Zhang | Yuechen Tan | Qing Liang | Guiyan Wang
[1] Yi Zhao,et al. Response of greenhouse gases emissions and yields to irrigation and straw practices in wheat-maize cropping system , 2023, Agricultural Water Management.
[2] Ying-Min Xue,et al. N2O emissions from soils under short-term straw return in a wheat-corn rotation system are associated with changes in the abundance of functional microbes , 2023, Agriculture, Ecosystems & Environment.
[3] F. Hildebrand,et al. Structure and function of the soil microbiome underlying N2O emissions from global wetlands , 2022, Nature Communications.
[4] Xin-ping Chen,et al. Ammonia-oxidizing bacteria rather than ammonia-oxidizing archaea dominate nitrification in a nitrogen-fertilized calcareous soil. , 2021, The Science of the total environment.
[5] K. Butterbach‐Bahl,et al. Effects of crop residue incorporation and properties on combined soil gaseous N2O, NO, and NH3 emissions-A laboratory-based measurement approach. , 2021, The Science of the total environment.
[6] H. Vereecken,et al. Return of crop residues to arable land stimulates N2O emission but mitigates NO3− leaching: a meta-analysis , 2021, Agronomy for Sustainable Development.
[7] Ling-ling Yu,et al. Structure of rhizospheric microbial community and N cycling functional gene shifts with reduced N input in sugarcane-soybean intercropping in South China , 2021, Agriculture, Ecosystems & Environment.
[8] Xinhui Han,et al. Plastic film mulching mitigates the straw-induced soil greenhouse gas emissions in summer maize field , 2021, Applied Soil Ecology.
[9] A. Elrys,et al. Microbial process-oriented understanding of stimulation of soil N2O emission following the input of organic materials. , 2021, Environmental pollution.
[10] Y. Zhuge,et al. Crop straw incorporation alleviates overall fertilizer-N losses and mitigates N2O emissions per unit applied N from intensively farmed soils: An in situ 15N tracing study. , 2020, The Science of the total environment.
[11] Wen Wang,et al. Plastic film mulching affects N2O emission and ammonia oxidizers in drip irrigated potato soil in northwest China. , 2020, The Science of the total environment.
[12] A. Juhasz,et al. Straw decreased N2O emissions from flooded paddy soils via altering denitrifying bacterial community compositions and soil organic carbon fractions. , 2020, FEMS microbiology ecology.
[13] Deli Chen,et al. Enhanced efficiency fertilisers reduce nitrous oxide emissions and improve fertiliser 15N recovery in a Southern Australian pasture. , 2020, The Science of the total environment.
[14] Huijuan Guo,et al. Nitrous oxide emission and denitrifier bacteria communities in calcareous soil as affected by drip irrigation with saline water , 2019, Applied Soil Ecology.
[15] G. Xie,et al. Crop residue utilizations and potential for bioethanol production in China , 2019, Renewable and Sustainable Energy Reviews.
[16] Xiaojuan Wang,et al. Microbial driven reduction of N2O and NH3 emissions during composting: Effects of bamboo charcoal and bamboo vinegar. , 2019, Journal of hazardous materials.
[17] B. Li,et al. Organic-substitute strategies reduced carbon and reactive nitrogen footprints and gained net ecosystem economic benefit for intensive vegetable production , 2019, Journal of Cleaner Production.
[18] Xiaoyu Liu,et al. Impact of biochar amendment on the abundance and structure of diazotrophic community in an alkaline soil. , 2019, The Science of the total environment.
[19] R. Rees,et al. Crop straw incorporation interacts with N fertilizer on N2O emissions in an intensively cropped farmland , 2019, Geoderma.
[20] Jiang Liu,et al. Variation in N2O emission and N2O related microbial functional genes in straw- and biochar-amended and non-amended soils , 2019, Applied Soil Ecology.
[21] Jianqiang Ren,et al. Long-term effects of biochar addition and straw return on N2O fluxes and the related functional gene abundances under wheat-maize rotation system in the North China Plain , 2019, Applied Soil Ecology.
[22] A. Cowie,et al. Biochar in climate change mitigation , 2018, Nature Geoscience.
[23] M. Schloter,et al. Potential of Wheat Straw, Spruce Sawdust, and Lignin as High Organic Carbon Soil Amendments to Improve Agricultural Nitrogen Retention Capacity: An Incubation Study , 2018, Front. Plant Sci..
[24] H. Cantarella,et al. Nitrosospira sp. Govern Nitrous Oxide Emissions in a Tropical Soil Amended With Residues of Bioenergy Crop , 2018, Front. Microbiol..
[25] L. Ma,et al. Straw enhanced CO2 and CH4 but decreased N2O emissions from flooded paddy soils: Changes in microbial community compositions , 2018 .
[26] S. Wakelin,et al. Nitrous oxide emission and denitrifier communities in drip-irrigated calcareous soil as affected by chemical and organic fertilizers. , 2018, The Science of the total environment.
[27] J. Prosser,et al. Archaea produce lower yields of N2O than bacteria during aerobic ammonia oxidation in soil , 2017, Environmental microbiology.
[28] K. Butterbach‐Bahl,et al. Straw return reduces yield-scaled N2O plus NO emissions from annual winter wheat-based cropping systems in the North China Plain. , 2017, The Science of the total environment.
[29] Y. Tong,et al. Coupled effects of straw and nitrogen management on N 2 O and CH 4 emissions of rainfed agriculture in Northwest China , 2017 .
[30] Y. Mu,et al. The influence of straw returning on N2O emissions from a maize-wheat field in the North China Plain. , 2017, The Science of the total environment.
[31] D. Ercolini,et al. Organic farming induces changes in soil microbiota that affect agro-ecosystem functions , 2016 .
[32] L. Cárdenas,et al. Effect of cover crops on greenhouse gas emissions in an irrigated field under integrated soil fertility management , 2016 .
[33] Youlu Bai,et al. Effects of long-term full straw return on yield and potassium response in wheat-maize rotation , 2015 .
[34] S. Machado,et al. Long‐Term Crop Residue and Nitrogen Management Effects on Soil Profile Carbon and Nitrogen in Wheat–Fallow Systems , 2015 .
[35] Yendi E. Navarro-Noya,et al. Relative impacts of tillage, residue management and crop-rotation on soil bacterial communities in a semi-arid agroecosystem , 2013 .
[36] F. Hu,et al. Soil nitrous oxide emissions following crop residue addition: a meta‐analysis , 2013, Global change biology.
[37] T. Scholten,et al. Linking N2O emissions from biochar-amended soil to the structure and function of the N-cycling microbial community , 2013, The ISME Journal.
[38] Xiaoyuan Yan,et al. Effects of crop residue returning on nitrous oxide emissions in agricultural soils , 2013 .
[39] Ji‐Zheng He,et al. A review of ammonia-oxidizing bacteria and archaea in Chinese soils , 2012, Front. Microbio..
[40] J. Mao,et al. Structural convergence of maize and wheat straw during two-year decomposition under different climate conditions. , 2012, Environmental science & technology.
[41] Jinshui Wu,et al. Influence of fertilisation regimes on a nosZ-containing denitrifying community in a rice paddy soil. , 2012, Journal of the science of food and agriculture.
[42] X. Ju,et al. New estimates of direct N 2 O emissions from Chinese croplands from 1980 to 2007 using localized emission factors , 2011 .
[43] C. Desnues,et al. Seasonal and diel distributions of denitrifying and bacterial communities in a hypersaline microbial mat (Camargue, France). , 2007, Water research.
[44] J. W. Groenigen,et al. Earthworm activity as a determinant for N2O emission from crop residue , 2007 .
[45] Reiner Wassmann,et al. Greenhouse gas emissions from Indian rice fields: calibration and upscaling using the DNDC model , 2005 .
[46] R. Conrad,et al. Effect of Soil Ammonium Concentration on N2O Release and on the Community Structure of Ammonia Oxidizers and Denitrifiers , 2002, Applied and Environmental Microbiology.
[47] N. Wrage,et al. Role of nitrifier denitrification in the production of nitrous oxide , 2001 .
[48] W. Visser. AGRICULTURE , 1952, Atlas of Yellowstone.
[49] X. Ju,et al. Full straw incorporation into a calcareous soil increased N2O emission despite more N2O being reduced to N2 in the winter crop season , 2022, Agriculture, Ecosystems & Environment.
[50] Yinghui Liu,et al. Soil properties and microbial abundance explain variations in N2O fluxes from temperate steppe soil treated with nitrogen and water in Inner Mongolia, China , 2021 .
[51] L. Stein. Surveying N2O-producing pathways in bacteria. , 2011, Methods in enzymology.