Effects of reducing nitrogen application and adding straw on N2O emission and soil nitrogen leaching of tomato in greenhouse
Tài liệu tham khảo
Butterbach-Bahl, 2013, Nitrous oxide emissions from soils: how well do we understand the processes and their controls?, Philos. Trans. R. Soc. Lond. B Biol. Sci., 368, 20130122, 10.1098/rstb.2013.0122
Chang, 2020, Impacts of nitrogen management and organic matter application on nitrous oxide emissions and soil organic carbon from spring maize fields in the North China Plain, Soil Tillage Res., 196, 104441, 10.1016/j.still.2019.104441
2017
Cuesta, 2019
Duan, 2019, Responses of N2O production pathways and related functional microbes to temperature across greenhouse vegetable field soils, Geoderma, 355, 113904, 10.1016/j.geoderma.2019.113904
Dubache, 2019, Modeling ammonia volatilization following urea application to winter cereal fields in the United Kingdom by a revised biogeochemical model, Sci. Total Environ., 660, 1403, 10.1016/j.scitotenv.2018.12.407
Fan, 2014, Conventional flooding irrigation causes an overuse of nitrogen fertilizer and low nitrogen use efficiency in intensively used solar greenhouse vegetable production, Agric. Water Manag., 144, 11, 10.1016/j.agwat.2014.05.010
Fang, 2021, Effects of sulfoxaflor on greenhouse vegetable soil N2O emissions and its microbial driving mechanism, Chemosphere, 267, 129248, 10.1016/j.chemosphere.2020.129248
Frimpong, 2010, Do combined applications of crop residues and inorganic fertilizer lower emission of N2O from soil?, Soil Use Manag., 26, 412, 10.1111/j.1475-2743.2010.00293.x
Guardia, 2016, Effect of cover crops on greenhouse gas emissions in an irrigated field under integrated soil fertility management, Biogeosciences, 13, 5245, 10.5194/bg-13-5245-2016
Guo, 2021, Exploring optimal nitrogen management for high yielding maize in arid areas via 15N-labeled technique, Geoderma, 382, 114711, 10.1016/j.geoderma.2020.114711
Hao, 2012, Effects of combined application of organic manure and chemical fertilizers on N2O emission from greenhouse vegetable soil, Plant Nutr. Fert. Sci., 5, 1073
Htun, 2017, Coupled effects of straw and nitrogen management on N2O and CH4 emissions of rainfed agriculture in Northwest China, Atmos. Environ., 157, 156, 10.1016/j.atmosenv.2017.03.014
Huang, 2020, Translocation and recovery of 15N-labeled N derived from the foliar uptake of 15NH3 by the greenhouse tomato (Lycopersicon esculentum Mill.), J. Integr. Agric., 19, 859, 10.1016/S2095-3119(19)62670-5
Huang, 2019, Reduced mineral fertilization coupled with straw return in field mesocosm vegetable cultivation helps to coordinate greenhouse gas emissions and vegetable production, J. Soils Sediments, 20, 1834, 10.1007/s11368-019-02477-2
Huddell, 2020, Meta-analysis on the potential for increasing nitrogen losses from intensifying tropical agriculture, Global Change Biol., 26, 1668, 10.1111/gcb.14951
Jalpa, 2021, Recovery efficiency of applied and residual nitrogen fertilizer in tomatoes grown on sandy soils using the 15N technique, Sci. Hortic., 278, 109861, 10.1016/j.scienta.2020.109861
Katyal, 1987, Efficient nitrogen use as affected by urea application and irrigation sequence, Soil Sci. Soc. Am. J., 51, 366, 10.2136/sssaj1987.03615995005100020020x
Kong, 2020, Microbial and isotopomer analysis of N2O generation pathways in ammonia removal biofilters, Chemosphere, 251, 126357, 10.1016/j.chemosphere.2020.126357
Leng, 2021, Evaluating the effects of biodegradable film mulching and topdressing nitrogen on nitrogen dynamic and utilization in the arid cornfield, Agric. Water Manag., 258, 107166, 10.1016/j.agwat.2021.107166
Li, 2017, Dynamic responses of nitrous oxide emission and nitrogen use efficiency to nitrogen and biochar amendment in an intensified vegetable field in southeastern China, GCB Bioenergy, 9, 400, 10.1111/gcbb.12356
Li, 2021, Linking soil profile N2O concentration with surface flux in a cotton field under drip fertigation, Environ. Pollut., 285, 117458, 10.1016/j.envpol.2021.117458
Liang, 2020, Modeling the effects of long-term reduced N application on soil N losses and yield in a greenhouse tomato production system, Agric. Syst., 185, 102951, 10.1016/j.agsy.2020.102951
Lv, 2018, Drip fertigation significantly reduces nitrogen leaching in solar greenhouse vegetable production system, Environ. Pollut., 245, 694, 10.1016/j.envpol.2018.11.042
Min, 2008, Effects of different nitrogen application levels on nitrogen, phosphorus and potassium uptake in vegetables and soil nutrient contents in greenhouse, Soils, 40, 226
Min, 2012, Optimizing nitrogen input to reduce nitrate leaching loss in greenhouse vegetable production, Agric. Water Manag., 111, 53, 10.1016/j.agwat.2012.05.003
Ni, 2021, Exponential relationship between N2O emission and fertilizer nitrogen input and mechanisms for improving fertilizer nitrogen efficiency under intensive plastic-shed vegetable production in China: a systematic analysis, Agric. Ecosyst. Environ., 312, 107353, 10.1016/j.agee.2021.107353
Nicholson, 1997, Effects of repeated straw incorporation on crop fertilizer nitrogen requirements, soil mineral nitrogen and nitrate leaching losses, Soil Use Manag., 13, 136, 10.1111/j.1475-2743.1997.tb00574.x
Qasim, 2021, Global greenhouse vegetable production systems are hotspots of soil N2O emissions and nitrogen leaching: a meta-analysis, Environ. Pollut., 272, 116372, 10.1016/j.envpol.2020.116372
Qiu, 2015, Nitrate transformation and N2O emission in a typical intensively managed calcareous fluvaquent soil: a 15-nitrogen tracer incubation study, Commun. Soil Sci. Plant Anal., 46, 1763, 10.1080/00103624.2015.1044112
Riya, 2012, Short-Term responses of nitrous oxide emissions and concentration profiles to fertilization and irrigation in greenhouse vegetable cultivation, Pedosphere, 22, 764, 10.1016/S1002-0160(12)60062-9
Shan, 2018, Emission of NH3 and N2O from spinach field treated with different fertilizers, Environ. Sci., 39, 4705
Suárez-Rey, 2016, Use of EU-Rotate_N and CropSyst models to predict yield, growth and water and N dynamics of fertigated leafy vegetables in a Mediterranean climate and to determine N fertilizer requirements, Agric. Syst., 149, 150, 10.1016/j.agsy.2016.09.007
Sun, 2019, Identifying optimal water and nitrogen inputs for high efficiency and low environment impacts of a greenhouse summer cucumber with a model method, Agric. Water Manag., 212, 23, 10.1016/j.agwat.2018.08.028
Tang, 2019, Effects of combined application of organic and inorganic nitrogen fertilizers on soil nitrous oxide emission from lettuce (Lactuca sativa L.)Fields, Soils, 51, 641
Wan, 2021, Mitigating ammonia volatilization and increasing nitrogen use efficiency through appropriate nitrogen management under supplemental irrigation and rain–fed condition in winter wheat, Agric. Water Manag., 255, 107050, 10.1016/j.agwat.2021.107050
Wang, 2021, Estimating nitrogen fates and gross transformations in bioretention systems with applications of 15N labeling methods, Chemosphere, 270, 129462, 10.1016/j.chemosphere.2020.129462
Wang, 2019, Soil C and N dynamics and hydrological processes in a maize-wheat rotation field subjected to different tillage and straw management practices, Agric. Ecosyst. Environ., 285, 106616, 10.1016/j.agee.2019.106616
Wang, 2021, Effects of plant density and nitrogen rate on cotton yield and nitrogen use in cotton stubble retaining fields, J. Integr. Agric., 20, 2090, 10.1016/S2095-3119(20)63323-8
Xie, 2016, Effects of reduced CRNF applications on N2O emissions and ammonia volatilization in spring maize soil, J. Agro-Environ. Sci., 35, 596
Xu, 2019, Crop straw incorporation interacts with N fertilizer on N2O emissions in an intensively cropped farmland, Geoderma, 341, 129, 10.1016/j.geoderma.2019.01.014
Xu, 2021, 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, Sci. Total Environ., 764, 142884, 10.1016/j.scitotenv.2020.142884
Xu, 2022, Biochar derived from spent mushroom substrate reduced N2O emissions with lower water content but increased CH4 emissions under flooded condition from fertilized soils in Camellia oleifera plantations, Chemosphere, 287, 132110, 10.1016/j.chemosphere.2021.132110
Yang, 2018, Improved crop yield and reduced nitrate nitrogen leaching with straw return in a rice-wheat rotation of Ningxia irrigation district, Sci. Rep., 8, 1
Yao, 2019, Drip irrigation or reduced N-fertilizer rate can mitigate the high annual N2O+NO fluxes from Chinese intensive greenhouse vegetable systems, Atmos. Environ., 212, 183, 10.1016/j.atmosenv.2019.05.056
Yao, 2017, Straw return reduces yield-scaled N2O plus no emissions from annual winter wheat-based cropping systems in the north China plain, Sci. Total Environ., 590, 174, 10.1016/j.scitotenv.2017.02.194
Yao, 2017, Reducing N2O and NO emissions while sustaining crop productivity in a Chinese vegetable-cereal double cropping system, Environ. Pollut., 231, 929, 10.1016/j.envpol.2017.08.108
Zhang, 2019, Does rice straw application reduce N2O emissions from surface flow constructed wetlands for swine wastewater treatment?, Chemosphere, 226, 273, 10.1016/j.chemosphere.2019.03.084
Zhao, 2012, Greenhouse tomato–cucumber yield and soil N leaching as affected by reducing N rate and adding manure: a case study in the Yellow River Irrigation Region China, Nutrient Cycl. Agroecosyst., 94, 221, 10.1007/s10705-012-9535-8
Zhao, 2021, Drip fertigation with straw incorporation significantly reduces N2O emission and N leaching while maintaining high vegetable yields in solar greenhouse production, Environ. Pollut., 273, 116521, 10.1016/j.envpol.2021.116521
Zhou, 2019, Organic-substitute strategies reduced carbon and reactive nitrogen footprints and gained net ecosystem economic benefit for intensive vegetable production, J. Clean. Prod., 225, 984, 10.1016/j.jclepro.2019.03.191
