Erratum to “Organic vegetable cultivation reduces N leaching while increasing the relative soil N budget” [Agric. Water Manag. 213 (2019) 803–808]
Tài liệu tham khảo
Aguilera, 2013, The potential of organic fertilizers and water management to reduce N2O emissions in Mediterranean climate cropping systems. A review, Agric. Ecosyst. Environ., 164, 32, 10.1016/j.agee.2012.09.006
Aronsson, 2007, Leaching and crop uptake of N, P and K from organic and conventional cropping systems on a clay soil, Soil Use Manage., 23, 71, 10.1111/j.1475-2743.2006.00067.x
Bao, 2000
Bateman, 2005, Contributions of nitrification and denitrification to N2O emissions from soils at different water-filled pores space, Biol Fert Soils, 41, 379, 10.1007/s00374-005-0858-3
Benoit, 2015, Nitrous oxide emissions and nitrate leaching in an organic and a conventional cropping system (Seine basin, France), Agric. Ecosyst. Environ., 213, 131, 10.1016/j.agee.2015.07.030
Bhowmik, 2016, Use of biological indicators of soil health to estimate reactive nitrogen dynamics in long-term organic vegetable and pasture systems, Soil Biol. Biochem., 103, 308, 10.1016/j.soilbio.2016.09.004
Campiglia, 2011, Legume cover crops and mulches: effects on nitrate leaching and nitrogen input in a pepper crop (Capsicum annuum L.), Nutr. Cycl. Agroecosyst., 89, 399, 10.1007/s10705-010-9404-2
Denison, 2004, Crop yield over the first nine years of LTRAS, a long-term comparison of field crop systems in a Mediterranean climate, Field Crop Res., 86, 267, 10.1016/j.fcr.2003.08.014
Dobbie, 2003, Nitrous oxide emission factors for agricultural soils in Great Britain: the impact of soil water-filled pore space and other controlling variables, Glob. Change Biol., 9, 204, 10.1046/j.1365-2486.2003.00563.x
Fu, 2009, Effects of combined application of organic and inorganic fertilizers on the yield and soil fertility of water spinach, Anhui Agric Sci Bull., 15, 65
Gao, 2012, Soil nutrient content and nutrient balances in newly-built solar greenhouses in northern China, Nutr. Cycl. Agroecosyst., 94, 63, 10.1007/s10705-012-9526-9
GB5749-2006 Standards for Drinking Water Quality of China.
Guo, 2014, Comparative study of nitrogen budget in three different vegetable planting patterns under greenhouse condition, Chin. J. Eco Agric., 22, 10, 10.3724/SP.J.1011.2014.30467
Han, 2017, Effects of long-term use of compost on N2O and CO2 fluxes in greenhouse vegetable systems, Compost Sci. Util., 25, S61, 10.1080/1065657X.2016.1238786
He, 2007, Yield and nitrogen balance of greenhouse tomato (Lycopersicum esculentum, Mill.) with conventional and site-specific nitrogen management in northern China, Nutr. Cycl. Agroecosyst., 77, 1, 10.1007/s10705-006-6275-7
HongYeng, 2015, Nitrogen flow in organic and conventional vegetable farming systems: a case study of Malaysia, Nutr. Cycl. Agroecosyst., 103, 131, 10.1007/s10705-015-9728-z
Huang, 2007, Nutrient balance and its environmental risks in typical greenhouse system, J. Agro Environ. Sci., 26, 676
Jia, 2012, Effects of biochar application on vegetable production and emissions of N2O and CH4, Soil Sci. Plant Nutr., 58, 503, 10.1080/00380768.2012.686436
Jiang, 2015, Effect of conventional and organic farming on soil quality in regions of Northern China, Soil, 47, 805
Ju, 2006, Nitrogen balance and groundwater nitrate contamination: comparison among three intensive cropping systems on the North China Plain, Environ. Pollut., 143, 117, 10.1016/j.envpol.2005.11.005
Kronvang, 2005, Nutrient pressures and ecological responses to nutrient loading reductions in Danish streams, lakes and coastal waters, J. Hydrol., 304, 274, 10.1016/j.jhydrol.2004.07.035
Lesschen, 2007, A spatially explicit methodology to quantify soil nutrient balances and their uncertainties at the national level, Nutr. Cycl. Agroecosyst., 78, 111, 10.1007/s10705-006-9078-y
Lesur-Dumoulin, 2017, Lower average yields but similar yield variability in organic versus conventional horticulture. A meta-analysis, Agron Sustain Dev., 37, 45, 10.1007/s13593-017-0455-5
Li, 2010, Effects of long-term chemical fertilization and organic amendments on dynamics of soil organic C and total N in paddy soil derived from barren land in subtropical China, Soil Till. Res., 106, 268, 10.1016/j.still.2009.12.008
Liang, 2015, The impact of exogenous N supply on soluble organic nitrogen dynamics and nitrogen balance in a greenhouse vegetable system, J. Environ. Manage., 154, 351, 10.1016/j.jenvman.2015.02.045
Liu, 2010, Nitrous oxide and nitric oxide emissions from an irrigated cotton field in Northern China, Plant Soil, 332, 123, 10.1007/s11104-009-0278-5
Lv, 2015, Effects of rotational tillage on soil organic matter and soil total nitrogen contents of continuous cropping wheat field in Weibei highland, Sci. Agric. Sin., 48, 3186
Lynch, 2012, Environmental impact of organic agriculture in temperate regions, Cab Rev., 7, 1, 10.1079/PAVSNNR20127010
Mäder, 2002, Soil fertility and biodiversity in organic farming, Science, 296, 1694, 10.1126/science.1071148
Martini, 2004, Yield increases during the organic transition: improving soil quality or increasing experience?, Field Crop Res., 86, 255, 10.1016/j.fcr.2003.09.002
Melero, 2006, Chemical and biochemical properties in a silty loam soil under conventional and organic management, Soil Till Res., 90, 162, 10.1016/j.still.2005.08.016
Min, 2011, Nitrogen balance and loss in a greenhouse vegetable system in southeastern China, Pedosphere, 21, 464, 10.1016/S1002-0160(11)60148-3
Oenema, 2003, Approaches and uncertainties in nutrient budgets: implications for nutrient management and environmental policies, Eur. J. Agron., 20, 3, 10.1016/S1161-0301(03)00067-4
Rigby, 2001, Organic farming and the sustainability of agricultural systems, Agric. Syst., 68, 21, 10.1016/S0308-521X(00)00060-3
Sánchez-Martín, 2010, Combination of drip irrigation and organic fertilizer for mitigating emissions of nitrogen oxides in semiarid climate, Agric. Ecosyst. Environ., 137, 99, 10.1016/j.agee.2010.01.006
Scheer, 2008, Nitrous oxide emissions from fertilized irrigated cotton (Gossypium hirsutum L.) in the Aral Sea Basin, Uzbekistan: influence of nitrogen applications and irrigation practices, Soil Biol. Biochem., 40, 290, 10.1016/j.soilbio.2007.08.007
Schrumpf, 2014, Soil organic carbon and total nitrogen gains in an old growth deciduous forest in Germany, PLoS One, 9, 10.1371/journal.pone.0089364
Seufert, 2012, Comparing the yields of organic and conventional agriculture, Nature, 485, 229, 10.1038/nature11069
Skinner, 2014, Greenhouse gas fluxes from agricultural soils under organic and non-organic management—a global meta-analysis, Sci. Total Environ., 468, 553, 10.1016/j.scitotenv.2013.08.098
Song, 2009, Study of nitrate leaching and nitrogen fate under intensive vegetable production pattern in northern China, C. R. Biologies, 332, 385, 10.1016/j.crvi.2008.11.005
Steenwerth, 2010, Vineyard weed management practices influence nitrate leaching and nitrous oxide emissions, Agric. Ecosyst. Environ., 138, 127, 10.1016/j.agee.2010.03.016
Stockdale, 2002, Soil fertility in organic farming systems-fundamentally different?, Soil Use Manage., 18, 301, 10.1079/SUM2002143
Teng, 2017
Thorup-Kristensen, 2012, Crop yield, root growth, and nutrient dynamics in a conventional and three organic cropping systems with different levels of external inputs and N re-cycling through fertility building crops, Eur J Agron., 37, 66, 10.1016/j.eja.2011.11.004
Van Drecht, 2003, Global modeling of the fate of nitrogen from point and nonpoint sources in soils, groundwater, and surface water, Global Biogeochem. Biogeochem. Cy., 17, 1115
Wang, 2008, Major nutrient balances in small-scale vegetable farming systems in peri-urban areas in China, Nutr. Cycl. Agroecosyst., 81, 203, 10.1007/s10705-007-9157-8
Wang, 2009, Changes in soil humic acids, microbial biomass carbon and invertase activity in response to fertilization regimes in a long-term field experiment, J. Plant Nutr. Fertil., 15, 352
Wang, 2012, Effects of organic manure application on dry land soil organic matter and water stable aggregates, Chin. J. Appl. Ecol., 23, 159
Wang, 2016, Decreasing input–output balance by reducing chemical fertilizer input without yield loss in intensive cropping system in the Coastal Area of southeast Lake Dianchi, Yunnan Province, China, Plant Prod. Sci., 19, 81, 10.1080/1343943X.2015.1128089
Wang, 2003, An investigation on the relationship between emission/uptake of greenhouse gases and environmental factors in serniarid grassland, Adv. Atmos. Sci., 20, 119, 10.1007/BF03342056
Wang, 2002, Field in situ determination of ammonia volatilization from soil: Venting method, J. Plant Nutr. Fertil., 8, 205
Wei, 2002
Well, 2006, Isotopomer signatures of soil-emitted N2O under different moisture conditions-A microcosm study with arable loess soil, Soil Biol Biochem., 38, 2923, 10.1016/j.soilbio.2006.05.003
Yang, 2007, Fertilization effects on soil fertility and crop yield under different cultivation patterns in protected fields, J Henan Agri Sci., 12, 61
Yu, 2010, Nutrient budget and soil nutrient status in greenhouse system, Agric. Sci. China, 43, 514
Zeng, 2013, Effects of biochar on soil moisture, organic carbon and available nutrient contents in manural loessial soils, J. Agro-Environ. Sci., 32, 1009
Zhang, 2016, A bibliometric analysis of status and trend of international research on field nitrogen application effects on nitrogen losses and water quality, Acta Ecol. Sin., 36, 6664
Zhao, 2010, A lysimeter study of nitrate leaching and optimum nitrogen application rates for intensively irrigated vegetable production systems in Central China, J. Soil Sediment., 10, 9, 10.1007/s11368-009-0063-3
Zhao, 2011, Effects of organic manure application on stability of soil aggregates, Soils, 43, 306
Zhou, 2010, Nitrate accumulation in soil profiles under seasonally open’ sunlight greenhouses’ in northwest China and potential for leaching loss during summer fallow, Soil Use Manage., 26, 332, 10.1111/j.1475-2743.2010.00284.x
Zhu, 2011, The contribution of nitrogen transformation processes to total N2O emissions from soils used for intensive vegetable cultivation, Plant Soil, 343, 313, 10.1007/s11104-011-0720-3
National Bureau of Statistics of China, 2017
IFOAM, 2017
