Tillage, crop residue, and nutrient management effects on soil organic carbon in rice-based cropping systems: A review
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[1] A. Arneth,et al. Summary for Policymakers , 2022, The Ocean and Cryosphere in a Changing Climate.
[2] A. Hossain,et al. Productivity and soil fertility of the rice–wheat system in the High Ganges River Floodplain of Bangladesh is influenced by the inclusion of legumes and manure , 2016 .
[3] Klaus Butterbach-Bahl,et al. Greenhouse gas emissions and global warming potential of traditional and diversified tropical rice rotation systems , 2016, Global change biology.
[4] U. Singh,et al. Impacts of urea deep placement on nitrous oxide and nitric oxide emissions from rice fields in Bangladesh , 2015 .
[5] S. Machado,et al. Long‐Term Crop Residue and Nitrogen Management Effects on Soil Profile Carbon and Nitrogen in Wheat–Fallow Systems , 2015 .
[6] Weiqi Wang,et al. Effects of rice straw incorporation on active soil organic carbon pools in a subtropical paddy field , 2015 .
[7] R. Singh,et al. Erratum to “Next Generation Sequencing: Potential and Application in Drug Discovery” , 2014, The Scientific World Journal.
[8] J. S. Bohra,et al. Recalcitrant and labile carbon pools in a sub-humid tropical soil under different tillage combinations: A case study of rice-wheat system , 2014 .
[9] G. Heuvelink,et al. SoilGrids1km — Global Soil Information Based on Automated Mapping , 2014, PloS one.
[10] Alfred E. Hartemink,et al. Digital Mapping of Soil Organic Carbon Contents and Stocks in Denmark , 2014, PloS one.
[11] M. Islam,et al. Effect of Tillage Practices on Soil Properties and Crop Productivity in Wheat-Mungbean-Rice Cropping System under Subtropical Climatic Conditions , 2014, TheScientificWorldJournal.
[12] B. Paudel,et al. Adapting Agriculture to Climate Change and Variability in Chitwan: Long-Term Trends and Farmers’ Perceptions , 2014, Agricultural Research.
[13] S. Neogi,et al. Tropical low land rice ecosystem is a net carbon sink , 2014 .
[14] F. DeClerck,et al. Conservation agriculture and ecosystem services: An overview , 2014 .
[15] Ismaili Samira,et al. Soil Fertility Mapping: Comparison of Three Spatial Interpolation Techniques , 2014 .
[16] A. McDonald,et al. Soil Organic Carbon Sequestration in Rice-Wheat System under Conservation and Conventional Agriculture in Western Chitwan, Nepal , 2014 .
[17] E. Pendall,et al. Alfalfa-grass biomass, soil organic carbon, and total nitrogen under different management approaches in an irrigated agroecosystem , 2013, Plant and Soil.
[18] Nelson B. Villoria,et al. Green Revolution research saved an estimated 18 to 27 million hectares from being brought into agricultural production , 2013, Proceedings of the National Academy of Sciences.
[19] S. Chourasia,et al. Microbial Consortium for Sustainable Rice Production , 2013 .
[20] Tapan K. Adhya,et al. Effects of rice straw and nitrogen fertilization on greenhouse gas emissions and carbon storage in tropical flooded soil planted with rice , 2012 .
[21] K. Adhikari,et al. Soil organic carbon sequestration as affected by tillage, crop residue, and nitrogen application in rice–wheat rotation system , 2012, Paddy and Water Environment.
[22] D. Benbi,et al. Management of organic amendments in rice-wheat cropping system determines the pool where carbon is sequestered , 2012, Plant and Soil.
[23] R. Bhattacharyya,et al. Conservation Tillage and Fertilization Impact on Soil Aggregation and Carbon Pools in the Indian Himalayas Under an Irrigated Rice-Wheat Rotation , 2012 .
[24] M. Wopereis,et al. Crops that feed the world 7: Rice , 2012, Food Security.
[25] J. Ladha,et al. Role of nitrogen fertilization in sustaining organic matter in cultivated soils. , 2011, Journal of environmental quality.
[26] N. Fageria,et al. Chemistry of Lowland Rice Soils and Nutrient Availability , 2011 .
[27] Hongwen Li,et al. Soil properties and crop yields after 11 years of no tillage farming in wheat–maize cropping system in North China Plain , 2011 .
[28] R. Ghimire,et al. ASSESSMENT OF SOIL FERTILITY MANAGEMENT PRACTICES AND THEIR CONSTRAINTS IN DIFFERENT GEOGRAPHIC LOCATIONS OF NEPAL , 2010 .
[29] Christoph Menke,et al. Rice straw as a renewable energy source in India, Thailand, and the Philippines: Overall potential and limitations for energy contribution and greenhouse gas mitigation , 2009 .
[30] M. Hossain. Nutrient and Residue Management for Improving Productivity and N Use Efficiency of Rice-Wheat-Mungbean Systems in Bangladesh , 2009 .
[31] M. Kalita,et al. Evaluation of rice–legume–rice cropping system on grain yield, nutrient uptake, nitrogen fixation, and chemical, physical, and biological properties of soil , 2009, Biology and Fertility of Soils.
[32] Yaping Shao,et al. Effects of soil moisture and dried raindroplet crust on saltation and dust emission , 2008 .
[33] Song Yang,et al. Regional summer precipitation events in Asia and their changes in the past decades , 2008 .
[34] V. Laxmi,et al. Zero tillage impacts in India's rice–wheat systems: A review , 2008 .
[35] A. Kundu,et al. Organic Amendments Influence Soil Organic Carbon Pools and Rice–Wheat Productivity , 2008 .
[36] R. Buresh,et al. Soil Carbon and Nitrogen Changes in Long‐Term Continuous Lowland Rice Cropping , 2008 .
[37] R. Prasad,et al. Effect of crop-residue management on the production and agronomic nitrogen efficiency in a rice-wheat cropping system , 2008 .
[38] Yadvinder-Singh,et al. Nitrogen Supply in Rice‐Based Cropping Systems as Affected by Crop Residue Management , 2008 .
[39] K. Sayre,et al. The role of conservation agriculture in sustainable agriculture , 2008, Philosophical Transactions of the Royal Society B: Biological Sciences.
[40] Valentina Krysanova,et al. Parameter and input data uncertainty estimation for the assessment of long-term soil organic carbon dynamics , 2008, Environ. Model. Softw..
[41] Rattan Lal,et al. SOIL CARBON SEQUESTRATION TO MITIGATE CLIMATE CHANGE AND ADVANCE FOOD SECURITY , 2007 .
[42] S. Kukal,et al. Soil physical fertility and crop performance as affected by long term application of FYM and inorganic fertilizers in rice–wheat system , 2007 .
[43] H. S. Sidhu,et al. The Happy Seeder enables direct drilling of wheat into rice stubble , 2007 .
[44] J. Ladha,et al. Organic Amendments Affect Soil Parameters in Two Long-Term Rice-Wheat Experiments , 2007 .
[45] B. Mishra,et al. Long-term effect of fertilizer and manure application on soil organic carbon storage, soil quality and yield sustainability under sub-humid and semi-arid tropical india , 2005 .
[46] Pete Smith,et al. Similar response of labile and resistant soil organic matter pools to changes in temperature , 2005, Nature.
[47] K. Yagi,et al. Rice root-derived carbon input and its effect on decomposition of old soil carbon pool under elevated CO2 , 2004 .
[48] Ayşe Eren Pütün,et al. Rice straw as a bio-oil source via pyrolysis and steam pyrolysis. , 2004 .
[49] M. Kimura,et al. Carbon cycling in rice field ecosystems in the context of input, decomposition and translocation of organic materials and the fates of their end products (CO2 and CH4) , 2004 .
[50] R. Lal. Soil Carbon Sequestration Impacts on Global Climate Change and Food Security , 2004, Science.
[51] Keith Paustian,et al. Uncertainty in estimating land use and management impacts on soil organic carbon storage for US agricultural lands between 1982 and 1997 , 2003 .
[52] M. Kimura,et al. Carbon dynamics of rhizodeposits, root- and shoot-residues in a rice soil , 2003 .
[53] E. Gregorich,et al. Influence of agricultural management on soil organic carbon: A compendium and assessment of Canadian studies , 2003 .
[54] D. Herridge,et al. Crop residue and fertiliser N effects on nitrogen fixation and yields of legume-cereal rotations and soil organic fertility. , 2003 .
[55] M. Ghimiray,et al. EFFECTS OF FARMYARD MANURE, FERTILIZERS AND GREEN MANURING IN RICE-WHEAT SYSTEMS IN BHUTAN: RESULTS FROM A LONG-TERM EXPERIMENT , 2003, Experimental Agriculture.
[56] Raj Kumar Gupta,et al. How extensive are yield declines in long-term rice-wheat experiments in Asia? , 2003 .
[57] W. Post,et al. Soil organic carbon sequestration rates by tillage and crop rotation : A global data analysis , 2002 .
[58] S. Ogle,et al. Soil organic matter, biota and aggregation in temperate and tropical soils - Effects of no-tillage , 2002 .
[59] J. Six,et al. Aggregate‐Protected Carbon in No‐tillage and Conventional Tillage Agroecosystems Using Carbon‐14 Labeled Plant Residue , 2002 .
[60] J. Ladha,et al. Carbon management for sustainability of an intensively managed rice-based cropping system , 2002, Biology and Fertility of Soils.
[61] A. L. Black,et al. Tillage, Nitrogen, and Cropping System Effects on Soil Carbon Sequestration , 2002 .
[62] P. R. Hobbs,et al. Yield and Soil Fertility Trends in a 20‐Year Rice–Rice–Wheat Experiment in Nepal , 2002 .
[63] C. Feller,et al. Management of soil organic matter in semiarid Africa for annual cropping systems , 2001, Nutrient Cycling in Agroecosystems.
[64] N. H. Rao,et al. Critical aspects of organic matter management in the Tropics: the example of India , 2001, Nutrient Cycling in Agroecosystems.
[65] U. Singh,et al. Cultivar, nitrogen, and water effects on productivity, and nitrogen-use efficiency and balance for rice–wheat sequences of Bangladesh , 2001 .
[66] P. Sharma,et al. Physical characterization of a soil amended with organic residues in a rice–wheat cropping system using a single value soil physical index , 2001 .
[67] J. Ladha,et al. Long-term changes in yield and soil fertility in a twenty-year rice-wheat experiment in Nepal , 2001, Biology and Fertility of Soils.
[68] K. Bronson,et al. Managing Crop Residue with Green Manure, Urea, and Tillage in a Rice-Wheat Rotation , 2001 .
[69] J. Duxbury. Long-Term Yield Trends in the Rice-Wheat Cropping System , 2001 .
[70] B. S. Dwivedi,et al. Yield trends, and changes in soil organic-C and available NPK in a long-term rice–wheat system under integrated use of manures and fertilisers , 2000 .
[71] A. Dobermann,et al. How widespread are yield declines in long-term rice experiments in Asia? , 2000 .
[72] K. Cassman. Ecological intensification of cereal production systems: yield potential, soil quality, and precision agriculture. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[73] J. Parr,et al. Rice and wheat production in Pakistan with Effective Microorganisms , 1999 .
[74] K. Bronson,et al. Automated Chamber Measurements of Methane and Nitrous Oxide Flux in a Flooded Rice Soil: I. Residue, Nitrogen, and Water Management , 1997 .
[75] K. Cassman,et al. Long-term Comparison of the Agronomic Efficiency and Residual Benefits of Organic and Inorganic Nitrogen Sources for Tropical Lowland Rice , 1996, Experimental Agriculture.
[76] J. Anderson,et al. Changes in chemical properties of organic matter with intensified rice cropping in tropical lowland soil , 1996 .
[77] D. Schimel,et al. Terrestrial ecosystems and the carbon cycle , 1995 .
[78] Derek Byerlee,et al. Technical change, productivity and sustainability in irrigated cropping systems of South Asia: Emerging issues in the post-green revolution era , 1992 .
[79] D. Walters,et al. Effects of soil aeration, legume residue, and soil texture on transformations of macro- and micronutrients in soils. [Vicia villosa] , 1992 .
[80] David E. Kissel,et al. Crop rotation and tillage effects on soil organic carbon and nitrogen , 1990 .
[81] Satpal Singh,et al. Substitution of wheat straw by rice straw as composting material in the cultivation of white button mushroom. , 2013 .
[82] H. Rahman,et al. SUSTAINING RICE-WHEAT SYSTEM THROUGH MANAGEMENT OF LEGUMES II. EFFECT OF GREEN MANURE LEGUMES AND N FERTILIZER ON WHEAT YIELD , 2011 .
[83] P. Poulton,et al. Soil organic matter: its importance in sustainable agriculture and carbon dioxide fluxes. , 2009 .
[84] D. Benbi,et al. Soil organic carbon sequestration in relation to organic and inorganic fertilization in rice–wheat and maize–wheat systems , 2009 .
[85] T. Ochsner,et al. Tillage and soil carbon sequestration—What do we really know? , 2007 .
[86] B. Bouman,et al. Rice and Water , 2007 .
[87] S. Faulkner. Soils and sediment: Understanding wetland biogeochemistry , 2004 .
[88] M. R. Carter,et al. Soil Quality for Sustainable Land Management: Organic Matter and Aggregation Interactions that Maintain Soil Functions , 2002 .
[89] Jagdish K. Ladha,et al. Yield and Soil Nutrient Changes in a Long‐Term Rice‐Wheat Rotation in India , 2002 .
[90] P. Roger,et al. Production, oxidation, emission and consumption of methane by soils: A review , 2001 .
[91] Achim Dobermann,et al. The potential impact of crop intensification on carbon and nitrogen cycling in intensive rice systems. , 2000 .
[92] M. van Noordwijk,et al. Soil carbon dynamics in different cropping systems in principal ecoregions of Asia. , 1998 .
[93] R. Delaune,et al. Methane and nitrous oxide emissions from laboratory measurements of rice soil suspension: Effect of soil oxidation-reduction status , 1993 .