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Exploring the effect of fertilizer application on yield and decoding CO2 flux under flooded paddy conditions towards sustainable agriculture

Authors

  • Abirami R epartment of Soil Science and Agricultural Chemistry, V. O. Chidambaranar Agricultural College and Research Institute, Killikulam - 628252, Tamil Nadu, India https://orcid.org/0009-0001-4209-5568
  • Leninraja D Department of Soil Science and Agricultural Chemistry, V. O. Chidambaranar Agricultural College and Research Institute, Killikulam - 628252, Tamil Nadu, India https://orcid.org/0000-0002-0506-9301
  • Jothimani S Department of Soil Science and Agricultural Chemistry, V. O. Chidambaranar Agricultural College and Research Institute, Killikulam - 628252, Tamil Nadu, India https://orcid.org/0000-0002-6650-6341
  • Ramesh P T Department of Soil Science and Agricultural Chemistry, V. O. Chidambaranar Agricultural College and Research Institute, Killikulam - 628252, Tamil Nadu, India https://orcid.org/0000-0003-1157-650X
  • Bhuvaneswari J Department of Agronomy, V. O. Chidambaranar Agricultural College and Research Institute, Killikulam - 628252, Tamil Nadu, India https://orcid.org/0000-0002-6329-4734

DOI:

https://doi.org/10.14719/pst.5045

Keywords:

carbon dioxide, carbon emission, production, rice, sustainable agriculture

Abstract

The impact of organic and inorganic nutrient management on the emission of carbon dioxide (CO2), soil properties such as available nutrients, microbial population and soil organic carbon (SOC) were investigated in paddy (Oryza sativa L.) field (at 8o 46’ N Latitude and 77o 42?’ E Longitude) under flooded condition during late pishanam season in 2023-2024. The treatments were designed to observe the effects of applying fertilizer based on the soil test crop response (100 % STCR-based NPK) that had been modified by organic amendments, which include absolute control (unfertilized), inorganic fertilizers, sole application of organic amendments (Farm yard manure, Green leaf manure, Vermicompost and Poultry manure) and combined these organic amendments with inorganic fertilizers. The main objective of this study is to understand the intricate relationship between fertilizers and carbon flux in paddy soils, which is crucial for developing sustainable agricultural practices that minimize environmental harm while ensuring food security. The observation of the experimental field study reported that the combined application of poultry manure at the rate of 5 tonnes per hectare with 100% STCR-based inorganic fertilizer recorded maximum yield and yield attributes. The treatment combination of poultry manure + inorganic fertilizer enhanced in sequestrating the soil organic carbon (0.67%) resulted in higher grain yield (5972 kg ha-1) and also observed that this combination will limit the emission of CO2 to the atmosphere. Therefore, it could be a better choice for carbon storage and higher productivity in a sustainable rice cropping system.

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References

Djaman K, Mel V, Boye A, Diop L, Manneh B, et al. Rice genotype and fertilizer management for improving rice productivity under saline soil conditions. Paddy and Water Environment. 2020;18 (1):43-57. https://doi.org/10.1007/s10333-019-00763-w

Pourgholam-Amiji M, Liaghat A, Ghameshlou AN, Khoshravesh M. The evaluation of DRAINMOD-S and AquaCrop models for simulating the salt concentration in soil profiles in areas with a saline and shallow water table. Journal of Hydrology. 2021; 598. https://doi.org/10.1016/j.jhydrol.2021.126259

Raiesi F. Carbon and N mineralization as affected by soil cultivation and crop residue in a calcareous wetland ecosystem in Central Iran. Agriculture, ecosystems and environment. 2006;112(1):13-20. https://doi.org/10.1016/j.agee.2005.07.002

Saud S, Wang D, Fahad S, Alharby HF, Bamagoos AA, et al. Comprehensive impacts of climate change on rice production and adaptive strategies in China. Frontiers in Microbiology. 2022;13. https://doi.org/10.3389/fmicb.2022.926059

Janssen M, Lennartz B. Horizontal and vertical water and solute fluxes in paddy rice fields. Soil and Tillage Research. 2007;94(1):133-41. https://doi.org/10.1016/j.still.2006.07.010

IPCC, 2014: Climate Change 2014: Synthesis Report. Contribution of Working Groups I, II and III to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change [Core Writing Team, R.K. Pachauri and L.A. Meyer (eds.)]. IPCC, Geneva, Switzerland, 151 pp. https://www.ipcc.ch/report/ar5/wg3/

Zhang Z, Wang Y, Wang Z, Ashraf U, Mo Z, Tian H, et al. Precise delivery of nitrogen at tillering stage enhances grain yield and nitrogen use efficiency in double rice cropping systems of South China. Field Crops Research. 2022 Dec 1;289. https://doi.org/10.1016/j.fcr.2022.108736

Dijkstra FA, Prior SA, Runion GB, Torbert HA, Tian H, et al. Effects of elevated carbon dioxide and increased temperature on methane and nitrous oxide fluxes: evidence from field experiments. Frontiers in Ecology and the Environment. 2012;10(10):520-7.

Allen Jr LH, Albrecht SL, Colón-Guasp W, Covell SA, et al. Methane emissions of rice increased by elevated carbon dioxide and temperature. Journal of Environmental Quality. 2003;32(6):1978-91. https://doi.org/10.2134/jeq2003.1978

Ammal UB, Sankar R, Coumaravel K, Dey P. Fertilizer Prescriptions for Rice Based on STCR–IPNS. Int J Curr Microbiol App Sci. 2020; 9(10):2517-22. https://doi.org/10.20546/ijcmas.2020.910.302

Ouda BA, Mahadeen AY. Effect of fertilizers on growth, yield, yield components, quality and certain nutrient contents in broccoli (Brassica oleracea). International Journal of Agriculture and Biology. 2008;10(6):627-32.

Bouajila K, Sanaa M. Effects of organic amendments on soil physico-chemical and biological properties. J Mater Environ Sci. 2011;2(1):485-90.

Guntiñas ME, Leirós MC, Trasar-Cepeda C, Gil-Sotres F. Effects of moisture and temperature on net soil nitrogen mineralization: A laboratory study. European Journal of Soil Biology. 2012;48:73-80. https://doi.org/10.1016/j.ejsobi.2011.07.015

Bora K. Spatial patterns of fertilizer use and imbalances: Evidence from rice cultivation in India. Environmental Challenges. 2022;7. https://doi.org/10.1016/j.envc.2022.100452

Xu P, Jiang M, Khan I, Zhao J, Yang T, Tu J, Hu R. Available nitrogen and ammonia-oxidizing archaea in soil regulated N2O emissions regardless of rice planting under a double rice cropping-fallow system. Agriculture, Ecosystems and Environment. 2022;340. https://doi.org/10.1016/j.agee.2022.108166

Rao AS, Sanjay Srivastava S. Soil test based fertilizer use: a must for sustainable agriculture.

Fertiliser News. 2000; 45(2): 25-28.

Kamaleshwaran R, Elayaraja D. Influence of vermicompost and FYM on soil fertility, rice productivity and its nutrient uptake. International Journal of Agriculture and Environmental Research. 2021; 7(4):575-83. https://doi.org/10.51193/ijaer.2021.7402

Choudhary RC, Bairwa HL, Kumar U, Javed T, Asad M, Lal K, Mahawer LN, Sharma SK, Singh P, Hassan MM, Abo-Shosha AA. Influence of organic manures on soil nutrient content, microbial population, yield and quality parameters of pomegranate (Punica granatum L.) cv. Bhagwa. PloS one. 2022;17(4):e0266675.

Basavaraja PK, Saqeebulla HM, Gangamrutha GV, Prabhudeva DS, Dey P. Use of STCR targeted yield approach to increasing nutrient use efficiency in eggplant (Solanum melongena L.). Journal of Pharmacognosy and Phytochemistry. 2019;8(3):3870-3.

Rao KT, Rao AU, Ramu PS, Sekhar D, Rao NV. Effect of organic manures on performance of scented varieties of rice in high altitude areas of Andhra Pradesh. International Journal of Current Microbiology and Applied Sciences. 2013;2(11):339-46.

Wang G, Kong Y, Yang Y, Ma R, Shen Y, et al. Superphosphate, biochar, and a microbial inoculum regulate phytotoxicity and humification during chicken manure composting. Science of the Total Environment. 2022;824. https://doi.org/10.1016/j.scitotenv.2022.153958

Bora K. Spatial patterns of fertilizer use and imbalances: Evidence from rice cultivation in India. Environmental Challenges. 2022;7. https://doi.org/10.1016/j.envc.2022.100452

Sharma A, Mittal R, Bohat N, Malik K, Dahiya B. Sustainable agriculture and soil enrichment through diverse organic vermicompost synthesized from different organic waste. International Journal of Environmental Science and Technology. 2024:1-4. https://doi.org/10.1007/s13762-024-05774-7

Chari MS, Madhavi A, Srijaya T, Dey P. Validation of soil test and yield target based fertilizer prescription equations developed for groundnut in Alfisols. Int J Chem Stud. 2020; 8(6):1252-6. https://doi.org/10.22271/chemi.2020.v8.i6r.10934

Ramakrishna K, Prabhakar Reddy T, Rajashekhar M, Rajashekhar B, Shankar A, Jahan A. Field Validation of on STCR Based Fertilizer Recommendations in Paddy on Alfisols of Nagarkurnool District, Telangana State. Ind J Pure App Biosci. 2020;8(5):195-200.

http://dx.doi.org/10.18782/2582-2845.8026

Saha AR, Maitra DN, Majumdar B, Saha S, Mitra S. Effect of integrated nutrient management on roselle (Hibiscus sabdariffa) productivity, its mineral nutrition and soil properties. The Indian Journal of Agricultural Sciences. 2008;78(5). https://epubs.icar.org.in/index.php/IJAgS/article/view/9788

Bhattarai S, Bhatta S, Shriswastav CP, Subedi J. Effect of Organic Source of Nutrients on Soil Physico-Chemical Properties, Growth and Yield of Cabbage (Brassica oleracea var. capitata). Bhattarai et al. 2023:45-55.

Liu P, Zhang T, Wang G, Ju J, Mao W, Zhao H. Response of Rice Grain Yield and Soil Fertility to Fertilization Management under Three Rice-Based Cropping Systems in Reclaimed Soil. Agronomy. 2023;13(7):1840. https://doi.org/10.3390/agronomy13071840

Aakash Ravi, Jeberlin Prabina B, Gomathy M, Ramesh P. T, Hemalatha M. Plant probiotic microbes – trending microbes for plant growth and value addition of compost- a review. Plant Sci Today. 2024;11(3). https://doi.org/10.14719/pst.4523

Yuan X, Sheng X, Chen L, Tang Y, Li Y, Jia Y, Qu D, Wang Q, Ma Q, Zuo J. Carbon footprint and embodied carbon transfer at the provincial level of the Yellow River Basin. Science of the Total Environment. 2022;803. https://doi.org/10.1016/j.scitotenv.2021.149993

Kacprzak M, Mali?ska K, Grosser A, Sobik-Szo?tysek J, et al. Cycles of carbon, nitrogen and phosphorus in poultry manure management technologies–environmental aspects. Critical Reviews in Environmental Science and Technology. 2023;53(8):914-38. https://doi.org/10.1080/10643389.2022.2096983

Poblete-Grant P, Suazo-Hernández J, Condron L, et al, Mora MD. Soil available P, soil organic carbon and aggregation as affected by long-term poultry manure application to Andisols under pastures in Southern Chile. Geoderma Regional. 2020;21. https://doi.org/10.1016/j.geodrs.2020.e00271

Published

25-10-2024

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How to Cite

1.
Abirami R, Leninraja D, Jothimani S, Ramesh P T, Bhuvaneswari J. Exploring the effect of fertilizer application on yield and decoding CO2 flux under flooded paddy conditions towards sustainable agriculture. Plant Sci. Today [Internet]. 2024 Oct. 25 [cited 2024 Nov. 23];. Available from: https://horizonepublishing.com/journals/index.php/PST/article/view/5045

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Research Articles