CGSpaceA Repository of Agricultural Research Outputs
    View Item 
    •   CGSpace Home
    • CGIAR Research Programs and Platforms (2012-2021)
    • CGIAR Research Program on Climate Change, Agriculture and Food Security (CCAFS)
    • CCAFS Journal Articles
    • View Item
       
    • CGSpace Home
    • CGIAR Research Programs and Platforms (2012-2021)
    • CGIAR Research Program on Climate Change, Agriculture and Food Security (CCAFS)
    • CCAFS Journal Articles
    • View Item
    JavaScript is disabled for your browser. Some features of this site may not work without it.

    Water budgeting in conservation agriculture-based sub-surface drip irrigation in tropical maize using HYDRUS-2D in South Asia

    Thumbnail
    Authors
    Patra, Kiranmoy
    Parihar, Chiter Mal
    Nayak, Hari Sankar
    Rana, Biswajit
    Singh, Vinod K
    Jat, Shankar Lal
    Panwar, Sanjeev
    Prihar, Muli D
    Singh, Love Kumar
    Sidhu, Harminder S.
    Gerard, Bruno
    Jat, Mangi Lal
    Date Issued
    2021-08
    Language
    en
    Type
    Journal Article
    Review status
    Peer Review
    ISI journal
    Accessibility
    Open Access
    Usage rights
    CC-BY-4.0
    Metadata
    Show full item record
    Share
    
    Citation
    Patra K, Parihar CM, Nayak HS, Rana B, Singh VK, Jat SL, Panwar S, Prihar MD, Singh LK, Sidhu HS, Gerard B, Jat ML. 2021. Water budgeting in conservation agriculture-based sub-surface drip irrigation in tropical maize using HYDRUS-2D in South Asia. Scientific Reports 11:16770.
    Permanent link to cite or share this item: https://hdl.handle.net/10568/116306
    DOI: https://doi.org/10.1038/s41598-021-93866-6
    Abstract/Description
    In water scarce regions of South Asia, diversification of rice with maize is being advocated towards sustainability of cereal-based cropping systems. Adoption of innovative agronomic management practices, i.e., conservation agriculture (CA) and sub-surface drip irrigation (SSDI) are considered as key strategies for much needed interventions to address the challenges of water scarcity under projected climate change. Benefits from CA and SSDI concerning water economy are well-established, however, information about their complementarity and water budgeting in cereal-based systems are lacking. A field study was conducted with process-based model (HYDRUS-2D) to understand water transport, root water uptake and components of soil water balance in maize grown in rotation with wheat after five years of continuous adoption of conservation agriculture. In this study, altogether eight treatments comprising of 6 CA+ treatments (CA coupled with SSDI); permanent beds using sub-surface drip (PB-SSD) with (WR) and without (WOR) crop residue at different N rates, 0, 120 and 150 kg N ha−1 were compared with CA (PB using furrow irrigation-FI with crop residue-120 kg N ha−1) and conventional tillage practices (CT) (CT using FI without crop residue-120 kg N ha−1). Results showed that the model could simulate the daily changes in profile soil water content with reasonable accuracy in all the treatments. Simulated soil water balance indicated higher cumulative root water uptake (CRWU), lower cumulative evaporation (CE) and higher soil water retention in CA+ (PB-SSD+ crop residue at 150 and 120 kg N ha−1) than CA and CT plots. Hydrus-2D model efficiency > 0, RMSE between 0.009–0.026 and R2 value between 0.80–0.92 at P < 0.01 indicates that the model is performing efficiently. The mean evaporation from CA+ treatments was 10 and 36% less than CA and CT treatments, respectively. On average, CRWU under CA+ treatments were 14–48% higher than FI treatments. The mean cumulative deep drainage in CA+ plots was 80–100 mm less than CA and CT plots. In CA+ based plots significantly higher biomass production and radiation use efficiency were observed with reduced water use than CA and CT. Therefore, the study justifies the water-saving nature of CA+, while maintaining higher productivity and meeting the transpiration demand of crops and halting unnecessary evaporation and deep drainage losses.
    CGIAR Author ORCID iDs
    ML JAThttps://orcid.org/0000-0003-0582-1126
    C.M. PARIHARhttps://orcid.org/0000-0003-3855-2655
    Bruno Gerardhttps://orcid.org/0000-0002-1079-7493
    Other CGIAR Affiliations
    Climate Change, Agriculture and Food Security
    AGROVOC Keywords
    climate change; agriculture; food security; conservation agriculture
    Subjects
    PRIORITIES AND POLICIES FOR CSA; CLIMATE-SMART TECHNOLOGIES AND PRACTICES;
    Regions
    Asia; Southern Asia
    Organizations Affiliated to the Authors
    Choudhary Charan Singh Haryana Agricultural University; Indian Council of Agricultural Research; Borlaug Institute for South Asia; International Maize and Wheat Improvement Center
    Collections
    • CCAFS Journal Articles [1251]

    Show Statistical Information


    AboutPrivacy StatementSend Feedback
     

    My Account

    LoginRegister

    Browse

    All of CGSpaceCommunities & CollectionsBy Issue DateAuthorsTitlesBy AGROVOC keywordBy ILRI subjectBy RegionBy CountryBy SubregionBy River basinBy Output typeBy CIP subjectBy CGIAR System subjectBy Alliance Bioversity–CIAT subjectThis CollectionBy Issue DateAuthorsTitlesBy AGROVOC keywordBy ILRI subjectBy RegionBy CountryBy SubregionBy River basinBy Output typeBy CIP subjectBy CGIAR System subjectBy Alliance Bioversity–CIAT subject

    Statistics

    Most Popular ItemsStatistics by CountryMost Popular Authors

    AboutPrivacy StatementSend Feedback