Asset Details
MbrlCatalogueTitleDetail
Do you wish to reserve the book?
Modeling maize growth and nitrogen dynamics using CERES-Maize (DSSAT) under diverse nitrogen management options in a conservation agriculture-based maize-wheat system
by
Reddy, K S
, Meena, A L
, Bharadwaj, S
, Parihar, C M
, Sena, D R
, Gathala, M K
, Jat, M L
, Kumar, Kamlesh
, Godara, S
, Jat, S L
, Das, T K
, Singh, Upendra
, Dhakar, R
, Sharma, D K
, Patra, K
, Nayak, H S
, Ghasal, P C
, Saharawat, Y S
, Sarkar, A
in
631/449
/ 704/172
/ Agricultural conservation
/ Agricultural land
/ Agricultural production
/ Agriculture
/ Agriculture - methods
/ Ammonia volatilization
/ Biomass
/ Cereal crops
/ CERES-Maize
/ Conservation
/ Corn
/ Crop yield
/ Crops
/ Crops, Agricultural - growth & development
/ Cultivars
/ DSSAT
/ Farm management
/ Fertilizers
/ Field tests
/ Growing season
/ Growth models
/ Humanities and Social Sciences
/ Leaf area
/ multidisciplinary
/ Nitrate leaching
/ Nitrogen
/ Nitrogen - metabolism
/ Plant growth
/ Predictions
/ Resource management
/ Science
/ Science (multidisciplinary)
/ Soil - chemistry
/ Soil conservation
/ Soil dynamics
/ Soil temperature
/ Tillage
/ Triticum - growth & development
/ Triticum - metabolism
/ Urea
/ Zea mays - growth & development
/ Zea mays - metabolism
/ Zero tillage
2024
Hey, we have placed the reservation for you!
By the way, why not check out events that you can attend while you pick your title.
You are currently in the queue to collect this book. You will be notified once it is your turn to collect the book.
Oops! Something went wrong.
Looks like we were not able to place the reservation. Kindly try again later.
Are you sure you want to remove the book from the shelf?
Modeling maize growth and nitrogen dynamics using CERES-Maize (DSSAT) under diverse nitrogen management options in a conservation agriculture-based maize-wheat system
by
Reddy, K S
, Meena, A L
, Bharadwaj, S
, Parihar, C M
, Sena, D R
, Gathala, M K
, Jat, M L
, Kumar, Kamlesh
, Godara, S
, Jat, S L
, Das, T K
, Singh, Upendra
, Dhakar, R
, Sharma, D K
, Patra, K
, Nayak, H S
, Ghasal, P C
, Saharawat, Y S
, Sarkar, A
in
631/449
/ 704/172
/ Agricultural conservation
/ Agricultural land
/ Agricultural production
/ Agriculture
/ Agriculture - methods
/ Ammonia volatilization
/ Biomass
/ Cereal crops
/ CERES-Maize
/ Conservation
/ Corn
/ Crop yield
/ Crops
/ Crops, Agricultural - growth & development
/ Cultivars
/ DSSAT
/ Farm management
/ Fertilizers
/ Field tests
/ Growing season
/ Growth models
/ Humanities and Social Sciences
/ Leaf area
/ multidisciplinary
/ Nitrate leaching
/ Nitrogen
/ Nitrogen - metabolism
/ Plant growth
/ Predictions
/ Resource management
/ Science
/ Science (multidisciplinary)
/ Soil - chemistry
/ Soil conservation
/ Soil dynamics
/ Soil temperature
/ Tillage
/ Triticum - growth & development
/ Triticum - metabolism
/ Urea
/ Zea mays - growth & development
/ Zea mays - metabolism
/ Zero tillage
2024
Oops! Something went wrong.
While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Modeling maize growth and nitrogen dynamics using CERES-Maize (DSSAT) under diverse nitrogen management options in a conservation agriculture-based maize-wheat system
by
Reddy, K S
, Meena, A L
, Bharadwaj, S
, Parihar, C M
, Sena, D R
, Gathala, M K
, Jat, M L
, Kumar, Kamlesh
, Godara, S
, Jat, S L
, Das, T K
, Singh, Upendra
, Dhakar, R
, Sharma, D K
, Patra, K
, Nayak, H S
, Ghasal, P C
, Saharawat, Y S
, Sarkar, A
in
631/449
/ 704/172
/ Agricultural conservation
/ Agricultural land
/ Agricultural production
/ Agriculture
/ Agriculture - methods
/ Ammonia volatilization
/ Biomass
/ Cereal crops
/ CERES-Maize
/ Conservation
/ Corn
/ Crop yield
/ Crops
/ Crops, Agricultural - growth & development
/ Cultivars
/ DSSAT
/ Farm management
/ Fertilizers
/ Field tests
/ Growing season
/ Growth models
/ Humanities and Social Sciences
/ Leaf area
/ multidisciplinary
/ Nitrate leaching
/ Nitrogen
/ Nitrogen - metabolism
/ Plant growth
/ Predictions
/ Resource management
/ Science
/ Science (multidisciplinary)
/ Soil - chemistry
/ Soil conservation
/ Soil dynamics
/ Soil temperature
/ Tillage
/ Triticum - growth & development
/ Triticum - metabolism
/ Urea
/ Zea mays - growth & development
/ Zea mays - metabolism
/ Zero tillage
2024
Please be aware that the book you have requested cannot be checked out. If you would like to checkout this book, you can reserve another copy
We have requested the book for you!
Your request is successful and it will be processed during the Library working hours. Please check the status of your request in My Requests.
Oops! Something went wrong.
Looks like we were not able to place your request. Kindly try again later.
Modeling maize growth and nitrogen dynamics using CERES-Maize (DSSAT) under diverse nitrogen management options in a conservation agriculture-based maize-wheat system
Journal Article
Modeling maize growth and nitrogen dynamics using CERES-Maize (DSSAT) under diverse nitrogen management options in a conservation agriculture-based maize-wheat system
2024
Request Book From Autostore
and Choose the Collection Method
Overview
Agricultural field experiments are costly and time-consuming, and often struggling to capture spatial and temporal variability. Mechanistic crop growth models offer a solution to understand intricate crop-soil-weather system, aiding farm-level management decisions throughout the growing season. The objective of this study was to calibrate and the Crop Environment Resource Synthesis CERES-Maize (DSSAT v 4.8) model to simulate crop growth, yield, and nitrogen dynamics in a long-term conservation agriculture (CA) based maize system. The model was also used to investigate the relationship between, temperature, nitrate and ammoniacal concentration in soil, and nitrogen uptake by the crop. Additionally, the study explored the impact of contrasting tillage practices and fertilizer nitrogen management options on maize yields. Using field data from 2019 and 2020, the DSSAT-CERES-Maize model was calibrated for plant growth stages, leaf area index-LAI, biomass, and yield. Data from 2021 were used to evaluate the model's performance. The treatments consisted of four nitrogen management options, viz., N0 (without nitrogen), N150 (150 kg N/ha through urea), GS (Green seeker-based urea application) and USG (urea super granules @150kg N/ha) in two contrasting tillage systems, i.e., CA-based zero tillage-ZT and conventional tillage-CT. The model accurately simulated maize cultivar’s anthesis and physiological maturity, with observed value falling within 5% of the model’s predictions range. LAI predictions by the model aligned well with measured values (RMSE 0.57 and nRMSE 10.33%), with a 14.6% prediction error at 60 days. The simulated grain yields generally matched with measured values (with prediction error ranging from 0 to 3%), except for plots without nitrogen application, where the model overestimated yields by 9–16%. The study also demonstrated the model's ability to accurately capture soil nitrate–N levels (RMSE 12.63 kg/ha and nRMSE 12.84%). The study concludes that the DSSAT-CERES-Maize model accurately assessed the impacts of tillage and nitrogen management practices on maize crop’s growth, yield, and soil nitrogen dynamics. By providing reliable simulations during the growing season, this modelling approach can facilitate better planning and more efficient resource management. Future research should focus on expanding the model's capabilities and improving its predictions further.
Publisher
Nature Publishing Group,Nature Publishing Group UK,Nature Portfolio
This website uses cookies to ensure you get the best experience on our website.