Projecting maize yield under local‐scale climate change scenarios using crop models: Sensitivity to sowing dates, cultivar, and nitrogen fertilizer rates. (19th July 2020)
- Record Type:
- Journal Article
- Title:
- Projecting maize yield under local‐scale climate change scenarios using crop models: Sensitivity to sowing dates, cultivar, and nitrogen fertilizer rates. (19th July 2020)
- Main Title:
- Projecting maize yield under local‐scale climate change scenarios using crop models: Sensitivity to sowing dates, cultivar, and nitrogen fertilizer rates
- Authors:
- Chisanga, Charles B.
Phiri, Elijah
Chinene, Vernon R. N.
Chabala, Lydia M. - Abstract:
- Abstract: The APSIM‐Maize and CERES‐Maize models are widely used in impact studies to analyze the effect of climate change on future maize yield. The study objectives were to develop climate scenarios, assess crop model's sensitivity, and predict the impact of climate change on rainfed maize yield based on five global climate models under two RCP (RCP4.5 and RCP8.5) scenarios. The scenarios were based on the mid‐century and tested for sowing dates (SDs), maize cultivars, and nitrogen fertilizer rates (N). For field calibration and validation, the split‐split‐plot experimental design with three replicates was set up at Mount Makulu, Zambia. The treatments were SD, cultivar, and N‐rate were the main plot, subplot, and subsub plot, respectively. The APSIM‐Maize and CERES‐Maize models were used to run simulations using seasonal analysis. The impacts of climate change on maize yield were simulated for the future 2040–2069/1980–2010 using the AgMIP Protocols. The ensemble means from the simulation result in precipitation decrease and temperature increase. Days after planting to anthesis and maturity would reduce in 2050 (2040–2069). The % change in grain yield would range from 2.78% to 9.94%, −3.81% to −8.88%, and −2.33% to 10.63% under N1 (55.2 N kg/ha), N2 (110.4 N kg/ha), and N3 (165.6 N kg/ha) as affected by SDs, respectively. The simulation showed evidence of climate change and hence affect maize growth and yield. Therefore, there is a need to put in place strategies forAbstract: The APSIM‐Maize and CERES‐Maize models are widely used in impact studies to analyze the effect of climate change on future maize yield. The study objectives were to develop climate scenarios, assess crop model's sensitivity, and predict the impact of climate change on rainfed maize yield based on five global climate models under two RCP (RCP4.5 and RCP8.5) scenarios. The scenarios were based on the mid‐century and tested for sowing dates (SDs), maize cultivars, and nitrogen fertilizer rates (N). For field calibration and validation, the split‐split‐plot experimental design with three replicates was set up at Mount Makulu, Zambia. The treatments were SD, cultivar, and N‐rate were the main plot, subplot, and subsub plot, respectively. The APSIM‐Maize and CERES‐Maize models were used to run simulations using seasonal analysis. The impacts of climate change on maize yield were simulated for the future 2040–2069/1980–2010 using the AgMIP Protocols. The ensemble means from the simulation result in precipitation decrease and temperature increase. Days after planting to anthesis and maturity would reduce in 2050 (2040–2069). The % change in grain yield would range from 2.78% to 9.94%, −3.81% to −8.88%, and −2.33% to 10.63% under N1 (55.2 N kg/ha), N2 (110.4 N kg/ha), and N3 (165.6 N kg/ha) as affected by SDs, respectively. The simulation showed evidence of climate change and hence affect maize growth and yield. Therefore, there is a need to put in place strategies for alleviating the impact of climate change in maize production in Zambia. Abstract : APSIM‐Maize and CERES‐Maize model were used to simulate the impact of future climate scenarios (2040–2069) on maize yield relative to the baseline (1980–2010) using the AgMIP Protocols. The APSIM‐Maize and CERES‐Maize models simulated reduced DAP to anthesis and maturity relative to the baseline. The projected changes in temperature and rainfall would reduce/increase simulated maize yield depending on the sowing date in 2050. … (more)
- Is Part Of:
- Food and energy security. Volume 9:Number 4(2020)
- Journal:
- Food and energy security
- Issue:
- Volume 9:Number 4(2020)
- Issue Display:
- Volume 9, Issue 4 (2020)
- Year:
- 2020
- Volume:
- 9
- Issue:
- 4
- Issue Sort Value:
- 2020-0009-0004-0000
- Page Start:
- n/a
- Page End:
- n/a
- Publication Date:
- 2020-07-19
- Subjects:
- AgMIP Protocols -- APSIM‐Maize -- calibration -- CERES‐Maize -- CMIP5 -- crop models -- delta‐based method -- global climate models
Climatic changes -- Periodicals
Crop improvement -- Periodicals
Food security -- Periodicals
Energy security -- Periodicals
Biology -- Periodicals
333.9505 - Journal URLs:
- http://onlinelibrary.wiley.com/ ↗
http://onlinelibrary.wiley.com/journal/10.1002/(ISSN)2048-3694 ↗ - DOI:
- 10.1002/fes3.231 ↗
- Languages:
- English
- ISSNs:
- 2048-3694
- Deposit Type:
- Legaldeposit
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