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Maintaining higher grain production with less reactive nitrogen losses in China: A meta-analysis study
Faculty
Agriculture
Year:
2022
Type of Publication:
ZU Hosted
Pages:
Authors:
Elsayed Elsayed Ahmed Mohmed Elsobky
Staff Zu Site
Abstract In Staff Site
Journal:
Journal of Environmental Management Elsevier
Volume:
Keywords :
Maintaining higher grain production with less
Abstract:
Managing reactive nitrogen (Nr) in agricultural production is crucial for addressing the triple challenges of food security, climate change and environmental degradation. Intensive work has been conducted to investigate the effects of mitigation strategies on reducing Nr losses by ammonia emission (Nr-NH3), nitrous oxide emission (Nr- N2O) and nitrate leaching (Nr-NO3 - ) separately. This meta-analysis evaluated theefficiency of each strategy in mitigating Nr losses coupled with grain yield responses. The results indicate that producing one Megagram (Mg) of wheat grains caused higher Nr losses, twice that of rice and 17% that of maize. The Nr-NH3 and Nr-NO3- were the dominant sources of Nr losses of the three crops (96%), while Nr-NH3 only presented 86% of the total Nr losses for rice. Reducing the N rate strategy decreased the yield by 33% and the Nr losses by 62% compared with the conventional rate (150–250 kg N ha 1) as an average of the three crops. In contrast, increasing the N rate higher than 250 kg N ha 1 amplified the yield by 15% but also caused a 71% increase in Nr losses compared with the conventional rate. Although subsurface application decreased Nr losses by 5%, this study rejected this approach as an effective strategy due to a 4% yield decline on average of the grain crops. Slow-release fertilizers decreased Nr-NH3 and Nr-N2O losses by 41–58% and 54–89%, respectively, of the highest losses under urea in the three crops, but also led to yield reductions. Organic amendments achieved the highest drop in Nr-NO3- loss by 66% in maize coupled with yield declines. Biochar increased wheat and maize yields by 0.3 and 0.1 Mg, respectively, coupled with 1 kg reduction in Nr losses. On average, inhibitors augmented the grain yields by 0.2 Mg ha 1 for each 1 kg decline in Nr losses. In conclusion, for sustainable agricultural intensification, biochar (for wheat only) and inhibitors (for the three crops) are strongly recommended as mitigation strategies for Nr losses from grain crop production systems in China.
Author Related Publications
Elsayed Elsayed Ahmed Mohmed Elsobky, "Influence of preceding crop and tillage system on forage yield and quality of selected summer grass and legume forage crops under arid conditions", Influence of preceding crop and tillage system on forage yield and quality of selected summer grass and legume forage crops under arid conditions, 2022
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Elsayed Elsayed Ahmed Mohmed Elsobky, "Enhancement of drought tolerance in diverse Vicia faba cultivars by inoculation with plant growth-promoting rhizobacteria under newly reclaimed soil conditions", Nature, 2021
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Elsayed Elsayed Ahmed Mohmed Elsobky, "Agronomic Efficiency Losses by Ammonia Emission from Staple Crops in China as Response to Various Mitigation Strategies: A Meta-Analysis Study", Multidisciplinary Digital Publishing Institute, 2021
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Elsayed Elsayed Ahmed Mohmed Elsobky, "Sowing Date and Genotype Influence on Yield and Quality of Dual-Purpose Barley in a Salt-Affected Arid Region", MDPI, 2021
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Elsayed Elsayed Ahmed Mohmed Elsobky, "EFFECT OF RICE STRAW BURNING OR INCORPORATION, ORGANIC MANURING AND NITROGEN LEVEL ON WHEAT YIELD AND SOME NITROGEN FERTILIZATION EFFICIENCY ATTRIBUTES", كلية الزراعة - جامعة الزقازيق, 2010
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Department Related Publications
Abdallah Mohamed Ali Ibrahiem Elsantawy, "Impact of humic acid and nitrogen fertilization treatments on productivity and grain quality of some barley varieties", Faculty Environ. Agric. Sciences., Arish University., 2022
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Elsayed Elsayed Ahmed Mohmed Elsobky, "Influence of preceding crop and tillage system on forage yield and quality of selected summer grass and legume forage crops under arid conditions", Influence of preceding crop and tillage system on forage yield and quality of selected summer grass and legume forage crops under arid conditions, 2022
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