Reducing greenhouse gas emissions and improving rice yield: The influence of cultivars, soil salinity, and nitrogen management
| dc.creator | Islam, S.M. Mofijul | |
| dc.creator | Gaihre, Yam Kanta | |
| dc.creator | Islam, Mohammad Nazrul | |
| dc.creator | Suvo, Tamal Patra | |
| dc.creator | Sander, Bjoern Ole | |
| dc.creator | Habib, Muhammad Ashraful | |
| dc.creator | Islam, Aminul | |
| dc.creator | Nayak, Swati | |
| dc.creator | Singh, Upendra | |
| dc.creator | Hasegawa, Toshihiro | |
| dc.creator | Islam, Md. Rafiqul | |
| dc.date | 2025-08-04 | |
| dc.date | 2026-01-12T01:01:19Z | |
| dc.date | 2026-01-12T01:01:19Z | |
| dc.date.accessioned | 2026-06-27T04:16:08Z | |
| dc.description | Greenhouse gas emissions from rice cultivation are a significant contributor to climate change. Therefore, it is essential to consider effective mitigation strategies. A multi-location field experiment was conducted in Bangladesh over two consecutive Boro (dry) and Aman (wet) seasons, examining four rice cultivars and two nitrogen rates in both non-saline soils of Gazipur and coastal saline soils of Satkhira. The results indicated that BRRI dhan67 reduced methane (CH4) emissions by 11–14 % at 139 kg N ha−1 and by 9–12 % at 174 kg N ha−1 compared to BRRI dhan50 and BRRI dhan92 in the Boro season. Similarly, BRRI hybrid dhan3 reduced emissions by 6–9 % at 139 kg N ha−1 and by 11–14 % at 174 kg N ha−1 relative to BRRI dhan50 and BRRI dhan92. In the Aman season, BRRI dhan75 and BRRI hybrid dhan6 reduced CH4 emissions by approximately 10–14 % and 7–11 %, respectively, compared to BRRI dhan87 and BRRI dhan90. The impact of rice cultivars on nitrous oxide (N2O) emissions was insignificant in both seasons. A 20 % reduction in nitrogen from the recommended rates resulted in a 6 % decrease in CH4 emissions and 17 % decrease in N2O emissions, with no significant yield loss. Across cultivars and nitrogen rates, coastal saline soils emitted about 10 % less CH4 (p < 0.05) than non-saline soils. However, non-saline soils in Gazipur yielded about 11 % more and had around 13 % higher total nitrogen uptake than coastal saline soils in Satkhira. This study highlights the potential of climate-smart rice cultivars and optimized nitrogen management in promoting sustainable, low-emission rice cultivation in both saline and non-saline environments. | |
| dc.identifier | https://hdl.handle.net/10568/179645 | |
| dc.identifier.uri | http://hdl.handle.net/123456789/27158 | |
| dc.language | en | |
| dc.publisher | Elsevier | |
| dc.rights | Limited Access | |
| dc.source | Islam, SM Mofijul, Yam Kanta Gaihre, Mohammad Nazrul Islam, Tamal Patra Suvo, Bjoern Ole Sander, Muhammad Ashraful Habib, Aminul Islam et al. "Reducing greenhouse gas emissions and improving rice yield: The influence of cultivars, soil salinity, and nitrogen management." Science of The Total Environment 997 (2025): 180192. | |
| dc.subject | methane emissions | |
| dc.subject | greenhouse gas emissions | |
| dc.subject | nitrous oxide | |
| dc.subject | nitrogen management | |
| dc.subject | varieties | |
| dc.subject | rice | |
| dc.subject | climate change mitigation | |
| dc.subject | climate-smart agriculture | |
| dc.subject | saline soils | |
| dc.title | Reducing greenhouse gas emissions and improving rice yield: The influence of cultivars, soil salinity, and nitrogen management | |
| dc.type | Journal Article |
