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Research paper | Open Access

Increasing double-peak nitrogen release from controlled-release blended fertilizer boosts uptake efficiency and yield in late japonica rice in Yangtze River Delta

Xin'ao TangaZiyu LiaZhengyang WuaYuhui WangaHao WuaFei YangaMaomao SunaBaoshou ZhaobBo LucZhengrong JiangaHaoyu QianaZhenghui LiuaYanfeng DingaGanghua Lia( )
Sanya Institute of Nanjing Agriculture University, Jiangsu Collaborative Innovation Center for Modern Crop Production, Key Laboratory of Crop Physiology Ecology and Production Management, National Engineering and Technology Center for Information Agriculture, China-KenyaChina Belt and Road Joint Laboratory on Crop Molecular Biology, Nanjing Agricultural University, Nanjing 210095, Jiangsu, China
Ningxia Hui Autonomous Region Seed Station, Yinchuan 750004, Ningxia, China
Institute of Botany, Jiangsu Province and Chinese Academy of Sciences, Nanjing 210014, Jiangsu, China
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Abstract

The objective of this study was to identify an application strategy for a blend of two controlled-release nitrogen fertilizers (CRNFs) that optimized yield and N-use efficiency of late japonica rice in the Yangtze River Delta. In a two-year field experiment using high-yield split-applied urea (CK) and no-N fertilization as control (N0), nine CRNF treatments were evaluated for their effects on grain yield, N uptake (NUP), soil ammonium nitrogen (NH4+-N) dynamics, and ammonia volatilization (AV). The treatments included sulfur-coated urea (SCU), urease inhibitor urea (AHA), 90-d polymer-coated urea (P90), 120-d polymer-coated urea (P120), and five BBFs prepared by mixing CRNFs at a 3:7 ratio (AHAP90, SP90, AHAP120, SP120, and P90P120). Based on N release characteristics, CRNFs were categorized into four release modes: pre-positioned single-peak (PrSRM), post-positioned single-peak (PoSRM), decreasing double-peak (DDRM), and increasing double-peak (IDRM). Synchronization between soil NH4+-N dynamics under CRNFs and plant N uptake rate (NUPR) under CK was quantified using dynamic time warping (DTW), with smaller values indicating higher synchrony. Results showed that single-peak release modes significantly reduced grain yield and NUP by 12.6% and 10.5%, respectively. The IDRM treatment, a blend of 90-d and 120-d polymer-coated urea, showed NH4+-N supply dynamics most closely matching the N demand of high-yielding rice, with lower two-year average DTW values (SSRDTW 1.01, NUPSDTW 1.72) than DDRM (1.03 and 2.00), which translated into increases in spikelet number, grain yield, and NUP by 4.49%, 6.03%, and 4.85%, respectively, while decreasing AV by 86.7% compared with CK. One-time application of IDRM fertilizer can align soil NH4+-N supply with rice N demand, ensure high yield, and reduce N losses, providing an optimized fertilization strategy for sustainable rice production in the Yangtze River Delta.

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The Crop Journal
Pages 618-627

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Cite this article:
Tang X, Li Z, Wu Z, et al. Increasing double-peak nitrogen release from controlled-release blended fertilizer boosts uptake efficiency and yield in late japonica rice in Yangtze River Delta. The Crop Journal, 2026, 14(2): 618-627. https://doi.org/10.1016/j.cj.2025.11.003

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Received: 19 August 2025
Revised: 30 October 2025
Accepted: 06 November 2025
Published: 05 December 2025
© 2025 Crop Science Society of China and Institute of Crop Science, CAAS.

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).