Enhancing Yield and Nitrogen Utilization of Boro Rice with Urea Super Granules

Md. Mazedul Huq, Israt Jahan, Md Anamul Hoque, Md. Rafiqul Islam
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Abstract

A field experiment was conducted at the Soil Science Field Laboratory of Bangladesh Agricultural University, Mymensingh during boro season to assess the comparative performance of prilled urea (PU) and urea super granule (USG) on the growth, yield, and nitrogen uptake of BRRI dhan29. The experiment was laid out in a randomized complete block design with three replications. The treatment combinations were T1: Control, T2: PU at 7 days after transplanting (DAT)+27 DAT+47 DAT, T3: PU at 10 DAT+30 DAT+50 DAT, T4: PU at 15 DAT+35 DAT+55 DAT, T5: USG at transplanting, T6: USG at 7 DAT, T7: USG at 10 DAT and T8: USG at 10 DAT+30 DAT where PU and USG were applied @ 216 kg N ha-1. PU was applied as surface broadcasting whereas USG was placed at 6-8 cm depth by hand between four hills at every alternate row. The results revealed that all the treatments showed better performances than control (T1). Results found that yield components, yield, and nitrogen uptake of BRRI dhan29 responded significantly to deep placement of USG than PU. Treatment T6 (USG at 7 DAT) produced the highest grain and straw yields of 6.56 t ha-1 and 6.95 t ha-1 respectively. Treatment T6 (USG at 7 DAT) also showed the highest grain yield increase (57.16%) and straw yield increase (52.37%) over control. The highest grain, straw, and total N uptake of 87.28, 32.71 and 120 kg ha-1 respectively were obtained in the treatment T6 (USG at 7 DAT). The overall results clearly indicate that deep placement of USG at 7 DAT in rice field increases rice yield and efficient uptake of the applied N. So, treatment T6 (USG at 7 DAT) could be recommended as best treatment for reducing N losses, conserving environment and improving sustainable production of rice.
用超级尿素颗粒提高波罗水稻的产量和氮素利用率
在孟加拉农业大学(位于迈门辛)的土壤科学田间实验室进行了一项田间试验,以评估粒状尿素(PU)和超微颗粒尿素(USG)对 BRRI dhan29 的生长、产量和氮吸收的影响。试验采用随机完全区组设计,三次重复。处理组合为 T1:对照;T2:移栽后 7 天(DAT)+27 天(DAT)+47 天(DAT)施用 PU;T3:移栽后 10 天(DAT)+30 天(DAT)施用 PU:T3:在 10 DAT+30 DAT+50 DAT 加 PU,T4:在 15 DAT+35 DAT 加 PU:T5:移栽时施用 USG,T6:7 DAT 时施用 USG,T7:10 DAT 时施用 USG,T8:10 DAT+30 DAT 时施用 USG,其中 PU 和 USG 的施用量为 216 kg N ha-1。聚氨酯以表面撒施的方式施用,而 USG 则以人工方式在每隔一行的四座小山之间施用,深度为 6-8 厘米。结果表明,所有处理的表现都优于对照(T1)。结果发现,BRRI dhan29 的产量成分、产量和氮吸收率对 USG 的深施反应明显优于 PU。处理 T6(7 DAT 时使用 USG)的谷物和秸秆产量最高,分别为 6.56 吨/公顷和 6.95 吨/公顷。与对照相比,处理 T6(7 DAT 时使用 USG)的谷物产量增幅(57.16%)和秸秆产量增幅(52.37%)也最高。处理 T6(7 DAT 时使用 USG)的谷物、秸秆和总氮吸收量最高,分别为 87.28、32.71 和 120 kg ha-1。总体结果清楚地表明,在水稻田中于 7 DAT 深施 USG 可提高水稻产量和对所施氮的有效吸收,因此,处理 T6(7 DAT 施 USG)可被推荐为减少氮损失、保护环境和提高水稻可持续生产的最佳处理。
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