水稻种植干湿交替灌溉的性能评估

Md. Mahadi Morshed
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摘要

孟加拉国锡尔赫特 Shahjalal 科技大学校园在 2009-2010 Boro 季节进行了一项试验,研究干湿交替灌溉(AWDI)对水稻产量的影响。采用随机完全区组设计(RCBD),对现代水稻品种(MV)(BRRIdhan 28)进行了四种灌溉处理。一个对照处理 T0 保持 1-5 厘米的连续积水深度。当水位分别下降到地面以下 10 厘米、20 厘米和 30 厘米时,对三个 AWD 处理 T1、T2 和 T3 进行灌溉。尽管处理 T0 的谷物产量最高(4.90 吨/公顷),但其用水效率为 38.64 千克/公顷/厘米。与产量为 4.68 吨/公顷的处理 T1 相比,处理 T1 的用水效率为 41.86 千克/公顷/厘米。处理 T2 和 T3 的产量分别为 3.96 吨/公顷和 3.63 吨/公顷。当水位低于地面以下 10 厘米时,处理 T1 可能是在有限供水条件下种植水稻的最佳选择。
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Performance evaluation of alternate wetting and drying irrigation for rice cultivation
An experiment was conducted during the 2009-2010 Boro season at the Shahjalal Science and Technology University campus, Sylhet, Bangladesh, to investigate the impact of alternate wetting and drying irrigation (AWDI) on rice production. Using a randomized complete block design (RCBD), four irrigation treatments were applied to a modern variety (MV) of rice (BRRIdhan 28). One control treatment, T0, maintained a continuous standing water depth of 1-5 cm. Water was irrigated to three AWD treatments, T1, T2, and T3 when the water level dropped 10, 20, and 30 cm below ground level, respectively. In spite of the fact that treatment T0 produced the highest grain yield (4.90 t/ha), its water use efficiency was 38.64 kg/ha/cm. Compared to treatment T1, which produced 4.68 t/ha, treatment T1 had a water use efficiency of 41.86 kg/ha/cm. Treatments T2 and T3 yielded 3.96 t/ha and 3.63 t/ha, respectively. When water levels fall below 10 cm below ground level, treatment T1 may be the best option for rice cultivation in conditions of limited water availability.
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64
审稿时长
8 weeks
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