水氮耦合对结球甘蓝经济产量和水氮利用效率的影响OA
Effects of Water and Nitrogen Coupling on the Economic Yield and Water and Nitrogen Use Efficiency of Cabbage
为探究不同水氮耦合对结球甘蓝经济产量、经济效益、氮肥利用效率以及水分生产力的影响,进而优化结球甘蓝田间的水氮管理措施.以结球甘蓝中甘 15 号为研究对象,设定 2 种灌溉模式[常规灌溉(W1),节水灌溉(W2,为常规灌溉灌水量的 70%)],4 个施氮量水平[0 kg·hm-2(N0)、119.94 kg·hm-2(N1)、239.88 kg·hm-2(N2)、359.82 kg·hm-2(N3)],分析不同水氮耦合对结球甘蓝经济产量、经济效益、氮肥利用效率以及水分生产力的影响.结果表明:施氮量和灌溉模式对结球甘蓝的经济产量、氮肥利用效率以及水分生产力均有显著影响(P<0.05).经济产量和水分生产力随着施氮量的增加表现为先增加后降低的趋势,相同施氮量的条件下,节水灌溉模式下的氮肥利用效率较大.W2N2 处理的结球甘蓝经济产量、经济效益以及水分生产力最大,其值分别为 16.11 t·hm-2、16 544.73 元·hm-2 和 4.88%,且较W1N1 处理分别显著增加 14.34%、11.50%、64.31%.因此,结球甘蓝适宜的水氮耦合模式为:节水灌溉模式下灌溉量 330 t·hm-2,施氮量 239.88 kg·hm-2.适量适度的水氮耦合模式具有增产、高效、节水的潜力.
The study aimed to explore the effects of different water and nitrogen coupling on the economic yield,economic benefit,nitrogen use efficiency and water productivity of cabbage,in order to optimize the water and nitrogen management measures in the field of cabbage.By taking Cabbage Zhonggan No.15 as the research object,two irrigation modes[the conventional irrigation(W1),water-saving irrigation(W2,70%of conventional irrigation)]and four nitrogen application levels[0 kg·hm-2(N0),119.94 kg·hm-2(N1),239.88 kg·hm-2(N2),and 359.82 kg·hm-2(N3)]were set to analyze the effects of different water and nitrogen coupling on the economic yield,economic benefit,nitrogen use efficiency and water productivity of cabbage.The results showed that:The nitrogen application rate and irrigation mode had significant effects on the economic yield,nitrogen use efficiency and water productivity of cabbage(P<0.05).The economic yield and water productivity increased first and then decreased with the increase of nitrogen application rate.Under the same nitrogen application rate,the nitrogen use efficiency was higher under the water-saving irrigation mode.he economic yield,economic benefit and water productivity of cabbage treated with W2N2 were the highest,which were 16.11 t·hm-2,16 544.73 yuan·hm-2 and 4.88%,respectively,and significantly increased by 14.34%,11.50%and 64.31%compared with W1N1 treatment,respectively.Therefore,the optimal water-nitrogen coupling mode for cabbage formation was as follows:330 t·hm-2 of irrigation amount and 239.88 kg·hm-2 of nitrogen application amount under the water-saving irrigation mode.The appropriate and moderate water-nitrogen coupling mode had the potential of increasing the production,high efficiency and water saving.
李艳
福建省水利建设中心/福建省灌溉试验中心站,福建 福州 350001
农业科技
水氮耦合经济产量经济效益氮肥利用效率水分生产力
Water-nitrogen couplingEconomic outputEconomic benefitsNitrogen fertilizer use efficiencyWater productivity
《福建农业科技》 2026 (1)
76-81,6
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