首页> 外文期刊>Fertilizer Research: An International Journal on Fertilizer Use >USE OF PHENYLPHOSPHORODIAMIDATE AND N-(N-BUTYL)THIOPHOSPHORICTRIAMIDE TO REDUCE AMMONIA LOSS AND INCREASE GRAIN YIELD FOLLOWING APPLICATION OF UREA TO FLOODED RICE
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USE OF PHENYLPHOSPHORODIAMIDATE AND N-(N-BUTYL)THIOPHOSPHORICTRIAMIDE TO REDUCE AMMONIA LOSS AND INCREASE GRAIN YIELD FOLLOWING APPLICATION OF UREA TO FLOODED RICE

机译:尿素在水淹大米中施用后,使用苯二酰胺和N-(N-丁基)硫代磷酸三酰胺减少氨气损失并提高谷物产量

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Ammonia (NH3) volatilization is an important mechanism for nitrogen (N) loss from flooded rice fields following the application of urea into the floodwater. One method of reducing losses is to use a urease inhibitor that retards the hydrolysis of urea by soil urease and allows the urea to diffuse deeper into the soil. The two chemicals that have shown most promise in laboratory and greenhouse studies are phenylphosphorodiamidate [PPD] and N-(n-butyl)thiophosphorictriamide [NBPT], but they seldom work effectively in the field. PPD decomposes rapidly when the pH departs from neutrality, and NBPT must be converted to the oxygen analogue [N-(n-butyl)phosphorictriamide, NBPTO] for it to be effective. Our field studies in Thailand showed that NH3 loss is markedly reduced when PPD is added with the algicide terbutryn. The studies also showed that a mixture of PPD and NBPT was even more effective than either PPD or NBPT alone. It appears that initially PPD inhibited urease activity, and during this time at least part of the NBPT was converted to NBPTO; then as the activity of PPD declined, NBPTO inhibited the hydrolysis of urea. The combined urease inhibitor treatment reduced NH3 loss from 15 to 3% of the applied N, and increased grain yield from 3.6 to 4.1 t ha(-1).
机译:氨(NH3)的挥发是稻田中施用尿素后,水淹稻田中氮(N)损失的重要机制。减少损失的一种方法是使用脲酶抑制剂,该抑制剂可阻止尿素被土壤脲酶水解,并使尿素更深地扩散到土壤中。在实验室和温室研究中显示出最有希望的两种化学品是苯基二氨基氨基磷酸苯酯[PPD]和N-(正丁基)硫代磷酸三酰胺[NBPT],但它们在该领域很少能有效地发挥作用。当pH值偏离中性时,PPD会迅速分解,并且NBPT必须转化为氧类似物[N-(正丁基)磷酸三酰胺,NBPTO]才能有效。我们在泰国的实地研究表明,将PPD与杀草剂特丁龙一起添加可显着减少NH3的损失。研究还表明,PPD和NBPT的混合物比单独使用PPD或NBPT的效果更好。似乎最初PPD抑制了脲酶的活性,在此期间,至少部分NBPT转化为NBPTO。然后,随着PPD活性的降低,NBPTO抑制了尿素的水解。组合的脲酶抑制剂处理将NH3的损失从施氮量的15%降低到3%,谷物产量从3.6 t ha(-1)增加。

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