首页> 外文期刊>Biology and Fertility of Soils >Reducing NH3, N2O and textNO3- {text{NO}}_3^ - –N losses from a pasture soil with urease or nitrification inhibitors and elemental S-amended nitrogenous fertilizers
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Reducing NH3, N2O and textNO3- {text{NO}}_3^ - –N losses from a pasture soil with urease or nitrification inhibitors and elemental S-amended nitrogenous fertilizers

机译:还原NH 3 ,N 2 O和textNO 3 - {text {NO}} _ 3 ^-–N含脲酶或硝化抑制剂和元素S改良氮肥的牧场土壤流失

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A 3-month field experiment comparing nitrogen (N) losses from and the agronomic efficiency of various N fertilizers was conducted on a sandy loam (Typic Hapludand) soil at Ruakura AgResearch farm, Hamilton, New Zealand during October to December 2003. Three replicates of seven treatments: urea, urea + the urease inhibitor N-(n-butyl) thiophosphoric triamide (trade name Agrotain), urea + Agrotain + elemental sulphur (S), urea + double inhibitor [DI; i.e., Agrotain + dicyandiamide (DCD)], diammonium phosphate (DAP), DAP + S, each applied at 150 kg N ha−1, and control (no N). After fertilizer application, soil ammonium ( operatornameNH + 4 operatorname{NH} ^{ + }_{4} ) and nitrate ( operatornameNO - 3 operatorname{NO} ^{ - }_{3} ) concentrations (7.5-cm soil depth), ammonia (NH3) volatilization, nitrate ( operatornameNO - 3 operatorname{NO} ^{ - }_{3} ) leaching, nitrous oxide (N2O) emission, pasture dry matter, and N uptake were monitored at different timings. Urea applied with Agrotain or Agrotain + S delayed urea hydrolysis and released soil operatornameNH + 4 operatorname{NH} ^{ + }_{4} at a slower rate than urea alone or urea + DI. Urea applied with DI increased NH3 volatilization by 29% over urea alone, while urea + Agrotain and urea + Agrotain + S reduced NH3 volatilization by 45 and 48%, respectively. Ammonia volatilization losses from DAP were lower than those from urea with or without inhibitors. Total reduction in operatornameNO - 3 operatorname{NO} ^{ - }_{3} leaching losses for urea + DI and urea + Agrotain compared to urea alone were 89% and 47%, respectively. Application of S with urea + Agrotain reduced operatornameNO - 3 operatorname{NO} ^{ - }_{3} leaching losses by an additional 6%. Nitrous oxide emissions were higher from the DAP and urea alone treatments. Urea applied with DI and urea + Agrotain reduced N2O emissions by 37 and 5%, respectively, over urea alone. Compared to urea alone, total pasture production increased by 20, 17, and 15% for urea + Agrotain + S, urea + Agrotain, and urea + DI treatments, respectively, representing 86, 71, and 64% increases in N response efficiency. Total N uptake in urea + Agrotain, urea + Agrotain + S, and urea + DI increased by 29, 22, and 20%, respectively, compared to urea alone. These results suggest that the combination of both urease and nitrification inhibitors may have the most potential to reduce N losses and improve pasture production in intensively grazed systems.
机译:在2003年10月至12月间,在新西兰汉密尔顿的Ruakura AgResearch农场的沙质壤土(典型的Hapludand)上进行了为期3个月的田间试验,比较了各种氮肥的氮素损失和农艺效率。七个处理方法:尿素,尿素+尿素酶抑制剂N-(正丁基)硫代磷酸三酰胺(商品名Agrotain),尿素+ Agrotain +元素硫(S),尿素+双重抑制剂[DI;即Agrotain +双氰胺(DCD)],磷酸二铵(DAP),DAP + S,分别以150 kg N ha 和对照(无N)施用。施肥后,土壤铵盐(操作员名称NH + 4 操作员名称{NH} ^ {+} _ {4})和硝酸盐(操作员名称NO - < sub> 3 操作员名称{NO} ^ {-} _ {3})浓度(7.5厘米土壤深度),氨(NH 3 )挥发,硝酸盐(操作员名称NO - 3 操作员名{NO} ^ {-} _ {3})淋洗,一氧化二氮(N 2 O)排放,牧草干物质和氮吸收在不同的时间进行监控。施用Agrotain或Agrotain + S的尿素会延迟尿素水解并释放土壤操作员名称NH + 4 操作员名称{NH} ^ {+} _ {4}或尿素+ DI。与单独使用尿素相比,添加DI的尿素使NH 3 的挥发增加了29%,而尿素+农用肥和尿素+农用+ S减少的NH 3 挥发分别为45%和48% 。 DAP的氨挥发损失低于有或没有抑制剂的尿素挥发损失。与单独的尿素相比,尿素+ DI和尿素+ Agrotain的浸出损失分别为89%和90%,而操作员名称的总减少量NO - 3 操作员名称{NO} ^ {-__3} 47%。尿素+农用生物素S的施用减少了操作员名称NO - 3 操作员名称{NO} ^ {-} _ {3}的浸出损失,降低了6%。 DAP和尿素单独处理的一氧化二氮排放量更高。与仅施用尿素相比,施用DI和尿素+ Agrotain的尿素分别减少了N 2 O排放37%和5%。与单独的尿素相比,尿素+农用植物+ S,尿素+农用植物和尿素+ DI处理的总牧草产量分别增加了20%,17%和15%,这意味着氮素响应效率提高了86%,71%和64%。与单独的尿素相比,尿素+农用肥料,尿素+农用肥料+ S和尿素+ DI的总氮吸收量分别增加了29%,22%和20%。这些结果表明,在集约化放牧系统中,脲酶和硝化抑制剂的组合可能具有减少氮素损失和提高牧草产量的最大潜力。

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