The first topdressing nitrogen (N) application to flooded rice can be done on dry soil or soil after ponding water, affecting ammonia volatiliz'/> Nitrogen loss by ammonia volatilization with urea application in wetland soil with different soil water status
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Nitrogen loss by ammonia volatilization with urea application in wetland soil with different soil water status

机译:不同土壤水分状况下湿地土壤中氨挥发与尿素氮的流失。

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> size="2" face="Verdana, Arial, Helvetica, sans-serif">The first topdressing nitrogen (N) application to flooded rice can be done on dry soil or soil after ponding water, affecting ammonia volatilization rate and, consequently, nitrogen fertilization efficiency. This study was aimed at quantifing N losses by ammonia volatilization after urea application in a wetland soil with different soil water status. The experiment was carried out in a greenhouse, using 5kg pots with a Albaqualf with following treatments: N0 - control without urea application (wet soil); USSE - urea application on dry soil; USUM – urea application on wet soil; USSA – application on saturated soil; and USLA – urea application on soil after ponding water. The ammonia loss evaluations were made using a semi-open static collector at 10, 24, 34, 48, 72, 96, 144, 192, and 264 hours after urea application. At the end of 264 hours, the ammonia losses were similar for wet, saturated or ponding water soils, and the higher emission peaks were between 34 and 48 hours in wet and saturated soils and 72 hours in soil after ponding water. The N-urea application on ponding water did not avoid the N losses by volatilization.
机译:> size =“ 2” face =“ Verdana,Arial,Helvetica,sans-serif”>向淹没的水稻中首次施用追肥氮可以在干燥的土壤或积水后进行,从而影响氨的挥发速率和氮肥效率。这项研究的目的是量化尿素在不同土壤水分状态下的湿地土壤中施用尿素后氨气挥发引起的氮损失。实验是在温室中进行的,使用5kg盆和Albaqualf进行以下处理:N0-不施用尿素的对照(湿土); USSE-在干燥土壤上施用尿素; USUM –在潮湿的土壤上施用尿素; USSA –在饱和土壤上的应用;和USLA –积水后在土壤上施用尿素。在施用尿素后的10、24、34、48、72、96、144、192和264小时使用半开放式静电收集器进行氨气损失评估。在264小时结束时,湿,饱和或积水土壤的氨损失相似,并且较高的排放峰在湿和饱和土壤中为34至48小时,而在积水后为72小时。氮-尿素在积水中的应用并不能避免氮的挥发。

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