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农田NO排放的时间变异性
摘要点击 635  全文点击 1774  投稿时间:1998-09-02  
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中文关键词  NO排放  季节变化  日变化  自动观测  农田  温室气体  大气环境
英文关键词  NO emission  seasonal variation  diurnal variation  croplands  greenhouse gas  atmospheric environment
作者单位
郑循华 中国科学院大气物理研究所, 北京 100029 
王明星 中国科学院大气物理研究所, 北京 100029 
王跃思 中国科学院大气物理研究所, 北京 100029 
中文摘要
      在采用基于箱法的自动观测技术对苏州地区一个完整的冬小麦生育期的麦田NO排放进行全天候连续观测的基础上,讨论了NO排放的季节变化和日变化特征及其温度和植物生长的影响。观测实验研究发现,苏州地区冬小麦田的NO排放具有极其显着的季节变化规律性,冬季以前的小麦苗期和返青至淹水种稻之前的春季,NO排放量分别为0.156-0.758mg·m-2·h-1和1.229-10.802mg·m-2·h-1,前者是全生育期排放总量的1.5%-10.5%,后者为83.0%-93.8%.温度是决定其季节变化格局的首要因素,虽然施氮肥可以使NO排放增大5-7倍,但却不能改变其季节变化格局。在植物生长活动较弱的阶段,NO排放的日变化格局与温度一致,即日排放极大值发生在午时左右。但是,在植物旺盛生长的季节,由于根系与土壤微生物竞争土壤NH4+-N,导致与温度完全相反的NO排放日变化格局,即日排放极大值发生在夜间18-24时,午时左右出现的却是日排放极小值。
英文摘要
      No emission from the croplands of Suzhou suburban,in which winter wheat following rice was planted,was continuously measured with an automated system based on static chamber techniques.The discussion of this paper focuses on the seasonal and diurnal variation of NO emission and the influcences of temperature,fertilization and plant activity.The NO emission from the wheat fields shows high seasonal variability.Amounts of released NO in the seedling stage and during the period from wheat reviving in spring till flooding fields for rice planting was observed to be 0.156—0.758 and 1.229_10.802mg·m-2 ·h-1,respectively.The former only accounts for 1.5%_10.5% of the seasonal total,and the later 83.0%_93.8%.It is temperature that determines the seasonal variation pattern of NO emission.Even though N fertilization may significantly intensify the seasonal NO emission by 5—7 times,it is not able to modify the seasonal variation pattern.Under suitable temperature,the diurnal variation pattern of NO emission from crop fields depends on the activities of plants.When wheat growth activity is relatively lower,the diurnal pattern of NO emission is very similar with that of temperature,with the maximum appears at about 12:00.When wheat in the fields luxuriates,the competition of NH4+ up take by wheat roots and NH4+ oxidation by nitrifers leads to a night peak pattern of diurnal variation,with the maximum emission occurring at 18:00_24:00 and the minimum at about 12:00.

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