...
首页> 外文期刊>Atmospheric chemistry and physics >Surface-atmosphere exchange of ammonia over peatland using QCL-based eddy-covariance measurements and inferential modeling
【24h】

Surface-atmosphere exchange of ammonia over peatland using QCL-based eddy-covariance measurements and inferential modeling

机译:使用基于QCL的涡旋协方差测量和推理建模,氨化泥氨氨的表面 - 大气交换

获取原文
获取原文并翻译 | 示例
           

摘要

Recent advances in laser spectrometry offer new opportunities to investigate ecosystem-atmosphere exchange of environmentally relevant trace gases. In this study, we demonstrate the applicability of a quantum cascade laser (QCL) absorption spectrometer to continuously measure ammonia concentrations at high time resolution and thus to quantify the net exchange between a seminatural peatland ecosystem and the atmosphere based on the eddy-covariance approach. Changing diurnal patterns of both ammonia concentration and fluxes were found during different periods of the campaign. We observed a clear tipping point in early spring with decreasing ammonia deposition velocities and increasingly bidirectional fluxes that occurred after the switch from dormant vegetation to CO_2 uptake but was triggered by a significant weather change. While several biophysical parameters such as temperature, radiation, and surface wetness were identified to partially regulate ammonia exchange at the site, the seasonal concentration pattern was clearly dominated by agricultural practices in the surrounding area. Comparing the results of a compensation point model with our measurement-based flux estimates showed considerable differences in some periods of the campaign due to overestimation of non-stomatal resistances caused by low acid ratios. The total cumulative campaign exchange of ammonia after 9 weeks, however, differed only in a 6% deviation with 911 and 857 gNH_3-N ha~(-1) deposition being found by measurements and modeling, respectively. Extrapolating our findings to an entire year, ammonia deposition was lower than reported by Hurkuck et al. (2014) for the same site in previous years using denuder systems. This was likely due to a better representation of the emission component in the net signal of eddy-covariance fluxes as well as better adapted site-specific parameters in the model. Our study not only stresses the importance of high-quality measurements for studying and assessing land
机译:最近激光光谱进展提供了调查生态系统 - 大气交换环境相关的痕量气体的新机会。在这项研究中,我们证明了量子级联激光(QCL)吸收光谱仪在高时间分辨率下连续测量氨浓度的适用性,从而量化了基于涡流协方差方法的农业泥炭地生态系统与大气之间的净交换。在广告系列的不同时期发现了氨浓度和助熔剂的变化昼夜模式。我们在早春观察到早春的透明点,随着从休眠植被到CO_2摄取而发生的切换后发生的氨沉积速度和越来越多的双向助熔剂,而是通过显着的天气变化引发。虽然鉴定了几种生物物理参数,例如温度,辐射和表面湿度,以部分调节该部位的氨交换,但季节性浓度模式明显被周围地区的农业实践所占主导地位。将补偿点模型的结果与基于测量的磁通估计进行比较,这在运动的一段时间内,由于低酸性比率估计的非气孔电阻的估量,这一时期在一段时间内显示了相当大的差异。然而,9周后氨的总累积活动交换仅不同于6%偏差,分别通过测量和建模发现了911和857GNH_3-N HA〜(-1)沉积。将我们的研究结果推断为全年,氨沉积低于Hurkuck等人报告。 (2014)使用裸置系统在前几年的同一网站。这很可能是由于涡流通量的净信号中的发射组分的更好表示以及模型中的更好的特定于站点特定参数。我们的研究不仅强调了高质量测量来学习和评估土地的重要性

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号