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Summertime Soil-Atmosphere Ammonia Exchange in the Colorado Rocky Mountain Front Range Pine Forest

机译:夏季土壤 - 大气氨emmonia交换在科罗拉多岩石山前范围杉木森林

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摘要

Understanding the NH3 exchange between forest ecosystems and the atmosphere is important due to its role in the nitrogen cycle. However, NH3 exchange is dynamic and difficult to measure. The goal of this study was to characterize this exchange by measuring the atmosphere, soil, and vegetation. Compensation point modeling was used to evaluate the direction and magnitude of surface-atmosphere exchange. Measurements were performed at the Manitou Experimental Forest Observatory (MEFO) site in the Colorado Front Range by continuous online monitoring of gas and particle phase NH3-NH4+ with an ambient ion monitoring system coupled with ion chromatographs (AIM-IC), direct measurements of [NH4+] and pH in soil extracts to determine ground emission potential (Γg), and measurements of [NH4+]bulk in pine needles to derive leaf emission potential (Γst). Two different soil types were measured multiple times throughout the study, in which Γg ranged from 5 to 2122. Γst values ranged from 29 to 54. Inferred fluxes (Fg) from each soil type predicted intervals of emission and deposition. By accounting for the total [NH4+] pool in each compartment, the lifetime of NH3 with respect to the surface-atmosphere exchange in the soil is on the order of years compared to much faster naturally occurring processes, i.e., mineralization and nitrification.
机译:了解森林生态系统之间的NH3交换,由于其在氮循环中的作用,气氛很重要。但是,NH3交换是动态且难以衡量的。本研究的目标是通过测量大气,土壤和植被来表征这种交换。补偿点建模用于评估表面大气交换的方向和幅度。在Colorado正方形范围内的Manitou实验森林观测(Mefo)位点进行测量,通过与离子色谱仪(AIM-IC)联合的环境离子监测系统,直接测量[ NH4 +]和土壤提取物中的pH确定地排放电位(γ; G),以及杉木针中[NH4 +]散装的测量,以导出叶排放电位(γ; St)。在整个研究中多次测量两种不同的土壤类型,其中γ;克范围为5至2122.&γ值范围为29至54.从每个土壤类型预测排放间隔的推断(FG)预测的排放间隔。通过在每个隔间中的总[NH4 +]池中进行算法,与土壤中表面气氛交换相比,NH3的寿命是大约左右的序号,而相比较快的天然存在的过程,即矿化和硝化。

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