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Calibrated Passive Sampling - Multi-plot Field Measurements of NH3 Emissions with a Combination of Dynamic Tube Method and Passive Samplers
Published on: March 21, 2016
Reducing atmospheric ammonia concentrations in typical farming systems surrounding lakes is essential for lake water
Shufang Guo1, Wen Xu2, Yinghua Yin3
1Institute of Agricultural Environment and Resources, Yunnan Academy of Agricultural Sciences, Kunming, 650205, China.
Abstract:
Atmospheric ammonia (NH3) and its deposition are primary contributors to lake eutrophication. However, long-term spatiotemporal observations of NH3, particulate and wet ammonium (NH4+), their isotopic signatures, and source contributions in contrasting cropland systems near plateau lakes remain limited. A two-year continuous field observation was conducted in two typical cropland systems adjacent to Erhai Lake, an alpine fault lake in Yunnan province of China: vegetable system (V) and rice-rapeseed rotation system (R). We monitored concentrations of gaseous NH3, particulate and wet NH4+, their δ15N values, and quantified source contributions using a Bayesian isotope mixing model while considering nitrogen isotope fractionation. The average NH3 concentrations in the V system were 3.59 times higher than those in the R system, with pronounced peaks observed in summer and autumn. In contrast, particulate NH4+ concentrations were higher in spring and winter (0.84 and 0.77 μg m-3 in the V and R systems, respectively). Mean wet NH4+ concentrations were 0.54 and 0.77 mg L-1 in the V and R systems, respectively. Fertilizer and livestock manure together contributed 74.3% and 83.1% to gaseous NH3, 65.6% and 59.3% to particulate NH4+, and 96.2% and 84.2% to wet NH4+ in the V and R systems, respectively. Fossil fuel and vehicle exhaust had relatively high contributions to particulate NH4+. Emission sources and meteorological conditions together influenced spatio-temporal NH3 concentrations across different cropping systems. This study provides evidence for NHx source control and deposition mitigation around plateau lakes, supporting agricultural NH3 abatement strategies to protect water quality and mitigate lake eutrophication.
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