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1.
Science ; 341(6151): 1233-5, 2013 Sep 13.
Article in English | MEDLINE | ID: mdl-24031015

ABSTRACT

Abiotic release of nitrous acid (HONO) in equilibrium with soil nitrite (NO2(-)) was suggested as an important contributor to the missing source of atmospheric HONO and hydroxyl radicals (OH). The role of total soil-derived HONO in the biogeochemical and atmospheric nitrogen cycles, however, has remained unknown. In laboratory experiments, we found that for nonacidic soils from arid and arable areas, reactive nitrogen emitted as HONO is comparable with emissions of nitric oxide (NO). We show that ammonia-oxidizing bacteria can directly release HONO in quantities larger than expected from the acid-base and Henry's law equilibria of the aqueous phase in soil. This component of the nitrogen cycle constitutes an additional loss term for fixed nitrogen in soils and a source for reactive nitrogen in the atmosphere.


Subject(s)
Nitrogen Fixation , Nitrogen/metabolism , Nitrosomonas europaea/metabolism , Nitrous Acid/metabolism , Reactive Nitrogen Species/metabolism , Soil Microbiology , Ammonia/metabolism , Atmosphere/chemistry , Oxidation-Reduction
2.
Environ Sci Technol ; 47(4): 1930-6, 2013 Feb 19.
Article in English | MEDLINE | ID: mdl-23343053

ABSTRACT

Fast ozone (O(3)) measurements (1-50 Hz) in the atmosphere are required for airborne studies and for the measurement of ground-based O(3) fluxes by the eddy covariance technique. Fast response analyzers, based on heterogeneous chemiluminescence, need dye coated sensor discs on which the chemiluminescence is generated. In this study, we present three new preparation methods for those sensor discs. Currently available sensor discs exhibit a fast temporal decay of sensitivity, resulting in short duty times which is troublesome for many field applications. To produce sensor discs that provide more stable signals over time, three dyes and nine energy transfer reagents were tested (as well as different stoichiometric mixtures). The resulting optimal method saves 80% of the solid chemicals and shows a duty ozone dose that is prolonged by a factor of 3.5, revealing the same average sensitivity as currently available discs. In addition, we observed a strong effect of the adsorption matrix on the O(3) sensitivity, although silica discs from the same manufacturer were used. Application of the new sensor discs during field measurements showed that the results are consistent with the laboratory data.


Subject(s)
Luminescent Measurements/instrumentation , Ozone/analysis , Coloring Agents/chemistry , Energy Transfer
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