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Influence of the urease inhibitor suspension (Atmowell®) on the fluorescent dye pyranine and its spray and drift behavior in wind tunnel measurements

GND
1249433541
Zugehörigkeit
Julius Kühn-Institute (JKI), Institute for Application Techniques in Plant Protection, Germany
Ehmke, Annika;
GND
1033923087
Zugehörigkeit
Kiel University, Institute of Agricultural Engineering, Germany
Melfsen, Andreas;
GND
132914891
Zugehörigkeit
Julius Kühn-Institute (JKI), Institute for Application Techniques in Plant Protection, Germany
Wegener, Jens Karl;
GND
101460317X
Zugehörigkeit
Kiel University, Institute of Agricultural Engineering, Germany
Hartung, Eberhard

Too many ammonia emissions are released into the environment from cattle farming. These damage the environment and have an impact on animal and human health. Ammonia Emissions could be reduce by urease inhibitors. Before using the urease inhibitor suspension Atmowell® in cattle farming a risk assessment is required. This includes exposure data on the animal and human in the barn. As there is no method for exposure measurements yet the approach of fluorometry was taken. The fluorescent dye pyranine shall replace Atmowell® in later studies as a tracer. Before Atmowell® can be replaced, the interaction between Atmowell® and pyranine—according to the fluorescence and storage stability under the influence of ultraviolet light, has to be observed and excluded. Also, the spray and drift behavior must be examined in the wind tunnel with three different nozzles. The results show that Atmowell® has no effect on neither the fluorescence nor the degradation rate of a pyranine-solution. Furthermore, it is shown that a pyranine + Atmowell® mixture does not differ in drift behavior from a pure pyranine-solution. Because of these findings, an Atmowell®-solution can be substituted by a pyranine-solution without any effects on the results of an exposure measurement being expected.

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