Researcher Portfolio

 
   

Schuster, Gerhard

Atmospheric Chemistry, Max Planck Institute for Chemistry, Max Planck Society  

 

Researcher Profile

 
Position: Atmospheric Chemistry, Max Planck Institute for Chemistry, Max Planck Society
Researcher ID: https://pure.mpg.de/cone/persons/resource/persons101261

External references

 

Publications

 
  (1 - 25 of 38)
 : Kippenberger, M., Schuster, G., Lelieveld, J., & Crowley, J. N. (2019). Trapping of HCl and oxidised organic trace gases in growing ice at temperatures relevant to cirrus clouds. Atmospheric Chemistry and Physics, 19(18), 11939-11951. doi:10.5194/acp-19-11939-2019. [PubMan] : Javed, U., Kubistin, D., Martinez-Harder, M., Pollmann, J., Rudolf, M., Parchatka, U., Reiffs, A., Thieser, J., Schuster, G., Horbanski, M., Pöhler, D., Crowley, J. N., Fischer, H., Lelieveld, J., & Harder, H. (2019). Laser induced fluorescence based detection of atmospheric nitrogen dioxide and comparison of different techniques during the PARADE 2011 field campaign. Atmospheric Measurement Techniques, 12(3), 1461-1481. doi:10.5194/amt-12-1461-2019. [PubMan] : Eger, P. G., Helleis, F., Schuster, G., Phillips, G. J., Lelieveld, J., & Crowley, J. N. (2019). Chemical ionization quadrupole mass spectrometer with an electrical discharge ion source for atmospheric trace gas measurement. Atmospheric Measurement Techniques, 12(3), 1935-1954. doi:10.5194/amt-12-1935-2019. [PubMan] : Eger, P. G., Helleis, F., Schuster, G., Phillips, G. J., Lelieveld, J., & Crowley, J. N. (2018). Chemical ionisation quadrupole mass spectrometer with an electrical discharge ion source for atmospheric trace gas measurement. Atmospheric Measurement Techniques Discussions, 11. [PubMan] : Liebmann, J. M., Schuster, G., Schuladen, J., Sobanski, N., Lelieveld, J., & Crowley, J. N. (2017). Measurement of ambient NO3 reactivity: design, characterization and first deployment of a new instrument. Atmospheric Measurement Techniques, 10(3), 1241-1258. doi:10.5194/amt-10-1241-2017. [PubMan] : Thieser, J., Schuster, G., Phillips, G. J., Reiffs, A., Parchatka, U., Pöhler, D., Lelieveld, J., & Crowley, J. N. (2016). A two-channel, thermal dissociation cavity-ringdown spectrometer for the detection of ambient NO2, RO2NO2 and RONO2. Atmospheric Measurement Techniques, 9(2), 553-576. doi:10.5194/amt-9-553-2016. [PubMan] : Sobanski, N., Schuladen, J., Schuster, G., Lelieveld, J., & Crowley, J. N. (2016). A five-channel cavity ring-down spectrometer for the detection of NO2, NO3, N2O5, total peroxy nitrates and total alkyl nitrates. Atmospheric Measurement Techniques, 9(10), 5103-5118. doi:10.5194/amt-9-5103-2016. [PubMan] : Phillips, G. J., Thieser, J., Tang, M. J., Sobanski, N., Schuster, G., Fachinger, J., Drewnick, F., Borrmann, S., Bingemer, H., Lelieveld, J., & Crowley, J. N. (2016). Estimating N2O5 uptake coefficients using ambient measurements of NO3, N2O5, ClNO2 and particle-phase nitrate. Atmospheric Chemistry and Physics, 16(20), 13231-13249. doi:10.5194/acp-16-13231-2016. [PubMan] : Phillips, G. J., Thieser, J., Tang, M. J., Sobanski, N., Schuster, G., Fachinger, J., Drewnick, F., Borrmann, S., Bingemer, H., Lelieveld, J., & Crowley, J. N. (2016). Estimating N2O5 uptake coefficients using ambient measurements of NO3, N2O5, ClNO2 and particle-phase nitrate. Atmospheric Chemistry and Physics Discussions, 16. [PubMan] : Liebmann, J. M., Schuster, G., Schuladen, J., Sobanski, N., Lelieveld, J., & Crowley, J. N. (2016). Measurement of ambient NO3 reactivity: design, characterization and first deployment of a new instrument. Atmospheric Measurement Techniques Discussions, 9. [PubMan] : Sobanski, N., Tang, M. J., Thieser, J., Schuster, G., Pöhler, D., Fischer, H., Song, W., Sauvage, C., Williams, J., Fachinger, J., Berkes, F., Hoor, P., Platt, U., Lelieveld, J., & Crowley, J. N. (2016). Chemical and meteorological influences on the lifetime of NO3 at a semi-rural mountain site during PARADE. Atmospheric Chemistry and Physics, 16(8), 4867-4883. doi:10.5194/acp-16-4867-2016. [PubMan] : Zimmermann, S., Kippenberger, M., Schuster, G., & Crowley, J. N. (2016). Adsorption isotherms for hydrogen chloride (HCl) on ice surfaces between 190 and 220 K. Physical Chemistry Chemical Physics, 18(20), 13799-13810. doi:10.1039/c6cp01962e. [PubMan] : Sobanski, N., Schuladen, J., Schuster, G., Lelieveld, J., & Crowley, J. N. (2016). A five-channel cavity ring-down spectrometer for the detection of NO2, NO3, N2O5, total peroxy nitrates and total alkyl nitrates. Atmospheric Measurement Techniques Discussions, 9. [PubMan] : Thieser, J., Schuster, G., Phillips, G. J., Reiffs, A., Parchatka, U., Pöhler, D., Lelieveld, J., & Crowley, J. N. (2015). A two-channel, thermal dissociation cavity-ringdown spectrometer for the detection of ambient NO2, RO2NO2 and RONO2. Atmospheric Measurement Techniques Discussions, 8, 11533-11596. doi:10.5194/amtd-8-11533-2015. [PubMan] : Groß, C. B. M., Dillon, T. J., Schuster, G., Lelieveld, J., & Crowley, J. N. (2014). Direct Kinetic Study of OH and O3 Formation in the Reaction of CH3C(O)O2 with HO2. The Journal of Physical Chemistry A, 118(6), 974-985. doi:10.1021/jp412380z. [PubMan] : Tang, M. J., Schuster, G., & Crowley, J. N. (2014). Heterogeneous reaction of N2O5 with illite and Arizona test dust particles. Atmospheric Chemistry and Physics, 14(1), 245-254. doi:10.5194/acp-14-245-2014. [PubMan] : Dorn, H. P., Apodaca, R. L., Ball, S. M., Brauers, T., Brown, S. S., Crowley, J. N., Dubé, W. P., Fuchs, H., Häseler, R., Heitmann, U., Jones, R. L., Kiendler-Scharr, A., Labazan, I., Langridge, J. M., Meinen, J., Mentel, T. F., Platt, U., Pöhler, D., Rohrer, F., Ruth, A. A., Schlosser, E., Schuster, G., Shillings, A. J. L., Simpson, W. R., Thieser, J., Tillmann, R., Varma, R., Venables, D. S., & Wahner, A. (2013). Intercomparison of NO3 radical detection instruments in the atmosphere simulation chamber SAPHIR. Atmospheric Measurement Techniques, 6(5), 1111-1140. [PubMan] : Phillips, G. J., Makkonen, U., Schuster, G., Sobanski, N., Hakola, H., & Crowley, J. N. (2013). The detection of nocturnal N2O5 as HNO3 by alkali- and aqueous-denuder techniques. Atmospheric Measurement Techniques, 6(2), 231-237. [PubMan] : Phillips, G. J., Pouvesle, N., Thieser, J., Schuster, G., Axinte, R., Fischer, H., Williams, J., Lelieveld, J., & Crowley, J. N. (2013). Peroxyacetyl nitrate (PAN) and peroxyacetic acid (PAA) measurements by iodide chemical ionisation mass spectrometry: first analysis of results in the boreal forest and implications for the measurement of PAN fluxes. Atmospheric Chemistry and Physics, 13(3), 1129-1139. [PubMan] : Phillips, G. J., Tang, M. J., Thieser, J., Brickwedde, B., Schuster, G., Bohn, B., Lelieveld, J., & Crowley, J. N. (2012). Significant concentrations of nitryl chloride observed in rural continental Europe associated with the influence of sea salt chloride and anthropogenic emissions. Geophysical Research Letters, 39: L10811. doi:10.1029/2012GL051912. [PubMan] : Tang, M. J., Thieser, J., Schuster, G., & Crowley, J. N. (2012). Kinetics and mechanism of the heterogeneous reaction of N2O5 with mineral dust particles. Physical Chemistry Chemical Physics, 14(24), 8551-8561. [PubMan] : Fuchs, H., Simpson, W. R., Apodaca, R. L., Brauers, T., Cohen, R. C., Crowley, J. N., Dorn, H. P., Dubé, W. P., Fry, J. L., Häseler, R., Kajii, Y., Kiendler-Scharr, A., Labazan, I., Matsumoto, J., Mentel, T. F., Nakashima, Y., Rohrer, F., Rollins, A. W., Schuster, G., Tillmann, R., Wahner, A., Wooldridge, P. J., & Brown, S. S. (2012). Comparison of N2O5 mixing ratios during NO3Comp 2007 in SAPHIR. Atmospheric Measurement Techniques, 5(11), 2763-2777. [PubMan] : Crowley, J. N., Thieser, J., Tang, M. J., Schuster, G., Bozem, H., Beygi, Z. H., Fischer, H., Diesch, J. M., Drewnick, F., Borrmann, S., Song, W., Yassaa, N., Williams, J., Pöhler, D., Platt, U., & Lelieveld, J. (2011). Variable lifetimes and loss mechanisms for NO3 and N2O5 during the DOMINO campaign: contrasts between marine, urban and continental air. Atmospheric Chemistry and Physics, 11(21), 10853-10870. [PubMan] : Pouvesle, N., Kippenberger, M., Schuster, G., & Crowley, J. N. (2010). The interaction of H2O2 with ice surfaces between 203 and 233 K. Physical Chemistry Chemical Physics, 12(47), 15544-15550. [PubMan] : Crowley, J. N., Schuster, G., Pouvesle, N., Parchatka, U., Fischer, H., Bonn, B., Bingemer, H., & Lelieveld, J. (2010). Nocturnal nitrogen oxides at a rural mountain-site in south-western Germany. Atmospheric Chemistry and Physics, 10(6), 2795-2812. [PubMan]