HR: 17:45h
AN: A34B-08 INVITED [Abstracts]
TI: Nitrogen oxide emissions from lightning: Present knowledge, uncertainties, and strategies for
improvements
AU: * Schumann, U
EM: ulrich.schumann@dlr.de
AF: DLR - Institute of Atmospheric Physics, Oberpfaffenhofen, Wessling, 82234, Germany
AU: Huntrieser, H
EM: heidi.huntrieser@dlr.de
AF: DLR - Institute of Atmospheric Physics, Oberpfaffenhofen, Wessling, 82234, Germany
AU: Grewe, V
EM: volker.grewe@dlr.de
AF: DLR - Institute of Atmospheric Physics, Oberpfaffenhofen, Wessling, 82234, Germany
AB:
Lightning-induced nitrogen oxides (LNOx) have several important implications for atmospheric chemistry and
climate. The global LNOx source is one of the largest natural sources of NOx in the atmosphere and certainly the
largest source of NOx in the upper troposphere, in particular in the tropics. The LNOx source rate has been often
cited to be the least known one within the total atmospheric NOx budget. Considerable progress has been made
recently which allows reducing the uncertainty of the global LNOx value. This includes ground-based and satellite
observations of various lightning signals, satellite observations of NO2 column and profile distributions, airborne
in-situ measurements of NOx abundance near thunderstorms at midlatitudes and over tropical continents, where
most lightning occurs, detailed cloud-resolving model studies, and improved global models.
This paper reviews the present knowledge on the global LNOx source rate and its still large uncertainties
(Schumann and Huntrieser, ACP, 2007). Mainly as a result of global model studies for various LNOx
parameterisations tested with related observations, the best estimate of the annual global LNOx nitrogen mass
source and its uncertainty range is (5+-3) Tg/a in this study. The paper estimates the LNOx accuracy required for
various applications and lays out strategies for improving estimates in the future. An accuracy of about 1 Tg/a or
20%, as necessary in particular for understanding tropical tropospheric chemistry, is still a challenging goal.
Finally we point out to some recent findings from analysis of field experiments comparing LNOx efficiency of mid-
latitude and tropical thunderstorms.
DE: 0320 Cloud physics and chemistry
DE: 0322 Constituent sources and sinks
DE: 0365 Troposphere: composition and chemistry
DE: 1600 GLOBAL CHANGE
DE: 3304 Atmospheric electricity
SC: Atmospheric Sciences [A]
MN: 2007 Fall Meeting