How Important is Organic Aerosol Hygroscopicity to Aerosol Indirect Forcing?
نویسندگان
چکیده
Organics are among the most abundant aerosol components in the atmosphere. However, there are still large uncertainties with emissions of primary organic aerosol (POA) and volatile organic compounds (VOCs) (precursor gases of secondary organic aerosol, SOA), formation of SOA, and chemical and physical properties (e.g., hygroscopicity) of POA and SOA. All these may have significant impacts on aerosol direct and indirect forcing estimated from global models. In this study a modal aerosol module (MAM) in the NCAR community atmospheric model (CAM) is used to examine sensitivities of aerosol indirect forcing to hygroscopicity (represented by a single parameter ‘κ’) of POA and SOA. Our model simulation indicates that in the present-day (PD) condition changing the ‘κ’ value of POA from 0 to 0.1 increases the number concentration of cloud condensational nuclei (CCN) at supersaturation S = 0.1% by 40–80% over the POA source regions, while changing the ‘κ’ value of SOA by ±50% (from 0.14 to 0.07 and 0.21) changes the CCN concentration within 40%. There are disproportionally larger changes in CCN concentration in the pre-industrial (PI) condition. Due to the stronger impact of organics hygroscopicity on CCN and cloud droplet number concentration at PI condition, global annual mean anthropogenic aerosol indirect forcing (AIF) between PD and PI conditions reduces with the increase of the hygroscopicity of organics. Global annual mean AIF varies by 0.4 W m−2 in the sensitivity runs with the control run of −1.3 W m−2, highlighting the need for improved understanding of organics hygroscopicity and its representation in global models.
منابع مشابه
Toward a Minimal Representation of Aerosols in Climate Models: Comparative Decomposition of Aerosol Direct, Semidirect, and Indirect Radiative Forcing
The authors have decomposed the anthropogenic aerosol radiative forcing into direct contributions from each aerosol species to the planetary energy balance through absorption and scattering of solar radiation, indirect effects of anthropogenic aerosol on solar and infrared radiation through droplet and crystal nucleation on aerosol, and semidirect effects through the influence of solar absorpti...
متن کاملEffects of aerosol organics on cloud condensation nucleus (CCN) concentration and first indirect aerosol effect
Aerosol microphysics, chemical composition, and CCN properties were measured on the Department of Energy Gulfstream-1 aircraft during the Marine Stratus/Stratocumulus Experiment (MASE) conducted over the coastal waters between Point Reyes National Seashore and Monterey Bay, California, in July 2005. Aerosols measured during MASE included free tropospheric aerosols, marine boundary layer aerosol...
متن کاملInteractive comment on “Understanding the contributions of aerosol properties and parameterization discrepancies to droplet number variability in a Global Climate Model” by R. Morales Betancourt and A. Nenes
This paper attempts to disentangle the role of various aerosol properties (aitken, accumulation and coarse mode number, size and hygroscopicity) in the anthropogenic change in droplet number concentrations. The sensitivity of droplet concentration to aerosol properties is central to estimates of the indirect aerosol effect (IAE), which is arguably the single most uncertain forcing of modern cli...
متن کاملThe sensitivity of Secondary Organic Aerosol component partitioning to the predictions of component properties – Part 2: Determination of particle hygroscopicity and its dependence on “apparent” volatility
A large number of calculations of absorptive partitioning of organic compounds have been conducted, making use of several methods to estimate pure component vapour pressures and activity coefficients (p0 and γi). The sensitivities of the predicted particle properties (density, hygroscopicity, CCN activation potential) to the choice of p0 and γi models and to the number of components used to rep...
متن کاملThe Impact of Aerosol Particle Mixing State on the Hygroscopicity of Sea Spray Aerosol.
Aerosol particles influence global climate by determining cloud droplet number concentrations, brightness, and lifetime. Primary aerosol particles, such as those produced from breaking waves in the ocean, display large particle-particle variability in chemical composition, morphology, and physical phase state, all of which affect the ability of individual particles to accommodate water and grow...
متن کامل