Aerosol Hygroscopic Properties

Aerosol Hygroscopic Properties
Author: Danielle El Hajj
Publisher:
Total Pages: 0
Release: 2019
Genre:
ISBN:

Aerosols play vital roles in energy balance of the Earth and also have a significant impact on human health. The last assessment report by the Intergovernmental Panel on Climate Change (IPCC), states that the uncertainty in the total radiative forcing is mainly dominated by the high uncertainty in the aerosol radiative forcing. This is mainly caused by the poorly understood and quantified aerosol effects. Indeed, high relative humidity (RH), promotes water uptake by atmospheric aerosol particles, which modifies their size, morphology and chemical composition and therefore their optical properties. In-situ measurements of aerosols properties (scattering and absorption coefficients, size distribution) are usually performed at dry conditions (RH

Hygroscopic Properties of Atmospheric Aerosols

Hygroscopic Properties of Atmospheric Aerosols
Author: Richard H. Moore
Publisher:
Total Pages: 224
Release: 2006
Genre: Aerosols
ISBN:

Examines the hygroscopic properties of increasingly complex, and thus increasingly realistic, aerosols. This was accomplished in three different experimental investigations. Initially, single-component aerosols were examined. Then, multi-component organic aerosols were characterized. Finally, ambient aerosols were collected in the field and analyzed.

Investigation of Hygroscopic and Morphological Properties of Atmospheric Aerosols

Investigation of Hygroscopic and Morphological Properties of Atmospheric Aerosols
Author: Laura B. Cook
Publisher:
Total Pages: 153
Release: 2011
Genre: Aerosols
ISBN:

Examines the hygroscopic and morphological nature of various substances through the use of an Environmental Scanning Electron Microscope (ESEM). The hygroscopic growth and changes in morphology for pure-component aerosols were studied for particles size. Hygroscopic growth was observed through changes in relative humidity (RH) and hygroscopic growth curves were created. the hygroscopic growth of multi-component aerosol mixtures was studied using Hygroscopic Tandem Differential Mobility Analysis (HTDMA) . The size distribution for an aerosol stream was determined before and after the stream was subjected to an increase in relative humidity.

Particulate Carbon

Particulate Carbon
Author: George T. Wolff
Publisher: Springer
Total Pages: 412
Release: 2012-04-06
Genre: Science
ISBN: 9781468441567

This book contains the papers and discussions from the symposium, "PARTICU LATE CARBON: Atmospheric Life Cycle," held at the General Motors Research Laboratories on October 13-14, 1980. This symposium, which focused on atmospheric particulate elemental carbon, or soot, was the twenty-fifth in this series sponsored by the General Motors Research Laboratories. The present symposium volume contains discussions of the following aspects of particulate elemental carbon (EC): the atmos pheric life cycle of EC including sources, sinks, and transport processes, the role of EC in atmospheric chemistry and optics, the possible role of EC in altering climate, and measurement techniques as well as ambient concentrations in urban, rural, and remote areas. Previous symposia have covered a wide range of scientific and engineering subjects. Topics are selected because they are new or represent rapidly changing fields and are of significant technical importance. It is ironic that the study of particulate elemental carbon or soot should meet the above criteria for selection because soot, especially from coal and wood combustion, has been a recognized air pollutant for centuries. However, since the 1950s, when intense efforts to study air pollution were initiated, to until a few years ago, the role of elemental carbon in the atmosphere was largely ignored. The major reason for this was the lack of a suitable measurement technique.

Thermodynamics, Kinetics and Microphysics of Clouds

Thermodynamics, Kinetics and Microphysics of Clouds
Author: Vitaly I. Khvorostyanov
Publisher: Cambridge University Press
Total Pages: 801
Release: 2014-08-25
Genre: Science
ISBN: 1107016037

This book advances understanding of cloud microphysics and provides a unified theoretical foundation for modeling cloud processes, for researchers and advanced students.