TAILIEUCHUNG - ATMOSPHERIC AEROSOLS – REGIONAL CHARACTERISTICS – CHEMISTRY AND PHYSICS_2

Tham khảo sách 'atmospheric aerosols – regional characteristics – chemistry and physics_2', kỹ thuật - công nghệ, cơ khí - chế tạo máy phục vụ nhu cầu học tập, nghiên cứu và làm việc hiệu quả | Section 2 Aerosols Chemistry and Physics Chapter 11 The Chemistry of Dicarboxylic Acids in the Atmospheric Aerosols Mohd Zul Helmi Rozaini Additional information is available at the end of the chapter http 50127 1. Introduction Atmospheric chemistry is a branch of atmospheric science in which the chemistry of the Earth s atmosphere and that of other planets is studied. It is a multidisciplinary field of research and draws on environmental chemistry physics meteorology computer modeling oceanography geology and volcanology and other disciplines. It also deals with chemical compounds in the atmosphere their distribution origin chemical transformation into other compounds and finally their removal from the atmospheric domain. These substances may occur as gasses liquids or solid. The composition of the atmosphere is dominated by the gasses nitrogen and oxygen in proportions that have been found to be invariable in time and space at altitudes up to 100 km. All other compounds are minor ones with many of them occurring only in traces. The composition and chemistry of the atmosphere is of importance for several reasons but primarily because of the interactions between the atmosphere and living organisms. The composition of the Earth s atmosphere Figure 1 has been changed by human activity and some of these changes are harmful to human health crops and ecosystems. Examples of problems which have been addressed by atmospheric chemistry include acid rain photochemical smog and global warming. Atmospheric chemistry seeks to understand the causes of these problems and by obtaining a theoretical understanding of them allow possible solutions to be tested and the effects of changes in government policy evaluated. Observations lab measurements and modeling are the three important methodologies in atmospheric chemistry. Progress in atmospheric chemistry is often driven by the interactions between these components and they form an integrated whole. For example .

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