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Titlebook: Global Atmospheric Chemical Change; C. N. Hewitt,W. T. Sturges Book 1993 Elsevier Science Publishers Ltd. 1993 air pollution.atmosphere.cl

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发表于 2025-3-21 18:56:58 | 显示全部楼层 |阅读模式
书目名称Global Atmospheric Chemical Change
编辑C. N. Hewitt,W. T. Sturges
视频video
图书封面Titlebook: Global Atmospheric Chemical Change;  C. N. Hewitt,W. T. Sturges Book 1993 Elsevier Science Publishers Ltd. 1993 air pollution.atmosphere.cl
描述Air pollution has historically been viewed as a local or regional scale problem with attention focused on acute episodes such as the sulphur dioxide and smoke smogs of London in the 1950s and 1960s and the photochemical smogs of southern California first recognized by Haagen­ Smit in the early 1950s. In recent years, however, it has become apparent that human activity has, and still is, changing the chemical composition of the atmosphere on a global scale. The composition of the atmosphere has seen enormous changes due to natural processes since the formation of the planet. Data obtained from air bubbles trapped in polar ice are beginning to reveal information about these changes over the last tens of thousands of years and geochemical models of the evolution of the Earth give us insights into the changes over much longer periods of time. Perhaps the crucial differences between these natural changes and those now being induced by man are their rel­ ative rates of change. The magnitude of present day fluxes of some com­ pounds released as air pollutants is in some cases much larger than those arising naturally. In other cases, for example carbon dioxide, the an­ thropogenic emission
出版日期Book 1993
关键词air pollution; atmosphere; climate; climate change; ecosystem; environment; ozone; pollution; ecotoxicology;
版次1
doihttps://doi.org/10.1007/978-94-011-1864-4
isbn_ebook978-94-011-1864-4
copyrightElsevier Science Publishers Ltd. 1993
The information of publication is updating

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Global Climate Change due to Radiatively Active Gases,ve shown that chemical interactions in the atmosphere can lead to additional ‘indirect’ effects on climate. As an example, changes in stratospheric ozone have received much attention because of concerns about ultraviolet radiation, but ozone is also — greenhouse gas, and changes in its distribution can affect climate.
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dioxide and smoke smogs of London in the 1950s and 1960s and the photochemical smogs of southern California first recognized by Haagen­ Smit in the early 1950s. In recent years, however, it has become apparent that human activity has, and still is, changing the chemical composition of the atmospher
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Interface Analysis and Specification,wo years later Elster and Geitel. showed that — negatively charged wire exposed in the atmosphere became radioactive. The same authors. showed that soils and rocks are sources of radon and thoron, radioactive gases which will produce radioactive decay products in the atmosphere (see also Section 9.2.1).
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https://doi.org/10.1007/978-1-4899-6749-7 on the continents to the most remote areas over the ocean, from ground level to the upper levels of the troposphere and into the stratosphere. Results of these studies over the last few decades have been illuminating and even surprising, and in some ways they have shaped the direction of atmospheric chemical research. For example, the
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Natural and Anthropogenic Organic Compounds in the Global Atmosphere, on the continents to the most remote areas over the ocean, from ground level to the upper levels of the troposphere and into the stratosphere. Results of these studies over the last few decades have been illuminating and even surprising, and in some ways they have shaped the direction of atmospheric chemical research. For example, the
发表于 2025-3-23 07:25:11 | 显示全部楼层
Political and Legislative Control of Global Air Pollution,ion of air pollution, with an emphasis on control of global or transnational pollution. The discussion is not intended to be comprehensive, but to illuminate agreements and laws which together represent important steps in our thinking about the global atmosphere, beginning with the air where we live.
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