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Titlebook: Combustion and Pollution Control in Heating Systems; Victor Ian Hanby Textbook 1994 Springer-Verlag London 1994 Emission.combustion.contro

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書目名稱Combustion and Pollution Control in Heating Systems
編輯Victor Ian Hanby
視頻videohttp://file.papertrans.cn/231/230110/230110.mp4
圖書封面Titlebook: Combustion and Pollution Control in Heating Systems;  Victor Ian Hanby Textbook 1994 Springer-Verlag London 1994 Emission.combustion.contro
描述Combustion is very much an interdisciplinary topic, drawing together elements of chemistry, fluid mechanics and heat transfer. It is an ingredient in many undergraduate degree programmes, ranging from a pivotal role in fuel science through to a component part of courses in chemical, process and building services engineering. For many students in those disciplines where combustion in heating plant is an important part of their studies, there are often problems in coming to grips with the basic principles underlying the combustion of hydrocarbon fuels. In particular, the concepts of chemical and related thermodynamic changes can prove difficult to assimilate. The scientific literature dealing with combustion tends to be rather polarised, with a wealth of literature aimed at the specialist reader, but at a basic level the fundamentals of this important process are often treated rather tersely in textbooks on thermodynamics. The objective of this book is to provide an introduction to the basic principles of the combustion of hydrocarbon fuels in heating plant for buildings and industrial processes. In those chapters where practice in problem solving can make a positive contribution to
出版日期Textbook 1994
關(guān)鍵詞Emission; combustion; control; environment; heat transfer; heating plant; heating system; hydrocarbon fuels
版次1
doihttps://doi.org/10.1007/978-1-4471-2071-1
isbn_softcover978-3-540-19849-9
isbn_ebook978-1-4471-2071-1
copyrightSpringer-Verlag London 1994
The information of publication is updating

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Solid Fuels,oal and other solid fuels derived from it. Coal represents by far the largest component of the world’s fossil fuel reserves. In thermal terms 90% of the known hydrocarbon fuel deposits are formed by coal. The carbon:thydrogen ratio of coal is the highest of the fossil fuels, hence the calorific valu
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edient in many undergraduate degree programmes, ranging from a pivotal role in fuel science through to a component part of courses in chemical, process and building services engineering. For many students in those disciplines where combustion in heating plant is an important part of their studies, t
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https://doi.org/10.1007/978-3-319-64894-1he known hydrocarbon fuel deposits are formed by coal. The carbon:thydrogen ratio of coal is the highest of the fossil fuels, hence the calorific values of coals are principally determined by the carbon in the fuel. For the same reason, coal fuels produce the highest emissions of carbon dioxide.
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and the Politics of Everyday Lifeas temperature and velocity), and ensuring that the location of this outlet is such that the environmental impact of the discharge is controlled. The flue must therefore be regarded as an integral part of the combustion system, and also as a component of its local environment.
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Solid Fuels,he known hydrocarbon fuel deposits are formed by coal. The carbon:thydrogen ratio of coal is the highest of the fossil fuels, hence the calorific values of coals are principally determined by the carbon in the fuel. For the same reason, coal fuels produce the highest emissions of carbon dioxide.
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