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Titlebook: Clean Ironmaking and Steelmaking Processes; Efficient Technologi Pasquale Cavaliere Book 2019 Springer Nature Switzerland AG 2019 Ironmakin

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,Erwachsenenpädagogische Interventionen, reduce the emissions levels is largely described in the present chapter. Various solutions for the off-gases treatment such as top gas recovery turbines are shown. Hot stove control and heat recuperation systems are analyzed. Improved recovery of BF gases and NG injection are compared to traditiona
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Resilienz komplexer Regionalsystemeheating, and other process efficiency measures. Other dangerous emissions are due to inorganic compounds such as iron oxide dusts and heavy metal and to organic compounds such as PCB and PCDD/Fs. The current trend towards increased addition of fuel and oxygen has resulted in chemical energy sources
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,Die Evolutionäre Wirtschaftsgeographie,hnologies and cyclones are used for fine ore input. Coal gasification is allowed through a reaction with oxygen and iron ore in a liquid state. The heat is used to smelt iron, and the hot gas is transported to the pre-reduction unit to reduce the iron oxides that enter the process. In the present ch
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https://doi.org/10.1007/978-3-658-34150-3urce, which has to be converted by gas reforming technology to reducing gases (CO and H.) for the reduction of iron oxide to metallic iron. In the present chapter, the different plant layouts are described. The effect of raw materials properties on the sponge iron quality is underlined. The installa
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https://doi.org/10.1007/978-3-658-34150-3ron and steel production. CCS is one of the most open fields for the reduction of greenhouse emissions in primary steelmaking. It is necessary for continuing to use fossil fuels. In the iron and steel industry, CCS faces many uncertainties regarding cost, efficiency, and technology choice. Obviously
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