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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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978-3-030-21211-7Springer Nature Switzerland AG 2019
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Book 2019ng industries. Ironmaking and steelmaking are some of the largest emitters of carbon dioxide (over 2Gt per year) and have some of the highest energy demand (25 EJ per year) among all industries; to help mitigate this problem, the book examines how changes can be made in energy efficiency, including
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s.Examines the energy saving and emissions abatement efficie.​This book describes the available technologies that can be employed to reduce energy consumption and greenhouse emissions in the steel- and ironmaking industries. Ironmaking and steelmaking are some of the largest emitters of carbon dioxi
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Clean Ironmaking and Steelmaking Processes: Efficient Technologies for Greenhouse Emissions Abatemeery remarkable effect on global warming. To face these problems, energy-efficient new ironmaking technologies must be employed and developed. Meeting the targets will require rapid and comprehensive implementation of mitigation technologies and measures that are commercially available today and emer
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Coke Making: Most Efficient Technologies for Greenhouse Emissions Abatement, agent for the iron oxides increasing temperature through its thermal energy. Coke making is responsible for the 10% of the energy consumption of the integrated ironmaking route; it is a material-intensive process, and it consumes enormous volumes of water. Water is considered as fundamental in the
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Sintering: Most Efficient Technologies for Greenhouse Emissions Abatement,in the blast furnace. Achieving an adequate sintered product depends on the adequate raw materials supply and the previous stage to the sintering process, granulation. The air emissions comprise of various pollutants such as dust, SO., NOx, CO, organochlorine compounds, heavy metals, etc. Atmospheri
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