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Titlebook: Energy Technology 2018; Carbon Dioxide Manag Ziqi Sun,Cong Wang,Huimin Lu Conference proceedings 2018 The Minerals, Metals & Materials Soci

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书目名称Energy Technology 2018
副标题Carbon Dioxide Manag
编辑Ziqi Sun,Cong Wang,Huimin Lu
视频video
概述Provides a reference for the materials scientists and engineers as well as metallurgists for exploring innovative energy technologies and novel energy materials processing..Addresses the issues, compl
丛书名称The Minerals, Metals & Materials Series
图书封面Titlebook: Energy Technology 2018; Carbon Dioxide Manag Ziqi Sun,Cong Wang,Huimin Lu Conference proceedings 2018 The Minerals, Metals & Materials Soci
描述This collection focuses on energy efficient technologies including innovative ore beneficiation, smelting technologies, recycling and waste heat recovery. The volume also covers various technological aspects of sustainable energy ecosystems, processes that improve energy efficiency, reduce thermal emissions, and reduce carbon dioxide and other greenhouse emissions. Papers addressing renewable energy resources for metals and materials production, waste heat recovery and other industrial energy efficient technologies, new concepts or devices for energy generation and conversion, energy efficiency improvement in process engineering, sustainability and life cycle assessment of energy systems, as well as the thermodynamics and modeling for sustainable metallurgical processes are included. This volume also includes topics on CO2 sequestration and reduction in greenhouse gas emissions from process engineering, sustainable technologies in extractive metallurgy, as well as the materials processing and manufacturing industries with reduced energy consumption and CO2 emission. Contributions from all areas of non-nuclear and non-traditional energy sources, such as solar, wind, and biomass are
出版日期Conference proceedings 2018
关键词Materials Science; Energy Materials; Recycling and Sustainability; Waste Heat Recovery; Energy Technolog
版次1
doihttps://doi.org/10.1007/978-3-319-72362-4
isbn_softcover978-3-319-89176-7
isbn_ebook978-3-319-72362-4Series ISSN 2367-1181 Series E-ISSN 2367-1696
issn_series 2367-1181
copyrightThe Minerals, Metals & Materials Society 2018
The information of publication is updating

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https://doi.org/10.1007/978-3-642-88274-6erature moving toward low temperature. At 600 ℃ and the S/HCOG ratio of 2.4, the H. amplification factor and concentration could reach 4.91 and 97.55% respectively when the CaO/C ratio was 2.0. Under the respective optimal reforming conditions of the two processes, the energy consumption of the SESR process was lower than that of CSR process.
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Das Paradoxon der ersten Kollision,n in different stages of the DM process and suggests pointers for improvement. An energy audit of the process is conducted and the consumption is analysed at different stages and compared with rolled lead.
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,Endliche Wahrscheinlichkeitsräume,g conditions on the exergetic efficiency of the cycle is examined, and the optimal cycle time for different blast temperatures found. In addition, a study of the combustion parameters quantifies the advantages of using enriched oxygen in the combustors.
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