Journal ArticleDOI
A review of waste heat recovery technologies towards molten slag in steel industry
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TLDR
In this article, a review of the proposed granulation and heat recovery technologies is presented, which gives consideration to both heat recovery rate and cooled slag particles with high quality and high additional value, will be a key to achieve sustainable development for the iron and steel industry.About:
This article is published in Applied Energy.The article was published on 2013-12-01. It has received 311 citations till now. The article focuses on the topics: Waste heat recovery unit & Heat recovery ventilation.read more
Citations
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Waste Heat Recovery Technologies and Applications
Hussam Jouhara,Navid Khordehgah,Sulaiman Almahmoud,Bertrand Delpech,Amisha Chauhan,Savvas A. Tassou +5 more
TL;DR: Horizon 2020 Project “Design for Resource and Energy efficiency in CerAMic Kilns- DREAM Project (DREAM Project), Horizon 2020 Industrial THERMal energy recovery conversion and management (Grant No:680599) and ESPRC (EP/P004636/1).
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Industrial waste heat recovery technologies: An economic analysis of heat transformation technologies
TL;DR: In this paper, the potential of industrial waste heat for heating and cooling applications is investigated and the maximum acceptable investment cost for each technology is estimated and compared with the current investment cost depending on the operating hours of the system.
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Industrial waste heat: Estimation of the technically available resource in the EU per industrial sector, temperature level and country
TL;DR: In this paper, waste heat fractions derived from a detailed study of the UK industry from the period 2000-2003 have been calculated in this work for each main industrial sector and temperature level.
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A review of waste heat recovery technologies for maritime applications
Dig Vijay Singh,Eilif Pedersen +1 more
TL;DR: A review of different waste heat recovery systems has been conducted, to lay out the potential recovery efficiencies and suitability for marine applications as discussed by the authors, which helps in identifying the most suitable heat recovery technologies for maritime use depending on the properties of shipboard waste heat.
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A comprehensive review on energy efficient CO2 breakthrough technologies for sustainable green iron and steel manufacturing
TL;DR: In this paper, a comprehensive overview of the worldwide carbon reduction programs and new CO2 breakthrough technologies for energy saving and carbon capture and storage in iron and steel making processes by collating updated information from a wide range of sources is presented.
References
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An overview of utilization of slag and sludge from steel industries
TL;DR: In this paper, the characterization, beneficiation and utilization aspects of blast furnace flue dust, blast furnace sludge, LD sludge and LD slag generated at modern steel plants are analyzed.
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Energy recovery from high temperature slags
TL;DR: In this paper, three types of technologies are under development for utilizing the thermal energy of slags; recovery as hot air or steam, conversion to chemical energy as fuel, and thermoelectric power generation.
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Thermoelectric Power Generation Using Waste-Heat Energy as an Alternative Green Technology
Basel I. Ismail,Wael H. Ahmed +1 more
TL;DR: In this paper, a background on the basic concepts of thermoelectric power generation is presented and recent patents with their important and relevant applications to waste-heat energy are reviewed and discussed.
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Cost of energy saving and CO2 emissions reduction in China’s iron and steel sector
TL;DR: In this paper, the authors estimated the cost curve of energy saving and CO2 emissions reduction in China's iron and steel sector and compared the promoted technologies during the 12th five-year plan.
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Feasibility Study for Recovering Waste Heat in the Steelmaking Industry Using a Chemical Recuperator
TL;DR: In this paper, a heat recovery system from various hot wastes generated by the steelmaking industry, by utilizing the endothermic heat of reaction instead of sensible heat, was proposed, and the results showed that the exergy loss in the proposed system was only 15 % from the total exergy losses in the conventional system.