Conceptual design of the steel industry in 2050 considering collaboration with local communities

Author:

Kishimoto Akira,McLellan Benjamin C.,Tezuka Tetsuo

Publisher

Elsevier BV

Subject

Energy Engineering and Power Technology,Fuel Technology,Nuclear Energy and Engineering,Renewable Energy, Sustainability and the Environment

Reference29 articles.

1. Ministry of the Environment Government of Japan. Greenhouse gas emissions (confirmed value) for FY2018. http://www.env.go.jp/earth/ondanka/ghg-mrv/emissions/results-h30.html [Accessed: 15-June-2021] (in Japanese).

2. World steel association. World Steel in Figures, https://www.worldsteel.org/en/dam/jcr:976723ed-74b3-47b4-92f6-81b6a452b86e/World%2520Steel%2520in%2520Figures%25202021.pdf [Accessed: 15-June-2021].

3. Exergy loss minimization for a blast furnace with comparative analyses for energy flows and exergy flows;Liu;Energy,2015

4. Optimization of energy use with CO2 emission reducing in an integrated iron and steel plant;Zhang;Appl Therm Eng,2019

5. Integrated assessment of exergy, energy and carbon dioxide emissions in an iron and steel industrial network;Wu;Appl Energy,2016

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