Low Carbon Economy

Low Carbon Economy

ISSN Print: 2158-7000
ISSN Online: 2158-7019
www.scirp.org/journal/lce
E-mail: lce@scirp.org
"Combining Steel and Chemical Production to Reduce CO2 Emissions"
written by Jouko Arvola, Janne Harkonen, Matti Mottonen, Harri Haapasalo, Pekka Tervonen,
published by Low Carbon Economy, Vol.2 No.3, 2011
has been cited by the following article(s):
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[1] Upcycling the carbon emissions from the steel industry into chemicals using three metal oxide loops
Energy …, 2022
[2] Integrated Process Design and Life Cycle Assessment of Carbon Monoxide Provision from Basic Oxygen Furnace Gas
Chemie Ingenieur …, 2022
[3] Evaluation of Source Emissions Dispersion Potential Near a Coastal Village of Maharashtra, India.
Nature Environment & …, 2022
[4] Industrial symbiosis profiles in energy-intensive industries: Sectoral insights from open databases
2021
[5] The Influence of Nitrogen on Catalytic Methanation
2021
[6] Design and Implementation of a Gas Generating System for Complex Gas Mixtures and Calibration Gases
2020
[7] Using Waste Carbon Feedstocks to Produce Chemicals
2020
[8] Ecologic Potential for Flexible Methanol Production from Steel Mill Off‐gases
2020
[9] Development and techno-economic study of methanol production from coke-oven gas blended with Linz Donawitz gas
2020
[10] Synthesis of multi-metallic catalysts applied in higher alcohol synthesis from syngas
2019
[11] Treatment of Industrial Effluents: Case Studies
2019
[12] Modeling the Catalytic Conversion of Steel Mill Gases Using the Example of Methanol Synthesis
Chemie Ingenieur Technik, 2018
[13] Steel Gases as Ancient and Modern Challenging Resource; Historical Review, Description of the Present, and a Daring Vision
Chemie Ingenieur Technik, 2018
[14] Techniques to Remove Traces of Oxygen by Catalytic Conversion from Gas Mixtures
Chemie Ingenieur Technik, 2018
[15] Coupled Production of Steel and Chemicals
Concurrency and computation: practice and experience, 2018
[16] A review of thermochemical processes and technologies to use steelworks off-gases
Renewable and Sustainable Energy Reviews, 2017
[17] Potential of commodity chemicals to become bio‐based according to maximum yields and petrochemical prices
Biofuels, Bioproducts and Biorefining, 2017
[18] A review of gas separation technologies within emission reduction programs in the iron and steel sector: Current application and development perspectives
Separation and Purification Technology, 2017
[19] Bioeconomy potential-focus on Northern Finland
International Journal of Sustainable Economy, 2015
[20] Susteinable steelmaking by process integration
2014
[21] Sustainable Steelmaking by Process Integration
2014
[22] Utilization of Coke Oven Gas and Converter Gas in the Direct Reduction of Lump Iron Ore
Metallurgical and Materials Transactions B, 2014
[23] REDUCING INDUSTRIAL USE OF FOSSIL RAW MATERIALS
Acta Univ. Oul. C 411, 2011
[24] CASE WATCH 13: CO VALORISATION FROM STEEL
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