2019Energy ProcediaOpen access

Assessing the Economics of CO2 Capture in China’s Iron/Steel Sector: A Case Study

Xi Liang, Qianguo Lin, Hasan Muslemani, Ming Lei, Liu Qiang, Jia Li, Wu Alisa, Muxin Liu, Francisco Ascui

Open full text 39 citations

Abstract

Global crude steel production reached 1.6 billion tonnes in 2015, registering an increase of 41% from 2005 levels, half of which is produced by China alone. Amongst other low-carbon technologies, Carbon Capture and Storage (CCS) is identified as a key technology that will help achieve the much-needed emission reductions in the iron/steel sector. This paper delineates a techno-economic analysis of a hypothetical first-of-its-kind CO 2 capture and storage project with a 0.5-million tonne of CO 2 per annum capture capacity, using amine capture technology, in a generic Chinese steel plant. The technical configuration of the project was modelled using the Advanced System for Process Engineering (ASPEN) accompanied by a financial model analysis. The cost of CO 2 avoidance for the modelled project with transport and storage was estimated at CNY448/tCO 2 (USD65.2/tCO 2 ). The cost of CO 2 avoidance is sensitive to a number of assumptions, including the discount rate and the cost of CO 2 transportation and storage. There is also potential for cost reductions in transport and storage if the project were to share infrastructure with large stationary emission sources.

Open-access reader

About this research paper

What this paper is about

Global crude steel production reached 1.6 billion tonnes in 2015, registering an increase of 41% from 2005 levels, half of which is produced by China alone. Amongst other low-carbon technologies, Carbon Capture and Storage (CCS) is identified as a key technology that will help achieve the much-needed emission reductions in the iron/steel sector. This paper delineates a techno-economic analysis of a hypothetical first-of-its-kind CO 2 capture and storage project with a 0.5-million tonne of CO 2 per annum capture capacity, using amine capture technology, in a generic Chinese steel plant. The technical configuration of the project was modelled using the Advanced System for Process Engineering (ASPEN) accompanied by a financial model analysis. The cost of CO 2 avoidance for the modelled project with transport and storage was estimated at CNY448/tCO 2 (USD65.2/tCO 2 ). The cost of CO 2 avoidance is sensitive to a number of assumptions, including the discount rate and the cost of CO 2 transportation and storage. There is also potential for cost reductions in transport and storage if the project were to share infrastructure with large stationary emission sources.

Why it matters

OpenAlex reports 39 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Global crude steel production reached 1.6 billion tonnes in 2015, registering an increase of 41% from 2005 levels, half of which is produced by China alone. Amongst other low-carbon technologies, Carbon Capture and Storage (CCS) is identified as a key technology that will help achieve the much-needed emission reductions in the iron/steel sector. This paper delineates a techno-economic analysis of a hypothetical first-of-its-kind CO 2 capture and storage project with a 0.5-million tonne of CO 2 per annum capture capacity, using amine capture technology, in a generic Chinese steel plant. The technical configuration of the project was modelled using the Advanced System for Process Engineering (ASPEN) accompanied by a financial model analysis. The cost of CO 2 avoidance for the modelled project with transport and storage was estimated at CNY448/tCO 2 (USD65.2/tCO 2 ). The cost of CO 2 avoidance is sensitive to a number of assumptions, including the discount rate and the cost of CO 2 transportation and storage. There is also potential for cost reductions in transport and storage if the project were to share infrastructure with large stationary emission sources.

Key concepts: Carbon capture and storage (timeline), Tonne, China, Environmental economics, Waste management, Engineering, Natural resource economics, Environmental science

Related papers

Back to paper searchBrowse research topicsOriginal source
Assessing the Economics of CO2 Capture in China’s Iron/Steel Sector: A Case Study — Research Paper | ScholarLens