Physical and chemical effect of impurities in carbon capture, utilisation and storage

被引:0
作者
Ahmad Amirhilmi A. Razak
Ismail M. Saaid
Muhammad Aslam Md. Yusof
Norhafizuddin Husein
M. Fakrumie Zaidin
Khalik Mohamad Sabil
机构
[1] Universiti Teknologi PETRONAS,Department of Petroleum Engineering
[2] Universiti Teknologi Malaysia,Department of Chemical and Energy Engineering
[3] PETRONAS Research Sdn Bhd,Department of Gas Sustainability Technology
来源
Journal of Petroleum Exploration and Production Technology | 2023年 / 13卷
关键词
CCUS; Carbon capture; Carbon dioxide; CO; impurities;
D O I
暂无
中图分类号
学科分类号
摘要
Deployment of carbon capture, utilisation, and storage (CCUS) technologies to mitigate climate change and overturn CO2 emissions growth would require transformational changes comprehensively. The primary focus of this manuscript is on the impurities standards and limitation that can ensure project feasibility in the long run. There is a need in the industry for guidance on purity analysis prior to capture, shipment, and storage of carbon dioxide. This is because the cost to capture and separate the stream is proving to be very costly that can make the project to be unfeasible to operate. Following this further, this manuscript discusses the previous research and best practices that establish standards for acceptable impurities that might present in the stream and its effects towards the CCUS system. Consequently, this manuscript also provides better understanding on the impurities effects towards CCUS technology system in general. Understanding these limitations, may provide cost effective solution for CCUS problems that revolves around the impurities in CO2 stream. Impurities can affect some components of the carbon capture and storage process. It is clear that even a little number of impurities can cause the carbon dioxide stream properties to change. There are two primary factors discussed in this manuscript that affect how a CCUS system responds to a CO2 stream that contains impurities: a physical and chemical effects.
引用
收藏
页码:1235 / 1246
页数:11
相关论文
共 117 条
[1]  
Bacon DH(2009)Energy procedia reactive transport modeling of CO2 and SO2 injection into deep saline formations and their effect on the hydraulic properties of host rocks Energy Procedia 1 3283-3290
[2]  
Sass BM(2019)Subsea corrosion and scale Subsea Eng Handb 22 61-81
[3]  
Bhargava M(2018)An assessment of CCS costs, barriers and potential Energ Strat Rev 44 9233-9238
[4]  
Sminchak J(2010)Effect of impurities on the corrosion behavior of CO2 transmission pipeline steel in supercritical CO2—water environments Environ Sci Technol 2 478-484
[5]  
Gupta N(2008)Dynamis CO2 quality recommendations Int J Greenh Gas Control 114 6708-6720
[6]  
Bai Y(2017)Development of a CO 2 specification for a CCS hub network Energy Procedia 207 109160-3566
[7]  
Bai Q(2021)Journal of petroleum science and engineering experimental investigation of different simulated formation water salinity in three-phase waxy crude oil-water-gas flow in horizontal pipes J Petrol Sci Eng 88 3557-444
[8]  
Budinis S(2011)A review of physical modelling and numerical simulation of long-term geological storage of CO 2 Appl Energy 174 426-291
[9]  
Krevor S(2017)Effect of impurities on the onset and growth of gravitational instabilities in a geological CO2 storage process: linear and nonlinear analyses Chem Eng Sci 17 288-334
[10]  
Dowell NM(2017)Predicting the interactions of H2S-CO2 mixtures with aquifer rock, based on experiments and geochemical modeling Procedia Earth Planet Sci 5 326-6542