Techno-economic assessment of a carbon capture and utilization process for the production of plaster-like construction materials

被引:9
作者
Galvez-Martos, Jose-Luis [1 ]
Elhoweris, Ammar [2 ]
Hakki, Amer [2 ]
Al-horr, Yousef [2 ]
机构
[1] IMDEA Energy, Syst Anal Unit, E-28935 Mostoles, Spain
[2] Gulf Org Res & Dev, QSTP, Tech 1,Level 2,Suite 203,POB 210162, Doha 203, Qatar
关键词
Carbon dioxide; Carbon capture and utilization; Techno-economic assessment; Nesquehonite; Carbonates; Plaster; CO2; CAPTURE; DIOXIDE; MINERALIZATION; CONCRETE; DESIGN;
D O I
10.1016/j.jcou.2019.12.017
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In the context of the decarbonisation of the building sector, this work focuses on the process economics of a carbon capture and utilization alternative for the production of a novel construction material based on magnesium carbonate trihydrate, also known as nesquehonite. This material, after a dehydration-rehydration process, can be conformed into moulds with a significant compressive strength in a very similar mechanism to plasterboard manufacturing. This paper discloses the mass and energy balance of the whole process, where the carbon dioxide is captured from flue gas using aqueous alkaline absorption, and magnesium is sourced from desalination brines. The geographical scope of the economic assessment is the Middle East, specifically Qatar, where desalination and power generation are commonly coupled, and where the huge volume of construction materials imports provide an excellent framework for the development of competitive nesquehonite-based products. In fact, although the process economics show high operating costs, the final product would be economically competitive in the Qatari market at a unit cost around USD 410 per tonne, which is achievable at large scale. The sensitivity analysis shows that both alkali source and the process performance are key aspects of process economics.
引用
收藏
页码:59 / 67
页数:9
相关论文
共 21 条
[1]  
Alhorr Y.M., 2018, ADV CIVIL ENG TECHOL, V2, P6
[2]   A review of developments in carbon dioxide storage [J].
Aminu, Mohammed D. ;
Nabavi, Seyed Ali ;
Rochelle, Christopher A. ;
Manovic, Vasilije .
APPLIED ENERGY, 2017, 208 :1389-1419
[3]  
[Anonymous], 2018, UN STAT DIV COMM TRA
[4]   Carbon capture, storage and utilisation technologies: A critical analysis and comparison of their life cycle environmental impacts [J].
Cuellar-Franca, Rosa M. ;
Azapagic, Adisa .
JOURNAL OF CO2 UTILIZATION, 2015, 9 :82-102
[5]   Using Seawater Reverse Osmosis (SWRO) desalting system for less environmental impacts in Qatar [J].
Darwish, Mohamed ;
Hassabou, Abdel Hakim ;
Shomar, Basem .
DESALINATION, 2013, 309 :113-124
[6]   Environmental assessment of aqueous alkaline absorption of carbon dioxide and its use to produce a construction material [J].
Galvez-Martos, J. L. ;
Morrison, J. ;
Jauffret, G. ;
Elsarrag, E. ;
AlHorr, Y. ;
Imbabi, M. S. ;
Glasser, F. P. .
RESOURCES CONSERVATION AND RECYCLING, 2016, 107 :129-141
[7]   Conceptual design of a CO2 capture and utilisation process based on calcium and magnesium rich brines [J].
Galvez-Martos, Jose-Luis ;
Elhoweris, Ammar ;
Morrison, Jennie ;
Al-horr, Yousef .
JOURNAL OF CO2 UTILIZATION, 2018, 27 :161-169
[8]   Production of carbonate aggregates using steel slag and carbon dioxide for carbon-negative concrete [J].
Ghouleh, Zaid ;
Guthrie, Roderick I. L. ;
Shao, Yixin .
JOURNAL OF CO2 UTILIZATION, 2017, 18 :125-138
[9]  
Gilliam R.J., 2011, Low Energy 4-cell electrochemical system with carbon dioxide gas, Patent No. [US 7,875,163 B2, 7875163]
[10]   On the thermal decomposition of nesquehonite [J].
Jauffret, G. ;
Morrison, J. ;
Glasser, F. P. .
JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2015, 122 (02) :601-609