Recent progress and new developments in post-combustion carbon-capture technology with amine based solvents
عرض / فتح
التاريخ
2015المؤلف
Liang, Zhiwu (Henry)Rongwong, Wichitpan
Liu, Helei
Fu, Kaiyun
Gao, Hongxia
Cao, Fan
Zhang, Rui
Sema, Teerawat
Henni, Amr
Sumon, Kazi
Nath, Devjyoti
Gelowitz, Don
Srisang, Wayuta
Saiwan, Chintana
Benamor, Abdelbaki
Al-Marri, Mohammed
Shi, Huancong
Supap, Teeradet
Chan, Christine
Zhou, Qing
Abu-Zahra, Mohammad
Wilson, Malcolm
Olson, Wilfred
Idem, Raphael
Tontiwachwuthikul, Paitoon (PT)
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البيانات الوصفية
عرض كامل للتسجيلةالملخص
Currently, post-combustion carbon capture (PCC) is the only industrial CO2 capture technology that is already demonstrated at full commercial scale in the TMC Mongstad in Norway (300,000 tonnes per year CO2 captured) and BD3 SaskPower in Canada (1 million tonnes per year CO2 captured). This paper presents a comprehensive review of the most recent information available on all aspects of the PCC processes. It provides designers and operators of amine solvent-based CO2 capture plants with an in-depth understanding of the most up-to-date fundamental chemistry and physics of the CO2 absorption technologies using amine-based reactive solvents. Topics covered include chemical analysis, reaction kinetics, CO2 solubility, and innovative configurations of absorption and stripping columns as well as information on technology applications. The paper also covers in detail the post build operational issues of corrosion prevention and control, solvent management, solvent stability, solvent recycling and reclaiming, intelligent monitoring and plant control including process automation. In addition, the review discusses the most up-to-date insights related to the theoretical basis of plant operation in terms of thermodynamics, transport phenomena, chemical reaction kinetics/engineering, interfacial phenomena, and materials. The insights will assist engineers, scientists, and decision makers working in academia, industry and government, to gain a better appreciation of the post combustion carbon capture technology. 2015 Elsevier Ltd
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- الأبحاث [499 items ]