Wang Qian, Gong Dehong, Zhang Zhongxiao, Zhu Jiangdong, Luo Qingling
Electrical Engineering College, Guizhou University, Guiyang, 550025, China.
School of Mechanical Engineering, Shanghai Jiao Tong University, Shanghai, 200240, China.
Sci Rep. 2024 Nov 5;14(1):26759. doi: 10.1038/s41598-024-78097-9.
The high energy consumption of Carbon Capture Utilization and Storage(CCUS) promotes the research of integrated absorption and mineralization technology. A novel DEEA/AEP biphasic absorbent is used to absorb [Formula: see text]. After phase separation, only one phase enriched with the absorption product is sent into the mineralization system, then reacts with [Formula: see text] to produce [Formula: see text] at normal temperature and pressure. The effects of temperature, Ca/C and dispersion of the system were investigated, and cyclic utilization experiment was also conducted. The process was characterized and analyzed by Thermal gravimetric analysis (TGA), X-ray diffraction (XRD), and nuclear magnetic resonance (C NMR). The results showed that at 50 [Formula: see text]C, Ca/C = 1, the extent of mineralization of [Formula: see text]-enriched phase mineralization was 95.73% after ultrasonic treatment for 30 min. During 6 cycles, the volume percentage of [Formula: see text]-enriched phase could be maintained at 52-55%, and the [Formula: see text] load was 11.92mol/L. The results above indicate that the [Formula: see text]-enriched phase mineralization technology after absorption by biphasic absorbent can effectively capture [Formula: see text], realize recycling, and reduce CCUS energy consumption.
碳捕集利用与封存(CCUS)的高能耗推动了集成吸收与矿化技术的研究。一种新型的二乙氨基乙醇/氨基乙氧基乙醇双相吸收剂用于吸收[化学式:见原文]。相分离后,仅将富含吸收产物的一相送入矿化系统,然后在常温常压下与[化学式:见原文]反应生成[化学式:见原文]。研究了温度、钙碳比(Ca/C)和体系分散性的影响,并进行了循环利用实验。通过热重分析(TGA)、X射线衍射(XRD)和核磁共振(碳-1核磁共振,C NMR)对该过程进行了表征和分析。结果表明,在50[化学式:见原文]℃、Ca/C = 1时,经30分钟超声处理后,富含[化学式:见原文]相的矿化程度为95.73%。在6个循环中,富含[化学式:见原文]相的体积百分比可维持在52 - 55%,且[化学式:见原文]负载量为11.92mol/L。上述结果表明,双相吸收剂吸收后富含[化学式:见原文]相的矿化技术能够有效捕集[化学式:见原文],实现循环利用,并降低CCUS的能耗。