Structurally improved, urea-templated, K2CO3-based sorbent pellets for CO2 capture

被引:35
|
作者
Wang, Peng [1 ]
Sun, Jian [1 ]
Guo, Yafei [1 ]
Zhao, Chuanwen [1 ]
Li, Weiling [1 ]
Wang, Guodong [1 ]
Lei, Su [1 ]
Lu, Ping [1 ]
机构
[1] Nanjing Normal Univ, Sch Energy & Mech Engn, Engn Lab Energy Syst Proc Convers & Emiss Control, Nanjing 210042, Jiangsu, Peoples R China
基金
美国国家科学基金会;
关键词
Pelletization; K2CO3-based sorbents; CO2; capture; Extrusion-spheronization; Pore-forming; CAO-BASED PELLETS; POTASSIUM-BASED SORBENT; CARBIDE SLAG PELLETS; FLUE-GAS; PERFORMANCE; BEHAVIOR; K2CO3/AL2O3; CARBONATION; BED; ENHANCEMENT;
D O I
10.1016/j.cej.2019.05.091
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The development of K2CO3-based sorbents with desirable CO2 capture capacity and mechanical property is highly necessary for its large-scale application. In this work, a range of extruded-spheronized K2CO3-based pellets containing different K2CO3 loading (30-70 wt%) and Al2O3-based supports (i.e., activated alumina, Bayer aluminum hydroxide, kaolinite clay and calcium aluminate cement) were prepared for CO2 capture. It is found that the distinct textural properties of different supports result in the obvious diversities in CO2 uptake and mechanical property of K2CO3-based pellets. The activated alumina-supported sorbent pellets loaded with 50 wt % of K2CO3 possess the highest CO2 adsorption capacity of 2.29 mmol/g. It is mainly attributed to the moderate amounts of active component contributing to good textural properties and abundant CO2-philic sites, whereas excessive K2CO3 loading will cause the destruction of porous structure, consequently the inferior CO2 uptake. Moreover, the addition of 15 wt% of urea can furher enhace CO2 uptake of the activated alumina-supported sorbent pellets loaded with 50 wt% of K2CO3, similar to 3.10 mmol CO2/g. The improved CO2 uptake is due to the significantly enhanced porosity of sorbent pellets as a result of urea decomposition. In addition, the urea-templated sorbent pellets still maintain the high compressive strength (18.96 MPa) and good attrition resistance (a weight loss of 0.59% after 4000 rotations).
引用
收藏
页码:20 / 28
页数:9
相关论文
共 50 条
  • [31] Preparation of corncob-templated carbide slag sorbent pellets by agar method for CO2 capture: One-step synthesis and cyclic performance
    Chen, Weilong
    Tang, Yuting
    Tang, Jiehong
    Liu, Hongyu
    Deng, Jingmin
    Sun, Ziwei
    Ma, Xiaoqian
    SEPARATION AND PURIFICATION TECHNOLOGY, 2025, 353
  • [32] Effect of the presence of HCl on cyclic CO2 capture of calcium-based sorbent in calcium looping process
    Wang, Wenjing
    Li, Yingjie
    Xie, Xin
    Sun, Rongyue
    APPLIED ENERGY, 2014, 125 : 246 - 253
  • [33] Investigation of Y2O3/MgO-modified extrusion-spheronized CaO-based pellets for high-temperature CO2 capture
    Pi, Shuai
    Zhang, Zonghao
    He, Donglin
    Qin, Changlei
    Ran, Jingyu
    ASIA-PACIFIC JOURNAL OF CHEMICAL ENGINEERING, 2019, 14 (06)
  • [34] Core-shell structured CaO-based pellets with enhanced cyclic CO2 capture performance
    Ma, Kaiwen
    Sun, Jian
    Kong, Pengjie
    Sun, Rongyue
    Li, Keke
    Zhou, Zijian
    Zhao, Chuanwen
    JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 2024, 12 (03):
  • [35] Study on the failure mechanism of potassium-based sorbent for CO2 capture and the improving measure
    Wu, Ye
    Chen, Xiaoping
    Zhao, Chuanwen
    INTERNATIONAL JOURNAL OF GREENHOUSE GAS CONTROL, 2011, 5 (05) : 1184 - 1189
  • [36] Study on the arrangement of CO2 sorbent and catalyst for integrated CO2 capture and methanation
    Lv, Zongze
    Han, Junqiang
    Deng, Tao
    Gao, Chang
    Li, Jianan
    Qin, Changlei
    SEPARATION AND PURIFICATION TECHNOLOGY, 2025, 355
  • [37] Development of amine modified K2CO3/Al2O3 solid sorbent with exhaustion indicator for direct air capture of CO2
    Nokpho, Pacharapol
    Piemjaiswang, Ratchanon
    Sema, Teerawat
    Piumsomboon, Pornpote
    Chalermsinsuwan, Benjapon
    ENERGY REPORTS, 2022, 8 : 134 - 140
  • [38] Preparation of nano-Al2O3 support CaO-based sorbent pellets by novel methods for high-temperature CO2 capture
    Chen, Weilong
    Tang, Yuting
    Liu, Hongyu
    Tang, Jiehong
    Deng, Jingmin
    Sun, Ziwei
    Ma, Xiaoqian
    JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 2024, 12 (06):
  • [39] Understanding the effect of H2S on the capture of CO2 using K-doped Li4SiO4 sorbent
    Ma, Long
    Chen, Shuzhen
    Qin, Changlei
    Chen, Susu
    Yuan, Weiyang
    Zhou, Xu
    Ran, Jingyu
    FUEL, 2021, 283 (283)
  • [40] Investigation of Pore-Formers to Modify Extrusion-Spheronized CaO-Based Pellets for CO2 Capture
    Zhang, Zonghao
    Pi, Shuai
    He, Donglin
    Qin, Changlei
    Ran, Jingyu
    PROCESSES, 2019, 7 (02):