陶瓷膜接触器分离烟气中CO2的实验及数值模拟研究任务书
2020-06-25 20:50:50
1. 毕业设计(论文)的内容和要求
内容: 膜吸收技术是一种膜技术与气体吸收技术相结合的新型膜过程。
在膜吸收过程中,气、液两相分别在膜的两侧流动,因此具有操作弹性大、传质界面大且稳定,能有效避免液泛、雾沫夹带和气液接触面积不稳定等问题。
而且,膜接触器还具有结构紧凑、分离效率高、易于模型化和工业放大等优点。
2. 参考文献
[1] 屈紫懿,贾明扬.电厂烟气膜法脱除CO_2吸收剂的研究进展[J].现代工业经济和信息化,2016,6(08):32 46. [2] 李海涛.膜吸收法回收烟气CO_2传质过程研究[J].能源化工,2016,37(02):65-70. [3] 王志,龚彦文,袁力,王世昌.中空纤维膜吸收器中CO_2吸收过程模拟[J].化工学报,2003(11):1563-1568. [4] 赖春芳,杨波,张国亮,温彩哨,曹荣,吴蓉蓉.PVDF中空纤维膜吸收器捕获烟气CO_2的工艺技术[J].化工学报,2012,63(02):500-507. [5] Falk-Pedersen O, Gronvold M S, Nokleby P, Bjerve F, Svendsen H F. CO2 capture with membrane contactors. International Journal of Green Energy. 2005, 2 (2): 157-165. [6] MANSOURIZADEH A, ISMAIL A F. Hollow fiber gas-liquid membrane contactors for acid gas capture: A review [J]. Journal of Hazardous Materials, 2009, 171(1-3): 38-53. [7] SUN X Y, MENG F G, YANG F L. Application of seawater to enhance SO2 removal from simulated flue gas through hollow fiber membrane contactor [J]. Journal of Membrane Science, 2008, 312(1-2): 6-14. [8] RAJABZADEH S, YOSHIMOTO S, TERAMOTO M, et al. Effect of membrane structure on gas absorption performance and long-term stability of membrane contactors [J]. Separation And Purification Technology, 2013, 108: 65-73. [9] KOONAPHAPDEELERT S, LI K. Preparation and characterization of hydrophobic ceramic hollow fibre membrane[J]. Journal of Membrane Science, 2007, 291(1#8211;2): 70-76. [10] Zhao S, Feron P H, Deng L, Favre E, Chabanon E, Yan S, Hou J, Chen V, Qi H. Status and progress of membrane contactors in post-combustion carbon capture: A state-of-the-art review of new developments. Journal of Membrane Science. 2016, 511: 180-206.
3. 毕业设计(论文)进程安排
2018.2.20~2018.3.20 文献调研,开题报告; 2018.3.20~2018.5.21 开展实验工作; 2018.5.21~2018.5.28 实验数据查漏补缺;2018.5.28~2018.6.10 数据整理,撰写论文。