1 |
李新春, 孙永斌. 二氧化碳捕集现状和展望[J]. 能源技术经济, 2010, 22(4):21-26.
|
|
LI X C, SUN Y B. Current status and prospects of carbon dioxide capture[J]. Energy Technology Economy, 2010, 22(4):21-26.
|
2 |
LI H W, TANG Z G, XING X, et al. Study of CO2 capture by seawater and its reinforcement[J]. Energy, 2018, 164: 1135-1144.
|
3 |
DU N Y, PARK H B, DALCIN M M, et al. Advances in high permeability polymeric membrane materials for CO2 separations[J]. Energy & Environmental Science, 2012, 5(6): 7306-7322.
|
4 |
QI G G, WANG Y B, ESTEVEZ L, et al. High efficiency nanocomposite sorbents for CO2 capture based on amine-functionalized mesoporous capsules[J]. Energy & Environmental Science, 2011, 4(2): 444-452.
|
5 |
陆诗建, 杨向平, 李清方,等. 烟道气二氧化碳分离回收技术进展[J]. 应用化工, 2009, 38(8):1207-1209.
|
|
LU S J, YANG X P, LI Q F, et al. Progress in flue gas carbon dioxide separation and recovery technology[J]. Applied Chemical, 2009, 38(8):1207-1209.
|
6 |
郭燕. 功能化离子液体捕集CO2的研究[D]. 杭州: 浙江大学, 2013.
|
|
GUO Y. Study on CO2 capture by functionalized ionic liquid[D]. Hangzhou: Zhejiang University, 2013.
|
7 |
XUE Z M, ZHANG Z F, HAN J, et al. Carbon dioxide capture by a dual amino ionic liquid with amino-functionalized imidazoliumcation and taurine anion[J]. International Journal of Greenhouse Gas Control, 2011, 5(4): 628-633.
|
8 |
BATES E D, MAYTON R D, NTAI I, et al. CO2 capture by a task-specific ionic liquid[J]. Journal of the American Chemical Society, 2002, 124(6): 926-927.
|
9 |
GOUEDARD C, PICQ D, LAUNAY F, et al. Amine degradation in CO2 capture. I. A review[J]. International Journal of Greenhouse Gas Control, 2012, 10: 244-270.
|
10 |
BERT M, OGUNLADE D, HELEEN D C, et al. IPCC special report on carbon dioxide capture and storage[M]. Montreal, USA: Economics & Politics of Climate Change, 2005: 181-190.
|
11 |
YANG H, XU Z, FAN M, et al. Progress in carbon dioxide separation and capture: a review[J]. Journal of Environmental Sciences, 2008, 20(1): 14-27.
|
12 |
TAN J, SHAO H, XU J, et al. Mixture absorption system of monoethanolamine-triethylene glycol for CO2 capture[J]. Industrial & Engineering Chemistry Research, 2011, 50(7): 3966-3976.
|
13 |
OEXMANN J, KATHER A. Minimising the regeneration heat duty of post-combustion CO2 capture by wet chemical absorption: the misguided focus on low heat of absorption solvents[J]. International Journal of Greenhouse Gas Control, 2010, 4(1): 36-43.
|
14 |
CHAKMA A. An energy efficient mixed solvent for the separation of CO2[J]. Energy Conversion and Management, 1995, 36(6/7/8/9): 427-430.
|
15 |
李小飞, 王淑娟, 陈昌和. MEA捕集CO2系统解吸能耗的实验研究[C]//中国工程热物理学会. 2012.
|
|
LI X F, WANG S J, CHEN C H. Experimental study on MEA capture CO2 system desorption energy consumption[C]//China Society of Engineering Thermophysics, 2012.
|
16 |
BARZAGLI F, MANI F, PERUZZINI M. Efficient CO2 absorption and low temperature desorption with non-aqueous solvents based on 2-amino-2-methyl-1-propanol (AMP)[J]. International Journal of Greenhouse Gas Control, 2013, 16:217-223.
|
17 |
LI J, YOU C, CHEN L, et al. Dynamics of CO2 absorption and desorption processes in alkanolamine with cosolvent polyethylene glycol[J]. Atmospheric Chemistry & Physics Discussions, 2012, 14(1):953-984.
|
18 |
陈思铭. 基于乙基乙醇胺的非水溶液法捕集二氧化碳[D].大连:大连理工大学,2018.
|
|
CHEN S M. Non-aqueous solution capture of carbon dioxide based on ethylethanolamine[D]. Dalian: Dalian University of Technology, 2018.
|
19 |
张永春, 陈思铭, 陈绍云, 等. 一种用于捕集混合气体中二氧化碳的非水脱碳溶液及其应用: CN201410777169.8[P]. 2015-04-08.
|
|
ZHANG Y C, CHEN S M, CHEN S Y, et al. Non-aqueous decarbonization solution for capturing carbon dioxide in mixed gas and it’s application: CN201410777169.8[P]. 2015-04-08.
|
20 |
陆诗建, 耿春香, 赵东亚, 等. 基于AEEA的二元复合胺试剂吸收CO2降解性能研究[J]. 高校化学工程学报, 2017(6):1442-1451.
|
|
LU S J, GENG C X, ZHAO D Y, et al. Study on CO2 degradation performance of binary complex amine reagents based on AEEA[J]. Journal of Chemical Engineering of Chinese Universities, 2017(6):1442-1451.
|
21 |
VEGA F, CANO M, SANNA A, et al. Oxidative degradation of a novel AMP/AEP blend designed for CO2, capture based on partial oxy-combustion technology[J]. Chemical Engineering Journal, 2018, 350:883-892.
|
22 |
王俊谕, 程晓婷, 孙晓丹, 等. 锅炉除氧剂的研究与进展[J]. 广州化工, 2016(5): 14-15.
|
|
WANG J U,CHENG X T,SUN X D,et al. Research and development of boiler oxygen scavenger[J]. Guangzhou Chemical Industry, 2016(5): 14-15.
|
23 |
赵小军, 苗维新. 新型锅炉给水除氧剂的种类及特点[J]. 天津化工, 1995(4): 19.
|
|
ZHAO X J,MIAO W X. Types and characteristics of new boiler feed water oxygen scavenger[J]. Tianjin Chemical Industry, 1995(4): 19.
|
24 |
柴欢欢. 羟乙基乙二胺溶液捕集CO2过程中的降解及再生[D].大连: 大连理工大学, 2016.
|
|
CHAI H H. Degradation and regeneration in the process of CO2 capture by hydroxyethyl ethylenediamine solution[D]. Dalian: Dalian University of Technology, 2016.
|