1 |
向勇, 原玉, 周佩, 等. 碳捕集利用与封存中的金属腐蚀问题研究:进展与挑战[J]. 中国工程科学, 2023, 25(3): 197-208.
|
|
XIANG Yong, YUAN Yu, ZHOU Pei, et al. Metal corrosion in carbon capture, utilization, and storage: Progress and challenges[J]. Strategic Study of CAE, 2023, 25(3): 197-208.
|
2 |
张志炳, 田洪舟, 张锋, 等. 多相反应体系的微界面强化简述[J]. 化工学报, 2018, 69(1): 44-49.
|
|
ZHANG Zhibing, TIAN Hongzhou, ZHANG Feng, et al. Overview of microinterface intensification in multiphase reaction systems[J]. CIESC Journal, 2018, 69(1): 44-49.
|
3 |
张志炳, 田洪舟, 王丹亮, 等. 气液反应体系相界面传质强化研究[J]. 化学工程, 2016, 44(3): 1-8.
|
|
ZHANG Zhibing, TIAN Hongzhou, WANG Danliang, et al. Intensification of interfacial mass transfer in gas-liquid reaction systems[J]. Chemical Engineering (China), 2016, 44(3): 1-8.
|
4 |
汪小伏, 于志家, 何仁. 喷射式气-液反应器的型式及应用[J]. 化学工业与工程技术, 2002, 23(2): 36-39, 0.
|
|
WANG Xiaofu, YU Zhijia, HE Ren. Style and application of jet gas-liquid reactors[J]. Journal of Chemical Industry & Engineering, 2002, 23(2): 36-39, 0.
|
5 |
钟秦, 黄俊, 王婷茹, 等. 喷射鼓泡烟气脱硫(Ⅰ)——化学吸收工艺的研究[J]. 南京理工大学学报, 1997, 21(5): 419-422.
|
|
ZHONG Qin, HUANG Jun, WANG Tingru, et al. Jet bubbling flue gas desulfurization (Ⅰ)—A study of chemical absorption technology[J]. Journal of Nanjing University of Science and Technology, 1997, 21(5): 419-422.
|
6 |
王娟, 钟秦. 喷射鼓泡反应器湿法烟气脱硫的研究[J]. 重庆环境科学, 2000(3): 32-34.
|
|
WANG Juan, ZHONG Qin. Study of wet flue gas desulfurization for a jet bubbling reactor[J]. Chongqing Environmental Science, 2000(3): 32-34.
|
7 |
王娟, 钟秦. 喷射鼓泡反应器湿法烟气脱硫模型[J]. 南京理工大学学报, 2000, 24(4): 364-368.
|
|
WANG Juan, ZHONG Qin. Model of wet flue gas desulfurization for a jet bubbling reactor[J]. Journal of Nanjing University of Science and Technology, 2000, 24(4): 364-368.
|
8 |
朱晓帆. 软锰矿烟气脱硫研究[D]. 成都: 四川大学, 2002.
|
|
ZHU Xiaofan. Study on flue gas desulfurization with pyrolusite pulp[D]. Chengdu: Sichuan University, 2002.
|
9 |
郭翠香, 朱晓帆, 蒋文举, 等. 软锰矿烟气脱硫资源化工艺研究[J]. 四川环境, 2002, 21(1): 27-31.
|
|
GUO Cuixiang, ZHU Xiaofan, JIANG Wenju, et al. Study on the technology of flue gas desulfurization by pyrolusite[J]. Sichuan Environment, 2002, 21(1): 27-31.
|
10 |
朱晓帆, 刘若冰, 蒋文举, 等. 喷射鼓泡反应器在软锰矿烟气脱硫中的应用[J]. 环境工程, 2003, 21(1): 47-49.
|
|
ZHU Xiaofan, LIU Ruobing, JIANG Wenju, et al. Application of jet bubbling reactor to flue gas desulfuration by pyrolusite pulp[J]. Environmental Engineering, 2003, 21(1): 47-49.
|
11 |
孙世利, 朱晓帆, 苏仕军, 等. 用喷射鼓泡反应器进行烟气脱硫[J]. 化工环保, 2005, 25(4): 323-326.
|
|
SUN Shili, ZHU Xiaofan, SU Shijun, et al. Flue gas desulfurization(FGD) in jet bubble reactor(JBR)[J]. Environmental Protection of Chemical Industry, 2005, 25(4): 323-326.
|
12 |
KUNDU Gautam, MUKHERJEE Dibyendu, MITRA Arun K. Ejector performance in a co-current gas-liquid downflow bubble column[J]. The Canadian Journal of Chemical Engineering, 1997, 75(5): 956-963.
|
13 |
MANDAL Ajay, KUNDU Gautam, MUKHERJEE Dibyendu. Interfacial area and liquid-side volumetric mass transfer coefficient in a downflow bubble column[J]. The Canadian Journal of Chemical Engineering, 2008, 81(2): 212-219.
|
14 |
MANDAL A, KUNDU G, MUKHERJEE D. A comparative study of gas holdup, bubble size distribution and interfacial area in a downflow bubble column[J]. Chemical Engineering Research and Design, 2005, 83(4): 423-428.
|
15 |
MAJUMDER Subrata Kumar, KUNDU Gautam, MUKHERJEE Dibyendu. Bubble size distribution and gas-liquid interfacial area in a modified downflow bubble column[J]. Chemical Engineering Journal, 2006, 122(1/2): 1-10.
|
16 |
SIVAIAH Mekala, MAJUMDER Subrata Kumar. Mass transfer and mixing in an ejector-induced downflow slurry bubble column[J]. Industrial & Engineering Chemistry Research, 2013, 52(35): 12661-12671.
|
17 |
GOSHIKA Bharath Kumar, MAJUMDER Subrata Kumar. Entrainment and holdup of gas-liquid-liquid dispersion in a downflow gas-liquid-liquid contactor[J]. Chemical Engineering and Processing: Process Intensification, 2018, 125: 112-123.
|
18 |
陆诗建, 李清方, 张建. 醇胺溶液吸收二氧化碳方法及反应原理概述[J]. 科技创新导报, 2009, 6(13): 4-5, 7.
|
|
LU Shijian, LI Qingfang, ZHANG Jian. Overview of CO2 absorption with organic amines solution and reaction theory[J]. Science and Technology Innovation Herald, 2009, 6(13): 4-5, 7.
|