The Study on Bunsen Reaction Process for Iodine-Sulfur Thermochemical Hydrogen Production

被引:0
|
作者
Kang, Young-Han [1 ]
Ryu, Jae-Chun [1 ]
Park, Chu-Sik [2 ]
Hwang, Gab-Jin [2 ]
Lee, Sang-Ho [2 ]
Bae, Ki-Kwang [2 ]
Kim, Young-Ho [1 ]
机构
[1] Chungnam Natl Univ, Dept Fine Chem Engn & Chem, E2M BK21, 220 Gung Dong, Daejeon 305764, South Korea
[2] Korea Inst Energy Res, Daejeon 305343, South Korea
来源
KOREAN CHEMICAL ENGINEERING RESEARCH | 2006年 / 44卷 / 04期
关键词
Iodine-Sulfur Cycle; Hydrogen Production; Bunsen Process; Two Liquid Phases Separation; H2O Distribution;
D O I
暂无
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
For highly efficient operation of a Bunsen process section in an iodine-sulfur thermochemical hydrogen production cycle using nuclear heat, the process characteristics of H2SO4 -HI-H2O-I-2 mixture system for separating into two liquid phases (H2SO4-rich phase and HIx-rich phase) and the distribution of H2O to each phase were investigated. The experiments for process variables were carried out in the temperature range, from 298 to 353 K, and in the H2SO4/HI/H2O/I-2, molar ratio of 1/2/14 similar to 20/0.5 similar to 8.0. As the results, for the SO2-I-2 -H2O Bunsen reaction system, the ranges between the starting point and the saturation point for two liquid phases separation were determined by calculation. The best result for the minimization of impurities (HI and I-2 in H2SO4 phase and H2SO4 in HIx phase) in each phase was obtained in an optimum condition with the highest temperature of 353 K and the highest I-2 molar composition. In this condition, the HI/H2SO4 molar ratio in the H2SO4 -rich phase and the H2SO4/HIx molar ratio in the HIx-rich phase were 0.024 and 0.028, respectively. For the distribution of H2O to each phase, it is appeared that the affinity between HI, and H2O was more superior to that between H2SO4 and H2O. The affinity between HIx and H2O was decreased with increasing temperature but increased with increasing I-2 molar composition.
引用
收藏
页码:410 / 416
页数:7
相关论文
共 50 条
  • [1] Development of Ion-Exchange Membranes for the Membrane Bunsen Reaction in Thermochemical Hydrogen Production by Iodine-Sulfur Process
    Nomura, Mikihiro
    Kodaira, Takehide
    Ikeda, Ayumi
    Naka, Yasuhito
    Nishijima, Haruyuki
    Imabayashi, Shin-ichiro
    Sawada, Shin-ichi
    Yamaki, Tetsuya
    Tanaka, Nobuyuki
    Kubo, Shinji
    [J]. JOURNAL OF CHEMICAL ENGINEERING OF JAPAN, 2018, 51 (09) : 726 - 731
  • [2] Experimental study on side-reaction occurrence condition in the iodine-sulfur thermochemical hydrogen production process
    Sakurai, M
    Nakajima, H
    Amir, R
    Onuki, K
    Shimizu, S
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2000, 25 (07) : 613 - 619
  • [3] Experimental study on the purification of HIx phase in the iodine-sulfur thermochemical hydrogen production process
    Bai, Shangkui
    Wang, Laijun
    Han, Qi
    Zhang, Ping
    Chen, Songzhe
    Meng, Xianghai
    Xu, Jingming
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2013, 38 (01) : 29 - 35
  • [4] Role of operating conditions on cross contamination of products of the Bunsen reaction in iodine-sulfur process for production of hydrogen
    Ahmed, V. Nafees
    Rao, A. Shriniwas
    Sujeesh, S.
    Fani, H. Z.
    Sanyal, A.
    Mukhopadhyay, S.
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2017, 42 (49) : 29101 - 29106
  • [5] Apparent kinetics of the Bunsen reaction in I2/HI solution for the iodine-sulfur hydrogen production process
    Zhou, Chenglin
    Zhang, Ping
    Wang, Laijun
    Chen, Songzhe
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2017, 42 (22) : 14916 - 14925
  • [6] THE NICKEL-IODINE-SULFUR PROCESS FOR THERMOCHEMICAL HYDROGEN-PRODUCTION .4. BUNSEN REACTION
    SHIMIZU, S
    ONUKI, K
    NAKAJIMA, H
    SATO, S
    [J]. DENKI KAGAKU, 1985, 53 (02): : 114 - 118
  • [7] Phase separation characteristics of pressurized Bunsen reaction for Sulfur-Iodine thermochemical hydrogen production process
    Kim, Young-Ho
    Kim, Hyo-Sub
    Han, Sang-Jin
    Park, Chu-Sik
    Bae, Ki-Kwang
    Lee, Jong-Gyu
    [J]. ADVANCES IN CHEMICAL ENGINEERING II, PTS 1-4, 2012, 550-553 : 554 - +
  • [8] Flowsheet study of the thermochemical water-splitting iodine-sulfur process for effective hydrogen production
    Kasahara, Seiji
    Kubo, Shinji
    Hino, Ryutaro
    Onuki, Kaoru
    Nomura, Mikihiro
    Nakao, Shin-ichi
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2007, 32 (04) : 489 - 496
  • [9] Occurrence of the Bunsen side reaction in the sulfur-iodine thermochemical cycle for hydrogen production
    Qiao-qiao ZHU
    Yan-wei ZHANG
    Zhi YING
    Jun-hu ZHOU
    Zhi-hua WANG
    Ke-fa CEN
    [J]. Journal of Zhejiang University-Science A(Applied Physics & Engineering), 2013, (04) : 300 - 306
  • [10] Occurrence of the Bunsen side reaction in the sulfur-iodine thermochemical cycle for hydrogen production
    Qiao-qiao ZHU
    Yan-wei ZHANG
    Zhi YING
    Jun-hu ZHOU
    Zhi-hua WANG
    Ke-fa CEN
    [J]. Journal of Zhejiang University-Science A(Applied Physics & Engineering)., 2013, 14 (04) - 306