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Journal of Zhejiang University SCIENCE A 2013 Vol.14 No.4 P.300-306

http://doi.org/10.1631/jzus.A1200313


Occurrence of the Bunsen side reaction in the sulfur-iodine thermochemical cycle for hydrogen production*


Author(s):  Qiao-qiao Zhu, Yan-wei Zhang, Zhi Ying, Jun-hu Zhou, Zhi-hua Wang, Ke-fa Cen

Affiliation(s):  . State Key Laboratory of Clean Energy Utilization, Department of Energy Engineering, Zhejiang University, Hangzhou 310027, China

Corresponding email(s):   zhangyw@zju.edu.cn

Key Words:  Thermochemical sulfur-iodine cycle, Hydrogen production, Side reaction, Sulfur, Hydrogen sulfide


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Qiao-qiao Zhu, Yan-wei Zhang, Zhi Ying, Jun-hu Zhou, Zhi-hua Wang, Ke-fa Cen. Occurrence of the Bunsen side reaction in the sulfur-iodine thermochemical cycle for hydrogen production[J]. Journal of Zhejiang University Science A, 2013, 14(4): 300-306.

@article{title="Occurrence of the Bunsen side reaction in the sulfur-iodine thermochemical cycle for hydrogen production",
author="Qiao-qiao Zhu, Yan-wei Zhang, Zhi Ying, Jun-hu Zhou, Zhi-hua Wang, Ke-fa Cen",
journal="Journal of Zhejiang University Science A",
volume="14",
number="4",
pages="300-306",
year="2013",
publisher="Zhejiang University Press & Springer",
doi="10.1631/jzus.A1200313"
}

%0 Journal Article
%T Occurrence of the Bunsen side reaction in the sulfur-iodine thermochemical cycle for hydrogen production
%A Qiao-qiao Zhu
%A Yan-wei Zhang
%A Zhi Ying
%A Jun-hu Zhou
%A Zhi-hua Wang
%A Ke-fa Cen
%J Journal of Zhejiang University SCIENCE A
%V 14
%N 4
%P 300-306
%@ 1673-565X
%D 2013
%I Zhejiang University Press & Springer
%DOI 10.1631/jzus.A1200313

TY - JOUR
T1 - Occurrence of the Bunsen side reaction in the sulfur-iodine thermochemical cycle for hydrogen production
A1 - Qiao-qiao Zhu
A1 - Yan-wei Zhang
A1 - Zhi Ying
A1 - Jun-hu Zhou
A1 - Zhi-hua Wang
A1 - Ke-fa Cen
J0 - Journal of Zhejiang University Science A
VL - 14
IS - 4
SP - 300
EP - 306
%@ 1673-565X
Y1 - 2013
PB - Zhejiang University Press & Springer
ER -
DOI - 10.1631/jzus.A1200313


Abstract: 
This study aimed to establish a closed-cycle operation technology with high thermal efficiency in the sulfur-iodine cycle%29&ck%5B%5D=abstract&ck%5B%5D=keyword'>thermochemical sulfur-iodine cycle for large-scale hydrogen production. A series of experimental studies were performed to investigate the occurrence of side reactions in both the H2SO4 and HI x phases from the H2SO4/HI/I2/H2O quaternary system within a constant temperature range of 323–363 K. The effects of iodine content, water content and reaction temperature on the side reactions were evaluated. The results showed that an increase in the reaction temperature promoted the side reactions. However, they were prevented as the iodine or water content increased. The occurrence of side reactions was faster in kinetics and more intense in the H2SO4 phase than in the HI x phase. The sulfur or hydrogen sulfide formation reaction or the reverse Bunsen reaction was validated under certain conditions.

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References

[1] Brown, L.C., Funk, J.F., Showalter, S.K., 2000. Initial Screening of Thermochemical Water-Splitting Cycles for High Efficiency Generation of Hydrogen Fuels using Nuclear Power. GA Project 30047, :

[2] Colette-Maatouk, S., Brijou-Mokrani, N., Carles, P., 2006. Experimental Study of Bunsen Reaction in the Framework of Massive Hydrogen Production by the Sulfur-Iodine Thermochemical Cycle. , Proceedings of WHEC, Lyon, France, 13-16. :13-16. 

[3] Colette-Maatouk, S., Brijou-Mokrani, N., Tabarant, M., Fleche, J.L., Carles, P., 2009. Study of the miscibility gap in H2SO4/HI/I2/H2O mixtures produced by the Bunsen reaction—Part I: Preliminary results at 308 K. International Journal of Hydrogen Energy, 34(17):7155-7161. 


[4] Giaconia, A., Caputo, G., Ceroli, A., Diamanti, M., Barbarossa, V., Tarquini, P., Sau, S., 2007. Experimental study of two phase separation in the Bunsen section of the sulfur-iodine thermochemical cycle. International Journal of Hydrogen Energy, 32(5):531-536. 


[5] Goldstein, S., Borgard, J.M., Vitart, X., 2005. Upper bound and best estimate of the efficiency of the iodine sulphur cycle. International Journal of Hydrogen Energy, 30(6):619-626. 


[6] Hwang, G.J., Kim, Y.H., Park, C.S., 2005. Bunsen Reaction in IS (Iodine-Sulfur) Process for the Thermochemical Hydrogen Production. , Proceedings of International Hydrogen Energy Congress and Exhibition (IHEC), Istanbul, Turkey, 13-15. :13-15. 

[7] Lee, B.J., No, H.C., Yoon, H.J., Kim, S.J., Kim, E.S., 2008. An optimal operating window for the Bunsen process in the I-S thermochemical cycle. International Journal of Hydrogen Energy, 33(9):2200-2210. 


[8] Lee, D.H., Lee, K.J., Kang, Y.H., Kim, Y.H., Park, C.S., Hwang, G.J., 2006. High temperature phase separation of H2SO4-HI-H2O-I2 system in iodine-sulfur hydrogen production process. Transactions of the Korean Hydrogen and New Energy Society, 17(4):395-402. 

[9] Norman, J., Besenbruch, G., Brown, L., 1982. Thermochemical Water-Splitting Cycle, Bench-Scale Investigations, and Process Engineering, Final Report for the Period February 1977 through December 31, 1981. General Atomics Report GA-A16713, DOE Report DOE/ET/26225-1, :

[10] OKeefe, D., Allen, C., Besenbruch, G., Brown, L., Norman, J., Sharp, R., McCorkle, K., 1982. Preliminary results from bench-scale testing of a sulfur-iodine thermochemical water-splitting cycle. International Journal of Hydrogen Energy, 7(5):381-392. 


[11] Parisi, M., Giaconia, A., Sau, S., Spadoni, A., Caputo, G., Tarquini, P., 2011. Bunsen reaction and hydriodic phase purification in the sulfur-iodine process: An experimental investigation. International Journal of Hydrogen Energy, 36(3):2007-2013. 


[12] Sakurai, M., Nakajima, H., Amir, R., Onuki, K., Shimizu, S., 2000. Experimental study on side-reaction occurrence condition in the iodine-sulfur thermochemical hydrogen production process. International Journal of Hydrogen Energy, 25(7):613-619. 


[13] Sakurai, M., Nakajima, H., Onuki, K., Shimizu, S., 2000. Investigation of 2 liquid phase separation characteristics on the iodine-sulfur thermochemical hydrogen production process. International Journal of Hydrogen Energy, 25(7):605-611. 


[14] Yoon, H.J., No, H.C., Kim, Y.S., Jin, H.G., Lee, J.I., Lee, B.J., 2009. Demonstration of the I-S thermochemical cycle feasibility by experimentally validating the over-azeotropic condition in the hydroiodic acid phase of the Bunsen process. International Journal of Hydrogen Energy, 34(19):7939-7948. 


[15] Zhu, Q.Q., Zhang, Y.W., Zhou, C., Wang, Z.H., Zhou, J.H., Cen, K.F., 2012. Optimization of liquid-liquid phase separation characteristics in the Bunsen section of the sulfur-iodine hydrogen production process. International Journal of Hydrogen Energy, 37(8):6407-6414. 



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