Increasing Gas Hydrate Formation Temperature for Desalination of High Salinity Produced Water with Secondary Guests

被引:186
作者
Cha, Jong-Ho [1 ]
Seol, Yongkoo [1 ]
机构
[1] US DOE, Natl Energy Technol Lab, Morgantown, WV 26507 USA
关键词
Desalination; Gas hydrate; Produced water; Brine; Cyclopentane; Cyclohexane; PHASE-EQUILIBRIUM MEASUREMENTS; NATURAL-GAS; CO2; HYDRATE; FLUE-GAS; CLATHRATE; HYDROGEN; CYCLOPENTANE; OIL; CYCLOHEXANE; CAPTURE;
D O I
10.1021/sc400160u
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
We suggest a new gas hydrate-based desalination process using water-immiscible hydrate formers; cyclopentane (CP) and cyclohexane (CH) as secondary hydrate guests to alleviate temperature requirements for hydrate formation. The hydrate formation reactions were carried out in an isobaric condition of 3.1 MPa to find the upper temperature limit of CO2 hydrate formation. Simulated produced water (8.95 wt % salinity) mixed with the hydrate formers shows an increased upper temperature limit from -2 degrees C for simple CO2 hydrate to 16 and 7 degrees C for double (CO2 + CP) and (CO2 + CH) hydrates, respectively. The resulting conversion rate to double hydrate turned out to be similar to that with simple CO2 hydrate at the upper temperature limit. Hydrate formation rates (R-f) for the double hydrates with CP and CH are shown to be 22 and 16 times higher, respectively, than that of the simple CO2 hydrate at the upper temperature limit. Such mild hydrate formation temperature and fast formation kinetics indicate increased energy efficiency of the double hydrate system for the desalination process. Dissociated water from the hydrates shows greater than 90% salt removal efficiency for the hydrates with the secondary guests, which is also improved from about 70% salt removal efficiency for the simple hydrates.
引用
收藏
页码:1218 / 1224
页数:7
相关论文
共 46 条
[1]   Review of technologies for oil and gas produced water treatment [J].
Ahmadun, Fakhru'l-Razi ;
Pendashteh, Alireza ;
Abdullah, Luqman Chuah ;
Biak, Dayang Radiah Awang ;
Madaeni, Sayed Siavash ;
Abidin, Zurina Zainal .
JOURNAL OF HAZARDOUS MATERIALS, 2009, 170 (2-3) :530-551
[2]   Is subcooling the right driving force for testing low-dosage hydrate inhibitors? [J].
Arjmandi, M ;
Tohidi, B ;
Danesh, A ;
Todd, AC .
CHEMICAL ENGINEERING SCIENCE, 2005, 60 (05) :1313-1321
[3]   Equilibrium data of hydrogen, methane, nitrogen, carbon dioxide, and natural gas in semi-clathrate hydrates of tetrabutyl ammonium bromide [J].
Arjmandi, Mosayyeb ;
Chapoy, Antonin ;
Tohidi, Bahman .
JOURNAL OF CHEMICAL AND ENGINEERING DATA, 2007, 52 (06) :2153-2158
[4]  
BARDUHN AJ, 1967, CHEM ENG PROG, V63, P98
[5]   THE PROPERTIES OF SOME NEW GAS HYDRATES AND THEIR USE IN DEMINERALIZING SEA WATER [J].
BARDUHN, AJ ;
TOWLSON, HE ;
HU, YC .
AICHE JOURNAL, 1962, 8 (02) :176-183
[6]  
Breit G., 2002, U S GEOLOGICAL SURVE
[7]   Desalination of produced water from oil production fields by membrane processes [J].
Cakmakci, Mehmet ;
Kayaalp, Necati ;
Koyuncu, Ismail .
DESALINATION, 2008, 222 (1-3) :176-186
[8]  
Clark C.E., 2009, Produced water volumes and management practices in the United States
[9]   Effect of subcooling and amount of hydrate former on formation of cyclopentane hydrates in brine [J].
Corak, Djurdjica ;
Barth, Tanja ;
Hoiland, Sylvi ;
Skodvin, Tore ;
Larsen, Roar ;
Skjetne, Tore .
DESALINATION, 2011, 278 (1-3) :268-274
[10]  
El-Dessouky H.T., 2002, Fundamentals of salt water desalination