[1] SLOAN E D,KOH C A. Clathrate hydrates of natural gases[M].CRC Press,2007. [2] 梁德青,郭开华,樊栓狮,等. HCFC-141b气体水合物融解热的DSC测试[J]. 工程热物理学报,2002(s1):47-49. [3] YOUSSEF Z,DELAHAYE A,HUANG L,et al. State of the art on phase change material slurries[J]. Energy Conversion and Management,2013,65:120-132. [4] 陈朝阳,李小森,颜克凤,等. 一种开采天然气水合物的方法及装置:101016841A[P]. 2007-02-13. [5] LV Q N,LI X S,CHEN Z Y,et al. Phase equilibrium and dissociation enthalpies for hydrates of various water-insoluble organic promoters with methane[J]. Journal of Chemical & Engineering Data,2013,58(11):3249-3253. [6] LI L,LV Q N,LI X S,et al. Phase equilibrium and dissociation enthalpies of trimethylene sulfide + methane hydrates in brine water systems[J]. Journal of Chemical & Engineering Data,2014,59(11):3717-3722. [7] CHEN Z Y,FENG J C,LI X S,et al. Preparation of warm brine in situ seafloor based on the hydrate process for marine gas hydrate thermal stimulation[J]. Industrial & Engineering Chemistry Research,2014,53(36):14142-14157. [8] GUPTA A,LACHANE J,SLOAN E D,et al. Measurements of methane hydrate heat of dissociation using high pressure differential scanning calorimetry[J]. Chemical Engineering Science,2008,63(24):5848-5853. [9] YAMAZAKI M,SASAKI C,KAKIUCHI H,et al. Thermal and structural characterization of trimethylolethane trihydrate[J]. Thermochimica Acta,2002,387(1):39-45. [10] ZHANG Y,DEBENEDETTI P G,PRUD'HOMM R K,et al. Differential scanning calorimetry studies of clathrate hydrate formation[J]. The Journal of Physical Chemistry B,2004,108(43):16717-16722. [11] MARINHAS S,DELAHAYE A,FOURNAISON L,et al. Modelling of the available latent heat of a CO2 hydrate slurry in an experimental loop applied to secondary refrigeration[J]. Chemical Engineering and Processing:Process Intensification,2006,45(3):184-192. [12] LEE S,PARK S,LEE Y,et al. Measurements of dissociation enthalpy for simple gas hydrates using high pressure differential scanning calorimetry[J]. Korean Chemical Engineering Research,2012,50(4):666-671. [13] OSHIMA M,KIDA M,JIN Y,et al. Dissociation behaviour of (tetra-n-butylammonium bromide+ tetra-n-butylammonium chloride) mixed semiclathrate hydrate systems[J]. The Journal of Chemical Thermodynamics,2015,90:277-281. [14] LI G,LIU D P,XIE Y M. Study on thermal properties of TBAB-THF hydrate mixture for cold storage by DSC[J]. Journal of Thermal Analysis and Calorimetry,2010,102(2):819-826. [15] OHGAKI K,SUGAHARA T,SUZUKI M,et al. Phase behavior of xenon hydrate system[J]. Fluid Phase Equilibria,2000,175(1):1-6. [16] ANDERSON G K. Enthalpy of dissociation and hydration number of methane hydrate from the Clapeyron equation[J]. The Journal of Chemical Thermodynamics,2004,36(12):1119-1127. [17] CHEN Z Y,LI Q P,YAN Z Y,et al. Phase equilibrium and dissociation enthalpies for cyclopentane + methane hydrates in nacl aqueous solutions[J]. Journal of Chemical & Engineering Data,2010,55(10):4444-4449. [18] KAKATI H,KAR S,MANDAL A,et al. Methane hydrate formation and dissociation in oil-in-water emulsion[J]. Energy & Fuels,2014,28(7):4440-4446. [19] SAW V K,UDAYABHANU G,MANDALA,et al. Methane hydrate formation and dissociation in the presence of silica sand and bentonite clay[J]. Oil & Gas Science and Technology-Revue d'IFP Energies Nouvelles,2015,70(6):1087-1099. [20] 杨光,祁影霞,姬利明,等. 制冷剂气体水合物蓄冷工质的试验研究进展[J]. 流体机械,2010,10:70-73,43. [21] FAN S S,LIANGD Q,GUO K H. Hydrate equilibrium conditions for cyclopentane and a quaternary cyclopentane-rich mixture[J]. Journal of Chemical & Engineering Data,2001,46(4):930-932. [22] 孙志高,刘成刚,黄海峰. 环戊烷水合物生长过程实验研究[J]. 制冷技术,2012(2):23-25. [23] 焦丽君,孙志高,赵之贵,等. 添加剂对水合物蓄冷过程影响探讨[J]. 科学技术与工程,2014,32:217-220. [24] 李刚,谢应明,刘道平. 新型蓄冷工质-异丁烷水合物生成特性的实验研究[J]. 制冷学报,2009(2):12-17. [25] TANII T,MINEMOTOi M,NAKAZAWA K,et al. Study on a cool storage system using HCFC(Hydro-Chloro-Fluoro-Carbon)-141b(CCl2FCH3)(1,1-dichloro-1-fluoro-ethane)clathrate[J]. The Canadian Journal of Chemical Engineering,1997,75(2):353-361. [26] 谢应明,梁德青,郭开华,等. 气体水合物蓄冷技术研究现状与展望[J]. 暖通空调,2004(9):25-28,70. [27] LI J P,LIANG D Q,GUO K H,et al. The influence of additives and metal rods on the nucleation and growth of gas hydrates[J]. Journal of Colloid and Interface Science,2005,283(1):223-230. [28] 马鸿凯,孙志高,焦丽君,等. 添加剂对静态条件下HCFC-141b水合物生成的促进作用[J]. 制冷学报,2016(2):1-6. [29] 李娜,马振魁. 利用纳米粒子强化微乳液体系HCFC141b水合物的生成[J]. 科学通报,2011,22:1846-1853. [30] 王武昌,樊栓狮,梁德青,等. HCFC-141b水合物在管道中形成及堵塞实验研究[J]. 西安交通大学学报,2008(5):602- 606. [31] OOWA M,NAKAIWA M,AKIYA T,et al. Formation of CFC alternative R134a gas hydrate[C]// In Energy Conversion Engineering Conference,1990. IECEC-90. Proceedings of the 25th Intersociety. IEEE,1990,4:269-274. [32] LI J P,LIANG D Q,GUO K H,et al. Formation and dissociation of HFC134a gas hydrate in nano-copper suspension[J]. Energy Conversion and Management,2006,47(2):201-210. [33] WU J H,WANG S P. Research on cool storage and release characteristics of R134a gas hydrate with additive[J]. Energy and Buildings,2012,45:99-105. [34] WANG X L,DENNIS M,HOU L Z. Clathrate hydrate technology for cold storage in air conditioning systems[J]. Renewable and Sustainable Energy Reviews,2014,36:34-51. [35] 陈晶贵,樊栓狮,梁德青. 气体水合物蓄冷技术研究进展[J]. 化工进展,2003,22(9):942-946. [36] 谢应明,梁德青,郭开华,等. 四氢呋喃水合物换热管外结晶分解动力学研究[J]. 西安交通大学学报,2005(3):313-316. [37] CLAIN P,DELAHAYE A,FOURNAISON L,et al. Rheological properties of tetra-n-butylphosphonium bromide hydrate slurry flow[J]. Chemical Engineering Journal,2012,193:112-122. [38] 马志伟,张鹏,王如竹. 水合物浆体在直管中的流动换热特性研究[J]. 工程热物理学报,2010(8):1398-1402. [39] 施军锞,祁影霞. 四丁基溴化铵水合物浆在蓄冷空调中的应用前景[J]. 低温与超导,2013(5):75-80. [40] 李刚,谢应明,刘道平,等. 四丁基溴化铵-四氢呋喃系蓄冷水合物[J]. 过程工程学报,2009(1):186-189. [41] 刘勇,郭开华,梁德青,等. 混合致冷剂水合物晶体生成和分解过程研究[J]. 哈尔滨工业大学学报,2004(2):242-245. [42] OGAWA T,ITO T,WATANABE K,et al. Development of a novel hydrate-based refrigeration system:a preliminary overview[J]. Applied Thermal Engineering,2006,26(17):2157-2167. [43] 孙志高,刘成刚,周波,等. 低压二氧化碳水合物技术实验研究[J]. 科学技术与工程,2010,33:8302-8304. [44] CHOI J W,CHUNG J T,KANG Y T. CO2 hydrate formation at atmospheric pressure using high efficiency absorbent and surfactants[J]. Energy,2014,78:869-876. [45] 舒碧芬,郭开华,蒙宗信,等. 新型气体水合物蓄冷装置及其性能[J]. 工程热物理学报,1999(5):542-544 [46] 谢应明,刘道平,刘妮,等. 小型气体水合物蓄冷装置的实验研究[J]. 西安交通大学学报,2008(5):573-577. [47] 谢振兴,谢应明,周兴法,等. 充注压力对压缩式制冷循环连续制备CO2水合物的影响[J]. 化工学报,2014,65(6):2301-2307. [48] JERBI S,DELAHAYE A,OIGNET J,et al. Rheological properties of CO2 hydrate slurry produced in a stirred tank reactor and a secondary refrigeration loop[J]. International Journal of Refrigeration,2013,36(4):1294-1301. |