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水合物
    Study on Gas Hydrate Phase Equilibrium Condition and Simulation Experiment and Testing Technology
    海洋天然气水合物相平衡条件模拟实验及探测技术研究
    Simulated Experimental Study on Several Significant Problems Related to Marine Gas Hydrate
    海洋天然气水合物若干问题的模拟实验研究
    Seismic Data Processing and Identifying for Gas Hydrate Offshore Southwest Taiwan
    台湾西南海域地震数据处理及天然气水合物识别
    THE INVESTIGATION OF DEHYDRATION KINETIC OF TiO_2—HYDRATE IN TiO_2 PRODUCTION BY SULFURIC ACID METHOD
    硫酸法钛白粉生产中TiO_2水合物脱水过程动力学的研究(金红石型颜料钛白粉研制报告之三)
    Synthesis, Characterzation and Crystal Structure of 6,6′—Diguinolyl Oxide Hydrate
    6,6′—二喹啉醚水合物晶体的制备、性质及其结构
    THE PREDICTION OF HYDRATE FORMATION CONDITIONS OF NATURAL GAS Ⅱ. INHIBITOR CONTAINING SYSTEMS
    天然气水合物生成条件的预测 Ⅱ.注甲醇体系
    MAGNETIC RESONANCE METHOD STUDIES ONTHE MOVING STATE OF WATER MOLECULES IN12-TUNGSTO PHOSPHORIC ACID HYDRATE
    磁共振方法研究12-钨磷酸水合物中水分子的运动状态
    The Synthesis and Crystal Structure of Manganese (Ⅲ) Hydroxyaquotetrakis ( 4- trimethyl aniline) porphyrin Triiodide Chloride Hydrate
    三碘-氯化四-(4-三甲基苯胺基)卟啉-羟基-水合锰水合物的合成与晶体结构
    THERMODYNAMIC PARAMETERS FOR THE PREDICTION OF NATURAL GAS HYDRATE FORMATION CONDITIONS
    天然气水合物生成条件预测的热力学参数
    Calculating Natural Gas Water Content Balancing with Hydrate
    与水合物平衡的天然气水含量的计算
    Na_2O Behaviour in Alumina Hydrate in the Process of Calciziation
    氧化铝水合物中的Na_2O在煅烧过程的行为
    Prediction of the Conditions for the Forming of Natural Gas Hydrate
    天然气水合物形成条件的预测
    STUDY ON PHASE-EQUILIBRIUM PROPERTY OF HFC152a/HCFC141b MIXED GAS HYDRATE
    HFC152a/HCFC141b混合气体水合物相平衡特性研究
    Experiment of gas hydrate cool storage with R141b
    替代 CFC 工质 R141b 气体水合物蓄冷实验研究
    Development and Application of New Gas Hydrate Inhibitors
    新型天然气水合物抑制剂的开发与应用
    It turns out that as the pore radius of sediments is 250~355 μm and pressure is 5 MPa,methane hydrate can be quickly synthesized at 1 ℃;
    在粒径为250-355μm的天然海砂中,压力5 MPa时,1℃的反应釜温度可以使甲烷水合物较快生成;
    as the pore radius of sediments is 180~250 μm and temperature is 2.5 ℃,methane hydrate can be quickly synthesized at 5 MPa.
    在粒径为180-250μm的天然海砂中,温度为2.5℃时,5 MPa的压力即可使水合物较容易生成。
    The formation of methane hydrate in a mixed system of ice powders and sand was studied at 273 K and at different pressure(5.3 MPa、6.8 MPa、7.9 MPa).
    在自行搭建的实验台上利用恒压预冷法研究了不同压力(5.3 MPa、6.8 MPa7、.9 MPa)、恒定温度(273 K)下甲烷水合物在冰粉(154—300μm)与石英砂(154—300μm)混合物中的生成过程。 结果表明:甲烷水合物在此混合物中聚集生长;
    The process and kinetics of CH4 replacement from CH4 hydrate formed in sodium dodecyl sulfate(SDS) system by using pressurized CO2 was observed with a self-designed device at temperatures of 271.2, 273.2 and 276.0 K and at pressures of 2.8, 3.25 MPa.
    在自行设计的反应装置中考察了2.8MPa和3.25MPa压力下,温度271.2、273.2和276.0K时CO2气体置换十二烷基硫酸钠(SDS)体系CH4水合物中CH4的置换过程。
    Experimental data showed that the decomposition rate of CH4 hydrate was faster in the first 50 hours than the later time.
    实验数据表明,在反应的前50h,CH4水合物的分解速率较快,其后分解速率变慢。
 

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