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新型天然气水合物动力学抑制剂的制备及性能

         

摘要

Aimed at the disadvantages of existing kinetic hydrate inhibitors,a kinetic inhibitor was synthesized from N-vinylpyrrolidone by solution polymerization with hydrogen peroxide as the initiator under the action of nitrogen and methacrylic acid.The effects of inhibitor dosage and degree of supercooling on the inhibitor performances were investigated in a hydrate kinetic experimental device.The properties of composite inhibitors consisting of the new kinetic inhibitor and ethylene glycol were also tested.The experimental results showed that,under the conditions of the inhibitor concentration 1 500 mg/L,5 ℃ and 6 MPa,the induction time of the kinetic inhibitor was 213 min;the induction time of the inhibitor solution reached 59 min when the degree of supercooling was 9.1 ℃;the induction time of the composite inhibitor consisting of the kinetic inhibitor of 10 000 mg/L and ethylene glycol of 15%(w) was prolonged by 234.0 % more than that of the kinetic inhibitor alone.%针对现有水合物动力学抑制剂存在的缺点,以N-乙烯基吡咯烷酮为单体,双氧水为引发剂,在氮气作用下,采用溶液聚合法合成了一种动力学抑制剂,利用实验室水合物动力学实验装置,考察了抑制剂的添加量、过冷度等因素对抑制剂性能的影响,研究了新型动力学抑制剂与乙二醇复配的复合型抑制剂的性能.实验结果表明,抑制剂添加量为1 500 mg/L时,在5℃、6 MPa条件下的诱导时间达213 min,抑制剂溶液在过冷度为9.1℃时的诱导时间达59min;10 000mg/L动力学抑制剂与15%(w)的乙二醇进行复配,所得复合型抑制剂的诱导时间比单独使用动力学抑制剂的诱导时间延长了234.0%,具有良好的复配效果.

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