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首页> 外文期刊>Chemical Engineering & Technology: Industrial Chemistry -Plant Equipment -Process Engineering -Biotechnology >Experimental and Theoretical Investigation of Double Gas Hydrate Formation in the Presence or Absence of Kinetic Inhibitors in a Flow Mini-Loop Apparatus
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Experimental and Theoretical Investigation of Double Gas Hydrate Formation in the Presence or Absence of Kinetic Inhibitors in a Flow Mini-Loop Apparatus

机译:实验和理论研究存在或双天然气水合物的形成没有流Mini-Loop动力学抑制剂装置

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Double gas hydrate formation in the presence or absence of kinetic inhibitors in a flow mini-loop apparatus was investigated. For the prediction of the gas consumption rate during hydrate formation in this system, the rate equation based on the Kashchiev and Firoozabadi model for simple gas hydrate formation in a batch system was developed for double gas hydrate formation in a flow mini-loop apparatus. To complete the theoretical evaluation of gas hydrate formation through the mini-loop apparatus in the presence or absence of kinetic hydrate inhibitors (KHI), a laboratory flow mini-loop apparatus was set up to measure the induction time for hydrate formation and the uptake rate when a gaseous mixture (such as 75 % Cl/25 % C3, 25 % Cl/75 % C3, 75 % Cl/25 % i-C4, and 25 % Cl/75 % i-C4) is contacted with water containing or not containing dissolved inhibitor under suitable temperature and pressure conditions. In each experiment, a water blend saturated with gas mixture was circulated up to the required pressure. The pressure was maintained at a constant value during the experimental runs by means of a required gas mixture make-up. The effect of pressure on gas consumption during hydrate formation was investigated in the presence or absence of polyvinylpyrrolidone (PVP) and l-tyrosine as kinetic inhibitors at various concentrations. A good agreement was found between the predicted and experimental data in the presence or absence of KHI. The total average absolute deviation percents between the experimental and predicted values of gas consumption were found to be 16.4 and 17.5 % for the double gas hydrate formation in the presence or absence of the kinetic inhibitors, respectively.
机译:存在或双天然气水合物的形成没有流mini-loop动力学抑制剂装置进行了研究。在水合物形成气体消耗率在此系统中,基于速率方程Kashchiev Firoozabadi模型简单的气体水合物的形成在一个批处理系统双天然气水合物形成的流mini-loop装置。评价天然气水合物形成的mini-loop设备的存在与否动力学水合物抑制剂(地块),一个实验室流mini-loop仪器测量成立水合物形成的诱导时间,吸收速率时的气体混合物(如75%Cl C3 / 25%, 25% Cl / 75% C3, i-C4 Cl / 25%, 75%和25% i-C4 Cl / 75%)与水接触包含或不包含溶解抑制剂在合适的温度和压力条件。充满气体混合物流传所需的压力。保持在一个常数值实验运行所需的气体混合物组成。消费在水合物的形成调查的存在与否聚乙烯吡咯烷酮(PVP)和酪氨酸动力学抑制剂在不同浓度。良好的协议被发现之间的预测和实验数据的存在与否川崎重工。实验和预测之间的百分比天然气消费的值是16.4和17.5%的天然气水合物形成的两倍在动态的存在与否分别抑制剂。

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