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二甲基亚砜作为二氧化碳水合物形成的新型热力学抑制剂的数据集。

Dataset for the dimethyl sulfoxide as a novel thermodynamic inhibitor of carbon dioxide hydrate formation.

作者信息

Semenov Anton P, Mendgaziev Rais I, Stoporev Andrey S, Istomin Vladimir A, Sergeeva Daria V, Tulegenov Timur B, Vinokurov Vladimir A

机构信息

Gubkin University, Department of Physical and Colloid Chemistry, 65, Leninsky prospekt, Building 1, 119991, Moscow, Russian Federation.

Nikolaev Institute of Inorganic Chemistry SB RAS, Ac. Lavrentiev ave. 3, 630090, Novosibirsk, Russian Federation.

出版信息

Data Brief. 2022 May 17;42:108289. doi: 10.1016/j.dib.2022.108289. eCollection 2022 Jun.

Abstract

The temperatures and pressures of the three-phase equilibrium V-L-H (gas - aqueous solution - gas hydrate) were measured in the CO - HO - dimethyl sulfoxide (DMSO) system at concentrations of organic solute in the aqueous phase up to 50 mass%. Measurements of CO hydrate equilibrium conditions were carried out using a constant volume autoclave by continuous heating at a rate of 0.1 K/h with simultaneous stirring of fluids by a four-blade agitator at 600 rpm. The equilibrium temperature and pressure of CO hydrate were determined for the endpoint of the hydrate dissociation in each experiment. The CO gas fugacity was calculated by the equation of state for carbon dioxide for the measured points. The flow regime in the autoclave during the operation of the stirring system was characterized by calculating the Reynolds number using literature data on the viscosity and density of water and DMSO aqueous solutions. We employed regression analysis to approximate the dependences of equilibrium pressure (CO gas fugacity) on temperature by two- and three-parameter equations. For each measured point, the value of CO hydrate equilibrium temperature suppression ΔT was computed. The dependences of this quantity on CO gas fugacity are considered for all DMSO concentrations. The coefficients of empirical correlation describing ΔT as a function of the DMSO mass fraction in solution and the equilibrium gas pressure are determined. This article is a co-submission with a paper [1].

摘要

在水相中有机溶质浓度高达50质量%的CO - HO - 二甲基亚砜(DMSO)体系中,测量了气 - 液 - 水合物(气体 - 水溶液 - 气体水合物)三相平衡的温度和压力。使用恒容高压釜,通过以0.1 K/h的速率连续加热,并同时用四叶搅拌器以600 rpm的转速搅拌流体,来进行CO水合物平衡条件的测量。在每个实验中,根据水合物解离的终点确定CO水合物的平衡温度和压力。利用二氧化碳状态方程计算测量点处的CO气体逸度。通过使用关于水和DMSO水溶液的粘度和密度的文献数据计算雷诺数,来表征搅拌系统运行期间高压釜内的流动状态。我们采用回归分析,用二参数和三参数方程来近似平衡压力(CO气体逸度)对温度的依赖性。对于每个测量点,计算CO水合物平衡温度抑制ΔT的值。考虑了所有DMSO浓度下该量对CO气体逸度的依赖性。确定了将ΔT描述为溶液中DMSO质量分数和平衡气体压力的函数的经验关联系数。本文与一篇论文[1]共同投稿。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6480/9142623/fa14a673e7e5/gr1.jpg

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