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Solubility of Methane in Water at the Presence of β-Cyclodextrin, SDS, and Multi Wall Carbon Nanotubes at Low Temperatures

机译:β-环糊精,SDS和多壁碳纳米管在低温下甲烷在水中的溶解度

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摘要

In this research, the solubility of methane in water at presence of β-cyclodextrin (CD), sodium dodccyl sulfate (SDS), and multiwall carbon nanotubes (NTs) have been investigated. The tests were performed at the pressures 3 and 5 bars and temperatures of 1-3°C. For any solution, data of vessel pressure versus time and the total absorption capacity were collected. NTs were dispersed in water by using SDS solution with a concentration of 1 wt% and applying ultrasonic agitation for 25 min. Addition of 0.5 wt% cyclodextrin increased the capacity of methane absorption as much as 14.63% at temperature 1°C and primary pressure of 3 bar. Dissolution capacity increased up to 5.26% by using NT along with SDS at the pressure of 5 bar and low temperatures. Simultaneous usage of CD, SDS, and NT (the solution containing 1 wt% CD, 0.1 wt% SDS, and 1 wt% NT) had the highest effect on the increase of amount and rate of dissolution. The amount of dissolution increases for this solution was 14.63% at temperature 1°C and the primary pressure 3 bar. Utilization of CD, SDS, and NT and their mixture improved the initial dissolution rate of methane at low temperatures.
机译:在这项研究中,已经研究了存在β-环糊精(CD),十二烷基硫酸钠(SDS)和多壁碳纳米管(NTs)时甲烷在水中的溶解度。在3巴和5巴的压力和1-3℃的温度下进行测试。对于任何溶液,均会收集容器压力随时间变化的数据以及总吸收容量。通过使用浓度为1 wt%的SDS溶液并将超声搅拌25分钟,将NTs分散在水中。在1℃的温度和3巴的主压力下,添加0.5重量%的环糊精将甲烷吸收的能力提高了14.63%。通过在5 bar的压力和低温下使用NT和SDS,溶解能力提高了5.26%。同时使用CD,SDS和NT(含有1 wt%CD,0.1 wt%SDS和1 wt%NT的溶液)对溶解量和溶解速率的增加影响最大。在1℃的温度和3巴的主压力下,该溶液的溶解增加量为14.63%。 CD,SDS和NT及其混合物的使用提高了低温下甲烷的初始溶解速率。

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