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Semicompletion time of carbon dioxide uptake in the process of gas hydrate formation in presence and absence of SDS and silver nanoparticles

机译:SDS和银纳米粒子的存在与不存在的天然气水合物形成过程中二氧化碳摄取的半氧化二氧化碳时

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摘要

Carbon dioxide emission to the atmosphere is one of the main causes of the current global warming. Therefore, capturing this greenhouse gas is very important. The effect of sodium dodecyl sulfate (SDS) and silver nanoparticles on semicompletion time (t(95%)) of carbon dioxide uptake in the process of gas hydrate formation is investigated in this communication. The tests were performed at temperatures of 273.65 and 275.65K and initial pressures of 2 and 3MPa in a 460 cm(3) stirred batch reactor. Experimental measurements show that utilization of SDS and silver nanoparticles decreases the semicompletion time of carbon dioxide uptake considerably. The addition of SDS with concentration of 500ppm and silver nanoparticles with concentration of 45M at p = 2MPa and T = 275.65K, respectively, decreases the semicompletion time of carbon dioxide uptake 136.09% and 152.88%, compared to pure water. Investigating the effect of temperature on the amount of t(95%) in the presence and absence of tested additives shows that this kinetic parameter decreases by increasing the temperature from 273.65 to 275.65 K.
机译:大气中的二氧化碳排放是当前全球变暖的主要原因之一。因此,捕获这种温室气体非常重要。在该通信中研究了在该通信中研究了十二烷基硫酸钠(SDS)和银纳米粒子对气水合物形成过程中二氧化碳摄取的半氧化二氧化碳摄取的影响。测试在273.65和275.65k的温度下进行,并且在460cm(3)℃搅拌批反应器中的2和3MPa的初始压力。实验测量表明,SDS和银纳米粒子的利用率显着降低了二氧化碳摄取的半全整流时间。与P = 2MPa和T = 275.65K的浓度为500ppm和浓度为45m的银纳米颗粒的SDS的加入分别降低二氧化碳摄取的半氧化二氧化碳的半全整数时间和152.88%。在存在和不存在测试添加剂的情况下研究温度对T(95%)的影响表明,该动力学参数通过将温度从273.65增加到275.65k。

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