The effect of the addition of 1-butyl-3-methylimidazolium tetrafluoroborate ([C4mim][BF4]) on the formation rates of CO2 hydrates was investigate. The isothermal and isobaric methods were used to measure the formati...The effect of the addition of 1-butyl-3-methylimidazolium tetrafluoroborate ([C4mim][BF4]) on the formation rates of CO2 hydrates was investigate. The isothermal and isobaric methods were used to measure the formation rates of CO2 hydrates. As compared to those of pure water, the data of phase equilibrium changed greatly. The effects of pressure, temperature, and the concentration of [C4mim][BF4] aqueous solution on the formation rates of CO2 hydrates were investigated. With a constant concentration of [C4mim][BF4], the rate of gas consumption was enhanced with the lowering of experimental temperature. However, a decrease in pressure exerted an opposite effect on the rate of gas consumption. Moreover, the addition of [C4mim][BF4] raised the equilibrium pressure of hydrate formation at the same temperature.展开更多
In this work, the effects of three ionic liquids(ILs), namely, 1-butyl-3-methylimidazolium tetrafluoroborate, 1-butyl-3-methylimidazolium dicyanamide and tetraethyl-ammonium chloride, on methane hydrate formation and ...In this work, the effects of three ionic liquids(ILs), namely, 1-butyl-3-methylimidazolium tetrafluoroborate, 1-butyl-3-methylimidazolium dicyanamide and tetraethyl-ammonium chloride, on methane hydrate formation and dissociation kinetic parameters were studied. The kinetic parameters including the initial rate of hydrate formation, hydrate stability at atmospheric pressure and hydrate storage capacity were evaluated. The experimental measurements were performed in an initial pressure range of 3.5-7.1 MPa. It was found that both of ILs with imidazolium-based cation increase the initial methane hydrate formation rate while the IL with ammonium-based cation leads to a decrease in the initial methane hydrate formation rate. It was also interpreted from the results that all of the three studied ILs decrease methane hydrate stability at atmospheric pressure and increase methane hydrate storage capacity. Finally, both of ILs with imidazolium-based cations were found to have higher impacts on decreasing hydrate stability at atmospheric pressure and increasing the methane hydrate storage capacity than the applied IL with ammonium-based cation.展开更多
为代替纤维素纸(C-P)基电解质膜用于铝空气电池,利用静电纺丝技术制备了聚吲哚/聚丙烯腈(PIN/PAN)聚合物基电解质膜。采用SEM和FTIR对PIN/PAN纤维表面形貌及化学组成进行了分析。通过电化学工作站和电池测试系统分析了PIN含量对PIN/PAN...为代替纤维素纸(C-P)基电解质膜用于铝空气电池,利用静电纺丝技术制备了聚吲哚/聚丙烯腈(PIN/PAN)聚合物基电解质膜。采用SEM和FTIR对PIN/PAN纤维表面形貌及化学组成进行了分析。通过电化学工作站和电池测试系统分析了PIN含量对PIN/PAN聚合物基电解质膜离子电导率、离子扩散系数及固态铝空气电池放电性能的影响。结果表明,PIN/PAN纤维的孔隙率、吸液率、断裂伸长率与加入的PIN含量有关,同时对碱性溶液具有良好的吸附能力及机械性能,其中,PIN含量(以PAN溶液的质量为基准,其中,溶剂为N,N-二甲基甲酰胺,下同)为4%的PIN/PAN纤维(记为4%PIN/PAN纤维)的吸液率达496%、孔隙率为87.1%、断裂伸长率为8.7%,分别是C-P的3.2、1.1、3.8倍。基于PIN/PAN纤维制备的PIN/PAN聚合物基电解质膜可有效提升固态铝空气电池性能。其中,4%PIN/PAN聚合物基电解质膜在3、5、7 m A/cm^(2)电流密度下,放电时长比C-P铝空气电池分别提升约18%、32%、38%,离子电导率为6.7×10^(–4)S/cm,离子扩散系数为2.69×10^(–8)cm^(2)/S。展开更多
基金the Youth Innovation Foundation of Petroleum Science (04E7031)New Century Excellent Person Program (NCET-06-0088)the National Natural Science Foundation of China (40673043 and 20576073)
文摘The effect of the addition of 1-butyl-3-methylimidazolium tetrafluoroborate ([C4mim][BF4]) on the formation rates of CO2 hydrates was investigate. The isothermal and isobaric methods were used to measure the formation rates of CO2 hydrates. As compared to those of pure water, the data of phase equilibrium changed greatly. The effects of pressure, temperature, and the concentration of [C4mim][BF4] aqueous solution on the formation rates of CO2 hydrates were investigated. With a constant concentration of [C4mim][BF4], the rate of gas consumption was enhanced with the lowering of experimental temperature. However, a decrease in pressure exerted an opposite effect on the rate of gas consumption. Moreover, the addition of [C4mim][BF4] raised the equilibrium pressure of hydrate formation at the same temperature.
文摘In this work, the effects of three ionic liquids(ILs), namely, 1-butyl-3-methylimidazolium tetrafluoroborate, 1-butyl-3-methylimidazolium dicyanamide and tetraethyl-ammonium chloride, on methane hydrate formation and dissociation kinetic parameters were studied. The kinetic parameters including the initial rate of hydrate formation, hydrate stability at atmospheric pressure and hydrate storage capacity were evaluated. The experimental measurements were performed in an initial pressure range of 3.5-7.1 MPa. It was found that both of ILs with imidazolium-based cation increase the initial methane hydrate formation rate while the IL with ammonium-based cation leads to a decrease in the initial methane hydrate formation rate. It was also interpreted from the results that all of the three studied ILs decrease methane hydrate stability at atmospheric pressure and increase methane hydrate storage capacity. Finally, both of ILs with imidazolium-based cations were found to have higher impacts on decreasing hydrate stability at atmospheric pressure and increasing the methane hydrate storage capacity than the applied IL with ammonium-based cation.
基金financially supported by the National Natural Science Foundation of China(No.51805181)the National Science Fund for Distinguished Young Scholars of China(No.51725504)the Fundamental Research Funds for the Central Universities of China(No.2020kfy XJJS049)。
文摘为代替纤维素纸(C-P)基电解质膜用于铝空气电池,利用静电纺丝技术制备了聚吲哚/聚丙烯腈(PIN/PAN)聚合物基电解质膜。采用SEM和FTIR对PIN/PAN纤维表面形貌及化学组成进行了分析。通过电化学工作站和电池测试系统分析了PIN含量对PIN/PAN聚合物基电解质膜离子电导率、离子扩散系数及固态铝空气电池放电性能的影响。结果表明,PIN/PAN纤维的孔隙率、吸液率、断裂伸长率与加入的PIN含量有关,同时对碱性溶液具有良好的吸附能力及机械性能,其中,PIN含量(以PAN溶液的质量为基准,其中,溶剂为N,N-二甲基甲酰胺,下同)为4%的PIN/PAN纤维(记为4%PIN/PAN纤维)的吸液率达496%、孔隙率为87.1%、断裂伸长率为8.7%,分别是C-P的3.2、1.1、3.8倍。基于PIN/PAN纤维制备的PIN/PAN聚合物基电解质膜可有效提升固态铝空气电池性能。其中,4%PIN/PAN聚合物基电解质膜在3、5、7 m A/cm^(2)电流密度下,放电时长比C-P铝空气电池分别提升约18%、32%、38%,离子电导率为6.7×10^(–4)S/cm,离子扩散系数为2.69×10^(–8)cm^(2)/S。