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Effects of different loading of magnesium oxide on activated carbon nanofibers for methane adsorption

机译:氧化镁负载量对活性炭纳米纤维吸附甲烷的影响

摘要

In the last few years, with the escalating world demand for energy, natural gas had been suggested as an alternative for replacing heavy fossil fuels as it produces cleaner combustion, less harmful and economical. Moreover, continuous world’s depending on fossil fuels such as crude oils, coals and heavy fuels has become a major concerned to the entire world as the excessive burning of these fuels produced harmful gases that leading to global warming. For this reasons, in this work, PAN- based activated carbon nanofibers (ACNFs) with various loading of magnesium oxide (MgO) (0, 5, 10, and 15 wt.%) were prepared for methane (CH4) adsorption. The nanofibers (NFs) were successfully produced via electrospinning process at optimize parameters. The resultant NFs underwent three steps of pyrolysis process which are stabilization, carbonization and activation at 275 oC, 600 oC and 800 oC, respectively. The ACNFs/MgO were characterized using scanning electron microscopy (SEM), Fourier transform infrared spectroscopy (FTIR), thermal gravimetric (TGA) analysis, X-ray diffraction (XRD) analysis, Brunaeur, Emmett and Teller (BET) method and CH4 adsorption tests. The adsorption equilibrium of CH4 on ACNFs/MgO was measured using a static volumetric technique. Adsorption of CH4 on the ACNFs/MgO was conducted at 30 oC for pressures up to 4 bars. The equilibrium data were stimulated using the Freundlich and Langmuir isotherms, with both models having R2 > 0.98. The results on BET surface area showed the ACNFs loading with 15 wt.% MgO has the highest surface area of 1893.09 m2/g and it was assumed to be a major contributor for higher gas adsorption capacity. From these findings, it is believed that ACNFs/MgO will become a new adsorbent with great potential for gas adsorption and storage in the near future applications.
机译:在过去的几年中,随着世界对能源需求的不断增长,人们提出将天然气作为替代重化石燃料的替代方法,因为它可产生更清洁的燃烧,危害较小且经济。此外,连续世界对矿物燃料(如原油,煤炭和重燃料)的依赖已成为全世界关注的主要问题,因为这些燃料的过度燃烧会产生有害气体,导致全球变暖。由于这个原因,在这项工作中,制备了具有各种负载的氧化镁(MgO)(0、5、10和15 wt。%)的PAN基活性炭纳米纤维(ACNFs)来吸附甲烷(CH4)。通过电纺丝工艺以最佳参数成功生产了纳米纤维(NFs)。所得的NFs经历了三个热解过程,分别是在275 oC,600 oC和800 oC下稳定,碳化和活化。使用扫描电子显微镜(SEM),傅立叶变换红外光谱(FTIR),热重(TGA)分析,X射线衍射(XRD)分析,Brunaeur,Emmett和Teller(BET)方法和CH4吸附对ACNFs / MgO进行表征测试。使用静态体积技术测量CH4在ACNFs / MgO上的吸附平衡。 CH4在ACNFs / MgO上的吸附在30 oC的压力下进行,最高压力为4 bar。平衡数据是使用Freundlich和Langmuir等温线刺激的,两个模型的R2> 0.98。 BET表面积的结果表明,以15 wt。%MgO负载的ACNFs的最大表面积为1893.09 m2 / g,并被认为是提高气体吸附能力的主要因素。从这些发现,相信ACNFs / MgO将成为一种新的吸附剂,在不久的将来应用中具有很大的气体吸附和储存潜力。

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