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Effects of acidification time of MWCNTs on carbon dioxide capture of liquid-like MWCNTs organic hybrid materials

机译:MWCNT酸化时间对液体液体杂交材料二氧化碳捕获的影响

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In this study, liquid-like multi-walled carbon nanotubes (MWCNTs) nanoparticle organic hybrid materials (MWCNTs-NOHMs) were prepared without solvent at room temperature (25 °C) by employing MWCNTs with different acidification times as the core, KH560 as the corona and M2070 as the canopy. The acidification time of MWCNTs on CO _(2) capture capacity of the MWCNTs-NOHMs was investigated. The number of amine groups on the surface of the MWCNTs-NOHMs increased with the prolongation of acidification time. The CO _(2) capture capacity of the MWCNTs-NOHMs decreased with the extension of the acidification time for the MWCNTs. This is due to the superior fluidity and poorer viscosity of the MWCNTs-NOHM left in acid for a shorter time period. The superior fluidity and poorer viscosity provided larger molecule intervals and weaker intermolecular forces, making it easier for CO _(2) to charge into the potential space. CO _(2) can react with amine groups. However, because of the low fluidity and the high viscosity of the MWCNTs-NOHM left in acid for a longer time, its physisorption was unsatisfactory. Chemisorption was also influenced via reducing the contact between CO _(2) and the reactive groups. The regeneration capacity and adsorption stability of the MWCNTs-NOHMs are great, rendering them as potential materials for CO _(2) adsorption.
机译:在该研究中,通过使用与核心不同的酸化时间不同,在室温(25℃)下,在室温(25℃)下,在没有溶剂的情况下,制备液化多壁碳纳米管(MWCNTS-NOHMS)。电晕和M2070作为树冠。研究了MWCNTS关于MWCNTS-NOHMS的CO _(2)捕获能力的酸化时间。 MWCNTS-NOHMS表面上的胺基的数量随着酸化时间的延长而增加。 MWCNTS-NOHMS的CO _(2)捕获容量随着MWCNT的酸化时间的延伸而降低。这是由于酸中剩余的MWCNTS-NOHM的优越流动性和较差的粘度较短。优越的流动性和较差的粘度提供了更大的分子间隔和较弱的分子间力,使得CO _(2)更容易充电到潜在空间中。 CO _(2)可以与胺组反应。然而,由于流动性低,并且MWCNTS-NOHM的高粘度较长的时间较长的时间,其物理吸收不令人满意。通过降低CO _(2)和反应性基团之间的接触,也会影响化学吸收。 MWCNTS-NOHMS的再生能力和吸附稳定性很大,使其作为CO _(2)吸附的潜在材料。

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