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首页> 外文期刊>Journal of nanomaterials >The Effect of Temperatures on the Synergistic Effect between a Magnetic Field and Functionalized Graphene Oxide-Carbon Nanotube Composite for Pb~(2+) and Phenol Adsorption
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The Effect of Temperatures on the Synergistic Effect between a Magnetic Field and Functionalized Graphene Oxide-Carbon Nanotube Composite for Pb~(2+) and Phenol Adsorption

机译:温度对磁场与官能化石墨烯氧化物 - 碳纳米管复合材料的协同效应的影响,PB〜(2+)和苯酚吸附

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The effect of temperature on scale inhibition and adsorption properties for Pb~(2+) and phenol was studied under the synergistic effect of the magnetic field and the adsorbent. The sulfhydryl and amino-modified graphene oxide/oxidized multiwalled carbon nanotubes (NH2-SH-GO/o-MWCNTs) were synthesized and applied as the adsorbent. Additionally, changes in pH, conductivity, molecular activation energy, the relative variation of intramolecular energy and the relative variation in the proportion of free water, and adsorption capacity of the adsorbent were studied under different temperatures of circulating water. The relative variation of the proportion of free water increased with the increasing temperatures. The above results indicated that higher temperature would be detrimental to scale inhibition. The higher the temperatures, the lower the intramolecular energies. And the more stable molecules are formed in the circulating water. Thus, the results reduced the tendency to scale formation. The increased temperatures promoted the adsorption capacity of the adsorbent for Pb2+ and phenol. The adsorption process for Pb~(2+) and phenol conformed to the pseudo-second-order kinetic model and Freundlich isotherm model under the synergistic effect of magnetic field and NH2-SH-GO/MWCNTs. After five cycles, the adsorption capacities of the adsorbent for Pb~(2+) and phenol separately decreased by 59.86% and 76.36%. The aforementioned results reveal that temperatures can promote the adsorption process for Pb2+ and phenol, and the synergistic effect between magnetic field and the adsorbent has a potential application for water treatment.
机译:在磁场和吸附剂的协同效应下研究了温度对Pb〜(2+)和苯酚的测量抑制和吸附性能的影响。合成并施加巯基和氨基改性的石墨烯氧化物/氧化多晶碳纳米管(NH2-SH-GO / O-MWCNT)作为吸附剂。另外,在不同温度下,在循环水的不同温度下研究了pH,电导率,分子活化能量,分子内能量的相对变化和自由水比例的相对变化以及吸附剂的吸附能力。自由水比例的相对变化随着越来越多的温度而增加。上述结果表明,较高的温度会对规模抑制不利。温度越高,分子内能量越低。并且在循环水中形成更稳定的分子。因此,结果降低了规模形成的趋势。增加的温度促进了吸附剂对PB2 +和苯酚的吸附能力。 PB〜(2+)和苯酚的吸附过程符合磁场协同效应和NH2-SH-GO / MWCNTS的伪二阶动力学模型和Freundlich等温模型。经过五个循环后,PB〜(2+)和苯酚的吸附容量分别下降59.86%和76.36%。上述结果表明,温度可以促进PB2 +和苯酚的吸附过程,磁场和吸附剂之间的协同效应具有水处理的潜在应用。

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