Jafari Farnaz, Saien Javad, Rashidi Alimorad
Bu-Ali Sina University, Hamedan, Iran.
Carbon and Nanotechnology Research Center, RIPI, Tehran, Iran.
Sci Rep. 2022 Jul 16;12(1):12210. doi: 10.1038/s41598-022-16663-9.
Simultaneous use of carbon quantum dot (CQD) nanofluids and pulsed electric fields exhibits amazing mass transfer intensification in liquid-liquid extraction of circulating drops. Here, the chemical system of kerosene-acetic acid-water with mass transfer resistance in the organic phase was used in which organic nanofluid drops contained CQD or modified CQD-Fe. These products with extremely small sizes of 7.2 and 13.4 nm were synthesized and characterized by DLS, Zeta potential, XRD, EDS and SEM techniques. To find optimum conditions, CQD concentrations within (0.0005-0.003) wt%, electric field frequencies within (50-550) Hz and electric field strengths to 16 V/cm were examined. From hydrodynamic point of view, the flow pattern of drops was in circulating mode, and that terminal velocity of drops correctly followed the Grace model. The substantial effect of pulsed electric field on the CQD and CQD-Fe nanofluids, brought about mass transfer enhancements to 263.5 and 291.6%. This can be attributed to the electro-induced motion of global CQDs with pulsed electric fields. For the aim of modelling, the adapted Kumar and Hartland equation with a developed correlation of the enhancement factor versus involved dimensionless variables were satisfactory to reproduce the mass transfer coefficient data.
在循环液滴的液-液萃取过程中,同时使用碳量子点(CQD)纳米流体和脉冲电场可实现惊人的传质强化。在此,采用了煤油-乙酸-水化学体系,其在有机相中存在传质阻力,其中有机纳米流体滴含有CQD或改性CQD-Fe。通过动态光散射(DLS)、zeta电位、X射线衍射(XRD)、能谱分析(EDS)和扫描电子显微镜(SEM)技术对合成的尺寸分别为7.2和13.4纳米的这些产物进行了表征。为了找到最佳条件,研究了CQD浓度在(0.0005 - 0.003)wt%范围内、电场频率在(50 - 550)Hz范围内以及电场强度至16 V/cm时的情况。从流体动力学角度来看,液滴的流动模式为循环模式,且液滴的终端速度正确地遵循格雷西模型。脉冲电场对CQD和CQD-Fe纳米流体产生的显著影响使传质增强了263.5%和291.6%。这可归因于脉冲电场引起全局CQD的电致运动。为了进行建模,采用经过改进的库马尔和哈特兰方程,其增强因子与相关无量纲变量之间建立了完善的关联,能够令人满意地再现传质系数数据。