Atmatzidis Kyriakos, Alimohammadi Farbod, Aich Nirupam, Tehrani Rouzbeh
Department of Civil and Environmental Engineering, Temple University, Philadelphia, Pennsylvania 19122, United States.
Department of Chemistry, Temple University, Philadelphia, Pennsylvania 19122, United States.
ACS Omega. 2020 Dec 11;5(50):32697-32705. doi: 10.1021/acsomega.0c05069. eCollection 2020 Dec 22.
Nano-enhanced dialytic fluid purification is an evolution of biomedical dialysis that has been proposed as a novel method for applying nanomaterials in water treatment. Using nanosized hexagonal birnessite (δ-MnO) in a simplified dialytic system, we demonstrate herein an almost complete removal (98%) of Pb(II) within 3 h of treatment while monitoring environmental variables pH and Eh (redox potential). A mathematical model of the purification process is constructed in COMSOL Multiphysics to demonstrate how nanoadsorption using free-flowing nanoparticles in a dialytic system can be studied theoretically using computational fluid dynamics (CFD). The CFD model closely agrees with experimental results, estimating a 95% removal over 3 h of treatment and suggesting an 18% consumption of available adsorbent capacity. Additional insights into the progress and mechanisms of the adsorption process are also revealed. Finally, the nanoenhanced model is compared against standard dialysis absent of nanomaterials using COMSOL, and key differences in removal efficiency are highlighted. Results indicate that nanoenhanced dialysis can attain almost complete removal in 3 h of treatment or reach the same removal goal as standard dialysis in less than two-third of the treatment time.
纳米增强透析液净化是生物医学透析的一种发展,已被提议作为在水处理中应用纳米材料的一种新方法。在一个简化的透析系统中使用纳米尺寸的六方水钠锰矿(δ-MnO),我们在此展示了在3小时的处理时间内几乎完全去除(98%)的Pb(II),同时监测环境变量pH和Eh(氧化还原电位)。在COMSOL Multiphysics中构建了净化过程的数学模型,以证明如何使用计算流体动力学(CFD)从理论上研究透析系统中使用自由流动纳米颗粒的纳米吸附。CFD模型与实验结果密切吻合,估计在3小时的处理时间内去除率为95%,并表明可用吸附剂容量消耗了18%。还揭示了对吸附过程进展和机制的更多见解。最后,使用COMSOL将纳米增强模型与不含纳米材料的标准透析进行比较,并突出了去除效率的关键差异。结果表明,纳米增强透析在3小时的处理时间内可以实现几乎完全去除,或者在不到标准透析三分之二的处理时间内达到相同的去除目标。