从十二烷胶体悬浮液中分离氧化铜纳米颗粒的化学方法

M. Sheikh, M. Sharif, P. Rupar
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引用次数: 3

摘要

从相变材料(PCM)的胶体混合物中分离纳米颗粒的几种化学方法已经开发并系统地研究了。胶体混合物的相变特性被用于储能应用,并被标记为纳米结构增强相变材料(NEPCM)。目的是研究从NEPCM中分离和回收纳米颗粒的可行方法,然后在其使用寿命结束后处理。目标是寻找、设计、测试和评估简单、安全、有效和经济的分离方法。本研究考虑的特异性NEPCM是十二烷(C12H26)和CuO纳米颗粒的胶体混合物,质量分数为1-5%,尺寸分布为5-15 nm。纳米颗粒被表面活性剂包裹以保持胶体稳定性。探索了从NEPCM中分离纳米颗粒的各种方法。确定的方法是:(i)纳米颗粒表面活性剂的化学不稳定以促进重力沉淀,(ii)二氧化硅柱层析,(iii)在二氧化硅颗粒表面吸附。人们对这些不同的方法进行了探索、测试和分析;本文给出了研究结果。这些方法高效、简便、安全、经济。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chemical Methods for the Separation of Copper Oxide Nanoparticles From Colloidal Suspension in Dodecane
Several chemical methods for the separation of nanoparticles from a colloidal mixture in a phase change material (PCM) have been developed and systematically investigated. The phase changing property of the colloidal mixture is used in energy storage applications and the mixture is labeled as the nanostructure enhanced phase change materials (NEPCM). The objective is to investigate viable methods for the separation and reclamation of the nanoparticles from the NEPCM before its disposal after its useful life. The goal is to find, design, test, and evaluate separation methods which are simple, safe, effective, and economical. The specific NEPCM considered in this study is a colloidal mixture of dodecane (C12H26) and CuO nanoparticles of 1–5% mass fraction and 5–15 nm size distribution. The nanoparticles are coated with a surfactant to maintain colloidal stability. Various methods for separating the nanoparticles from the NEPCM are explored. The identified methods are: (i) chemical destabilization of nanoparticle surfactants to facilitate gravitational precipitation, (ii) silica column chromatography, and (iii) adsorption on silica particle surface. These different methods have been pursued, tested, and analyzed; and the results are presented in this article. These methods are found to be highly efficient, simple, safe, and economical.
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