Synthesis of Polydimethylsiloxane Microspheres Using Microfluidics for Treatment of Toluene in Wastewater

Zheng Lian, Y. Ren, Jun He, G. Chen, K. Koh
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引用次数: 1

Abstract

Monodispersed polydimethylsiloxane (PDMS) microspheres are fabricated by a needle-based versatile microfluidic device with flow-focusing geometry. Microdroplets with various diameters are generated by tuning the flow rate of the dispersed and continuous phase, using single emulsion as the template. The collected PDMS microdroplets are then thermally cured to form solid microspheres. We employ an optical microscope to observe the particles and capture photos. The figures are processed by ImageJ which measures the diameter of each particle. The coefficients of variation (CV) of particles are found to be less than 1.5% for all sizes, indicating that a high monodispersity has been achieved. Thereafter, we adopt the PDMS microspheres to a simulated industrial wastewater that contains organic pollutant such as toluene, for removing purposes. Since the solubility parameters of PDMS and toluene are close, toluene molecules can be extracted from its solvent into PDMS. The absorption efficiency provided by PDMS microspheres on organic pollutant such as toluene has been tested by utilizing a Headspace-Gas Chromatography (GC-HS). We then compare the obtained peak signals of toluene before and after treatment to verify the treatment effect. The needle-based microfluidic device is advantageous in its facile assembly and low cost, displaying a great potential for industrial applications.
微流控合成聚二甲基硅氧烷微球处理废水中的甲苯
单分散聚二甲基硅氧烷(PDMS)微球是由一种具有流动聚焦几何形状的针基多用途微流控装置制备的。以单一乳液为模板,通过调节分散相和连续相的流速,生成不同直径的微液滴。然后将收集的PDMS微滴进行热固化,形成固体微球。我们用光学显微镜观察颗粒并拍摄照片。图像由ImageJ处理,它测量每个粒子的直径。颗粒的变异系数(CV)在所有尺寸下均小于1.5%,表明实现了较高的单分散性。随后,我们采用PDMS微球对含甲苯等有机污染物的模拟工业废水进行去除。由于PDMS与甲苯的溶解度参数接近,甲苯分子可以从其溶剂中提取到PDMS中。利用顶空-气相色谱法(GC-HS)测试了PDMS微球对甲苯等有机污染物的吸收效率。然后比较处理前后得到的甲苯峰值信号,验证处理效果。针状微流控装置具有装配方便、成本低等优点,具有很大的工业应用潜力。
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