Lin Qingwen, Chang Jiali, Gao Mengfan, Ma Hongzhu
a Key Laboratory of Applied Surface and Colloid Chemistry, Ministry of Education, School of Chemistry and Chemical Engineering, Shaanxi Normal University , Xi'an , Shaanxi , China.
J Environ Sci Health A Tox Hazard Subst Environ Eng. 2017 Jan 28;52(2):106-116. doi: 10.1080/10934529.2016.1237117. Epub 2016 Oct 21.
Epichlorohydrin cross-linked carboxymethyl cellulose microspheres (ECH/CMC) obtained by inverse suspension method and magnetic FeO nanoparticles encasing the ECH/CMC microspheres (M-ECH/CMC) obtained by two different methods were successfully prepared and compared. Their structures and morphologies were analyzed using polarizing microscopy, scanning electron microscopy, Fourier transform infrared spectroscopy, and X-ray diffraction. The adsorption behaviors of M1-ECH/CMC for methylene blue (MB) in the single cationic dye wastewater, the cationic/anionic dye mixture in the absence or presence of co-existed additives (salt and surfactant) wastewater, were also investigated with UV-vis spectrometer. The results showed that the magnetic FeO nanoparticles were loaded readily in situ into ECH/CMC by specific, chemical interactions between COO groups of ECH/CMC and magnetic responsive FeO. The Langmuir isotherm and pseudo-second-order kinetic model provide best correlation with the experimental data for the adsorption of MB onto ECH/CMC and M1-ECH/CMC microspheres, while the Langmuir isotherm and pseudo-first-order kinetic model for M2-ECH/CMC. These microspheres are easily recyclable and exhibit high desorption and adsorption, which suggests that they can be applied as potential environmental adsorbents.
通过反相悬浮法制备了环氧氯丙烷交联羧甲基纤维素微球(ECH/CMC),并通过两种不同方法制备了包裹ECH/CMC微球的磁性FeO纳米颗粒(M-ECH/CMC),并对其进行了成功制备和比较。使用偏光显微镜、扫描电子显微镜、傅里叶变换红外光谱和X射线衍射对它们的结构和形态进行了分析。还用紫外可见光谱仪研究了M1-ECH/CMC在单阳离子染料废水中对亚甲基蓝(MB)的吸附行为,以及在不存在或存在共存添加剂(盐和表面活性剂)的情况下阳离子/阴离子染料混合物废水的吸附行为。结果表明,通过ECH/CMC的COO基团与磁性响应性FeO之间的特定化学相互作用,磁性FeO纳米颗粒很容易原位负载到ECH/CMC中。Langmuir等温线和准二级动力学模型与MB在ECH/CMC和M1-ECH/CMC微球上的吸附实验数据相关性最好,而M2-ECH/CMC的吸附则符合Langmuir等温线和准一级动力学模型。这些微球易于回收,具有高解吸和吸附性能,这表明它们可作为潜在的环境吸附剂应用。