Zhang Gaosheng, Qu Jiuhui, Liu Huijuan, Cooper Adrienne T, Wu Rongcheng
State key Laboratory of Environmental Aquatic Chemistry, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.
Chemosphere. 2007 Jun;68(6):1058-66. doi: 10.1016/j.chemosphere.2007.01.081. Epub 2007 Mar 29.
CuFe2O4/activated carbon magnetic adsorbents, which combined the adsorption features of activated carbon with the magnetic and the excellent catalytic properties of powdered CuFe2O4, were developed using a simple chemical coprecipitation procedure. The prepared magnetic composites can be used to adsorb acid orange II (AO7) in water and subsequently, easily be separated from the medium by a magnetic technique. CuFe2O4/activated carbon magnetic adsorbents with mass ratio of 1:1, 1:1.5 and 1:2 were prepared. Magnetization measurements, BET surface area measurements, powder XRD and SEM were used to characterize the prepared adsorbents. The results indicate that the magnetic phase present is spinel copper ferrite and the presence of CuFe2O4 did not significantly affect the surface area and pore structure of the activated carbon. The adsorption kinetics and adsorption isotherm of acid orange II (AO7) onto the composites at pH 5.2 also showed that the presence of CuFe2O4 did not affect the adsorption capacity of the activated carbon. The thermal decomposition of AO7 adsorbed on the activated carbon and the composite was investigated by in situ FTIR, respectively. The results suggest that the composite has much higher catalytic activity than that of activated carbon, attributed to the presence of CuFe2O4. The variation of the adsorption capacity of the composites after several adsorption-regeneration cycles has also been studied.
采用简单的化学共沉淀法制备了 CuFe₂O₄/活性炭磁性吸附剂,该吸附剂结合了活性炭的吸附特性与磁性以及粉末状 CuFe₂O₄ 的优异催化性能。所制备的磁性复合材料可用于吸附水中的酸性橙 II(AO7),随后通过磁技术可轻松从介质中分离出来。制备了质量比为 1:1、1:1.5 和 1:2 的 CuFe₂O₄/活性炭磁性吸附剂。利用磁化测量、BET 表面积测量、粉末 X 射线衍射(XRD)和扫描电子显微镜(SEM)对所制备的吸附剂进行了表征。结果表明,存在的磁性相为尖晶石型铜铁氧体,且 CuFe₂O₄ 的存在并未显著影响活性炭的表面积和孔结构。在 pH 为 5.2 时,酸性橙 II(AO7)在复合材料上的吸附动力学和吸附等温线也表明,CuFe₂O₄ 的存在并未影响活性炭的吸附容量。分别通过原位傅里叶变换红外光谱(FTIR)研究了吸附在活性炭和复合材料上的 AO7 的热分解情况。结果表明,由于 CuFe₂O₄ 的存在,复合材料具有比活性炭更高的催化活性。还研究了复合材料在几个吸附 - 再生循环后吸附容量的变化情况。