Zhu Jian, Lei Ming-Jing, Wang Ping, Zhang Wei-Li, Chen Yang
College of Environmental Science and Engineering, Central South University of Forestry and Technology, Changsha 410004, China.
Huan Jing Ke Xue. 2016 Aug 8;37(8):3177-3185. doi: 10.13277/j.hjkx.2016.08.045.
As an alternative solution to the limitations in adsorption properties of natural diatomite caused by its physicochemical structure defects and modification effects to diatomite using conventional physical/chemical methods, the diatomite was pillared using poly-hydroxy-aluminum to improve its adsorption properties. The change in physicochemical characteristics of the diatomite before and after pillaring were analyzed by Scanning Electron Microscope (SEM), Fourier Transform Infrared (FTIR) and X-ray Diffraction (XRD). The difference in surface properties of diatomite and its adsorption characteristics of Cu, Zn before and after pillaring were analyzed at the same time. The obtained results showed that the optimal conditions for diatomite pillaring were 2.2 of the [OH]/[Al] molar ratio, 1.8 mol·L of potassium chloride, 10 mmol·g of the Al/diatomite ratio, 60℃ of the pillaring temperature, 24 h of the pillaring time, 200℃ of the aging temperature, and 0.5 h of the aging time. After pillaring, the poly-hydroxy-aluminum was successfully exchanged into the diatom shell, forming available pillars, which increased channel spacing, expanded adsorption reaction interface, increased the number of microporous surface hydroxy groups and enhanced the microporous surface activity. The Cu, Zn adsorption data obtained both before and after pillaring well fitted the Langmuir isotherm model and the pseudo-second-order kinetics model. After pillaring, the adsorption capacity of Cu, Zn onto diatomite reached 7.491, 11.312 mg·g, with an increasing percentage of 32.9%, 33.3% respectively, the diatomite adsorption capacity got great improvement.
作为解决天然硅藻土因其物理化学结构缺陷导致吸附性能受限以及采用传统物理/化学方法对硅藻土进行改性效果不佳的替代解决方案,使用聚羟基铝对硅藻土进行柱撑以改善其吸附性能。通过扫描电子显微镜(SEM)、傅里叶变换红外光谱(FTIR)和X射线衍射(XRD)分析了柱撑前后硅藻土物理化学特性的变化。同时分析了硅藻土柱撑前后的表面性质差异及其对铜、锌的吸附特性。结果表明,硅藻土柱撑的最佳条件为:[OH]/[Al]摩尔比为2.2、氯化钾浓度为1.8 mol·L、Al/硅藻土比例为10 mmol·g、柱撑温度为60℃、柱撑时间为24 h、老化温度为200℃、老化时间为0.5 h。柱撑后,聚羟基铝成功交换进入硅藻壳层,形成有效柱撑,增加了通道间距,扩大了吸附反应界面,增加了微孔表面羟基数量,增强了微孔表面活性。柱撑前后获得的铜、锌吸附数据均很好地拟合了朗缪尔等温线模型和伪二级动力学模型。柱撑后,硅藻土对铜、锌的吸附容量分别达到7.491、11.312 mg·g,增加百分比分别为32.9%、33.3%,硅藻土吸附容量得到了极大提高。