College of Chemical Engineering, Qinghai University, Xining 810016, China.
College of Chemical Engineering, Qinghai University, Xining 810016, China.
Int J Biol Macromol. 2023 Nov 1;251:126403. doi: 10.1016/j.ijbiomac.2023.126403. Epub 2023 Aug 18.
A composite aerogel with good mechanical properties and adjustable physical properties was synthesized by a sol-gel technique on the base of gelatin for the boron adsorption from water solution. The adsorption key variables, for instance, initial boron concentration (C) (900-1100 mg/L), the contact time (t) (8-9 h), and pH (9-11), were optimized using central composite design to obtain improved boron adsorption performance of epichlorohydrin-modified gelatin (EMG)/N-methyl-d-glutamine (NMDG) aerogel loaded with hydroxylated carbon nanotubes (EMG@NMDG). The adsorption followed the pseudo-second-order and Freundlich model. At pH of 10, C of 1000 mg/L and t of 10 h, the largest adsorbed amount of EMG@NMDG was 85.79 mg/g. Regeneration experiments were carried out by eluting the adsorbent using HCl. The analysis showed that the adsorption in actual brine was 62.65 mg/g. Therefore, the developed EMG@NMDG aerogel has potential value for the boron extraction from brine and wastewater.
一种具有良好机械性能和可调物理性能的复合气凝胶,是在明胶的基础上通过溶胶-凝胶技术合成的,用于从水溶液中吸附硼。采用中心复合设计优化了吸附关键变量,如初始硼浓度(C)(900-1100mg/L)、接触时间(t)(8-9h)和 pH(9-11),以提高载有羟基化碳纳米管的环氧氯丙烷改性明胶(EMG)/N-甲基-D-谷氨酰胺(NMDG)气凝胶的硼吸附性能。吸附符合准二级和 Freundlich 模型。在 pH 值为 10、C 为 1000mg/L 和 t 为 10h 的条件下,EMG@NMDG 的最大吸附量为 85.79mg/g。通过使用 HCl 洗脱吸附剂进行了再生实验。分析表明,实际卤水中的吸附量为 62.65mg/g。因此,开发的 EMG@NMDG 气凝胶具有从卤水中提取硼和废水的潜在价值。