College of Chemistry, Chemical Engineering and Materials Science, Collaborative Innovation Center of Suzhou Nano Science and Technology, Soochow University, Suzhou, Jiangsu, 215123, China.
College of Chemistry, Chemical Engineering and Materials Science, Collaborative Innovation Center of Suzhou Nano Science and Technology, Soochow University, Suzhou, Jiangsu, 215123, China.
Chemosphere. 2022 Jan;287(Pt 3):132291. doi: 10.1016/j.chemosphere.2021.132291. Epub 2021 Sep 20.
A silk fibroin silicon-based composite aerogel (SSA) has been modified via a SuFEx reaction for application in the adsorption of anionic pollutants and antimicrobials in water. The tyrosine fragment in the silk fibroin was modified by a high yielding SuFEx click reaction. A quaternary ammonium salt functionality was introduced into the silk fibroin protein and the modified silk fibroin protein was crosslinked with tetraethyl orthosilicate. The aerogel was then prepared by freeze-drying. The aerogel obtained has biocompatibility and biodegradability properties. Four types of dyes (Methyl orange, Rhodamine B, Methylene blue and Acid red) were applied as targets and the saturated adsorption amounts were calculated. The adsorption behavior of the dyes towards SSA was studied by fitting Langmuir and Freundlich adsorption models. A pseudo-first order kinetic model and a pseudo-second order kinetic model were used to study the kinetics of the adsorption process. After 6 cycles, the removal rate of methyl orange by SSA remained at 81.25%. The adsorption capacity and anti-interference ability of SSA on some other polluting anions such as PO and CrO were also measured and the efficiency adsorption reached up to 70.94% and 77.91%, respectively. The antibacterial effect of SSA was evaluated with Escherichia coli and Staphylococcus aureus as representative examples.
一种丝素蛋白硅基复合气凝胶(SSA)已通过 SuFEx 反应进行改性,以应用于水中阴离子污染物和抗菌剂的吸附。丝素蛋白中的酪氨酸片段通过高产率的 SuFEx 点击反应进行修饰。将季铵盐官能团引入丝素蛋白中,并将修饰后的丝素蛋白与正硅酸乙酯交联。然后通过冷冻干燥制备气凝胶。所得到的气凝胶具有生物相容性和生物降解性。将四种染料(甲基橙、罗丹明 B、亚甲蓝和酸性红)用作目标物,并计算其饱和吸附量。通过拟合 Langmuir 和 Freundlich 吸附模型研究了染料对 SSA 的吸附行为。采用拟一级动力学模型和拟二级动力学模型研究了吸附过程的动力学。经过 6 次循环后,SSA 对甲基橙的去除率仍保持在 81.25%。还测量了 SSA 对一些其他污染阴离子(如 PO 和 CrO)的吸附容量和抗干扰能力,吸附效率分别达到了 70.94%和 77.91%。以大肠杆菌和金黄色葡萄球菌为例,评价了 SSA 的抗菌效果。