Jiangsu Key Laboratory of Environmental Engineering, Jiangsu Academy of Environmental Sciences, 176# Jiangdong Beilu Road, Nanjing 210036, China.
Molecules. 2021 Aug 30;26(17):5267. doi: 10.3390/molecules26175267.
Polymeric adsorbents with different properties were synthesized via suspension polymerization. Equilibrium and kinetics experiments were then performed to verify the adsorption capacities of the resins for molecules of various sizes. The adsorption of small molecules reached equilibrium more quickly than the adsorption of large molecules. Furthermore, the resins with small pores are easy to lower their adsorption capacities for large molecules because of the pore blockage effect. After amination, the specific surface areas of the resins decreased. The average pore diameter decreased when the resin was modified with either primary or tertiary amines, but the pore diameter increased when the resin was modified with secondary amines. The phenol adsorption capacities of the amine-modified resins were reduced because of the decreased specific area. The amine-modified resins could more efficiently adsorb reactive brilliant blue 4 owing to the presence of polar functional groups.
通过悬浮聚合合成了具有不同性质的聚合物吸附剂。然后进行了平衡和动力学实验,以验证树脂对不同大小分子的吸附能力。小分子的吸附比大分子的吸附更快达到平衡。此外,由于孔阻塞效应,小孔径的树脂很容易降低其对大分子的吸附能力。胺化后,树脂的比表面积降低。当用伯胺或叔胺改性树脂时,平均孔径减小,但当用仲胺改性树脂时,孔径增大。由于比表面积的降低,胺改性树脂的苯酚吸附能力降低。由于存在极性官能团,胺改性树脂可以更有效地吸附活性艳蓝 4。