Ren Longfang, Tang Zheng, Du Jinyao, Chen Lu, Qiang Taotao
College of Bioresources Chemical and Materials Engineering, Shaanxi University of Science & Technology, Xi'an 710021, Shaanxi, China; National Demonstration Center for Experimental Light Chemistry Engineering Education (Shaanxi University of Science & Technology), Xi'an 710021, China.
College of Bioresources Chemical and Materials Engineering, Shaanxi University of Science & Technology, Xi'an 710021, Shaanxi, China; National Demonstration Center for Experimental Light Chemistry Engineering Education (Shaanxi University of Science & Technology), Xi'an 710021, China.
J Hazard Mater. 2021 Sep 5;417:126130. doi: 10.1016/j.jhazmat.2021.126130. Epub 2021 May 16.
Novel composite foam (CMCTS-PUF-s) was prepared by immobilizing carboxymethyl chitosan (CMCTS) on polyurethane foam (PUF) in which amino groups in CMCTS reacted with isocyanate groups in polyurethane prepolymer. The adsorption capacity of the optimal composite foam (CMCTS-PUF-5) reached to 118.2 mg/g with 5% CMCTS loading. The removal rate to methylene blue (MB) was up to 97.1%, which was obviously higher than 18.9% of PUF. After recycling for five times, the removal rate still reached 83.2%, which strongly proved the excellent reusability of immobilizing CMCTS modified PUF. The characterization results of FTIR and TG showed that CMCTS was well loaded on PUF by covalent bond. The Young's modulus and tensile strength of CMCTS-PUF-5 were increased by 252% and 97% compared with that of PUF. MIP characterization result showed the porosity of CMCTS-PUF-5 was 73.99% and the pore sizes were mainly distributed between 50 and 150 µm, which provide sufficient diffusion channels and active sites for MB dyes. The adsorption kinetics and isotherm proved pseudo-second-order kinetic model and Langmuir isotherm model could well describe the adsorption process of CMCTS-PUF-5. Therefore, CMCTS-PUF-s presents excellent recoverability, high stability and attractive adsorption efficiency, shows the potential application in future treatment of dye wastewater.
通过将羧甲基壳聚糖(CMCTS)固定在聚氨酯泡沫(PUF)上制备了新型复合泡沫(CMCTS-PUF-s),其中CMCTS中的氨基与聚氨酯预聚物中的异氰酸酯基团反应。最佳复合泡沫(CMCTS-PUF-5)在CMCTS负载量为5%时,吸附容量达到118.2 mg/g。对亚甲基蓝(MB)的去除率高达97.1%,明显高于PUF的18.9%。循环使用五次后,去除率仍达到83.2%,有力地证明了固定化CMCTS改性PUF具有优异的可重复使用性。FTIR和TG表征结果表明,CMCTS通过共价键很好地负载在PUF上。与PUF相比,CMCTS-PUF-5的杨氏模量和拉伸强度分别提高了252%和97%。MIP表征结果表明,CMCTS-PUF-5的孔隙率为73.99%,孔径主要分布在50至150 µm之间,为MB染料提供了足够的扩散通道和活性位点。吸附动力学和等温线证明,准二级动力学模型和朗缪尔等温线模型能够很好地描述CMCTS-PUF-5的吸附过程。因此,CMCTS-PUF-s具有优异的可回收性、高稳定性和诱人的吸附效率,在未来染料废水处理中具有潜在的应用前景。