Department of Chemistry, Graduate School of Natural and Applied Sciences, Eskişehir Osmangazi University, 26480, Eskişehir, Turkey.
Department of Medical Services and Techniques, İzmir Kavram Vocational School, Çengelkoy, Üsküdar, 34680, İstanbul, Turkey.
Environ Sci Pollut Res Int. 2019 Sep;26(25):25834-25843. doi: 10.1007/s11356-019-05716-8. Epub 2019 Jul 3.
A new magnetic bio-based composite was designed by the magnetic modification of passively immobilized fungal cells. It was utilized for biosorptive decolorization of reactive dye-contaminated aquatic media. As a greener option, waste tea leaf tissues were used for the first time as an immobilization matrix for microbial cells. Immobilized magnetic cells (biomagsorbent) could be effectively used in both batch and dynamic flow mode treatment processes and real environmental application. Rapid equilibrium and high decolorization yields were observed for the target dye (reactive violet 1). The temperature did not significantly affect the process. Langmuir and the pseudo-second-order models could be better used to fit the process equilibrium and kinetics, respectively. Maximum monolayer sorption capacity was 152.88 mg g. High biosorption and desorption yields for 50 consecutive dynamic flow decolorization cycles were recorded as striking results. The breakthrough time was 3420 min. Simulated and industrial water treatment performance of biomagsorbent was found to be more than 90%. The mechanism was evaluated by IR and zeta potential analysis. The magnetic character of the sorbent provided good mechanical durability, easy separation, and excellent regeneration ability. Consequently, this work provides new insight into scalar enhancement of water treatment.
一种新型的磁性生物基复合材料是通过被动固定化真菌细胞的磁性修饰设计的。它被用于吸附法去除含有活性染料的水相介质中的染料。作为一种更环保的选择,废茶叶组织首次被用作微生物细胞的固定化基质。固定化磁性细胞(生物磁珠)可有效地用于间歇和动态流动模式处理过程以及实际的环境应用中。对于目标染料(活性艳紫 1),可以观察到快速的平衡和高脱色率。温度对该过程没有显著影响。Langmuir 和拟二级动力学模型分别可以更好地拟合过程平衡和动力学。最大单层吸附容量为 152.88mg/g。连续 50 次动态流动脱色循环的高生物吸附和解吸率是一个显著的结果。穿透时间为 3420min。生物磁珠对模拟和工业水处理的性能超过 90%。通过红外和zeta 电位分析评估了该机制。该吸附剂的磁性提供了良好的机械耐久性、易于分离和出色的再生能力。因此,这项工作为水的处理提供了新的见解。