College of Urban Construction, Nanjing Tech University, Puzhu Road 30, Nanjing, 11816, People's Republic of China.
Environ Sci Pollut Res Int. 2024 Jan;31(4):5132-5143. doi: 10.1007/s11356-023-31542-0. Epub 2023 Dec 19.
The extensive use and discharge of toluidine blue have caused serious problems to the water environment. As a green biocatalyst, laccase has the ability to decolorize the dyes, but it is limited by poor reusability and low stability. Metal-organic frameworks (MOFs) are a good platform for enzyme immobilization. However, due to the weak dispersion of MOFs, the enzyme activity is inevitably inhibited. Herein, we proposed to use graphene oxide (GO) as the dispersion medium of mesoporous ZIF-8 to construct MZIF-8/GO bi-carrier for laccase (FL) immobilization. On account of the narrower bandgap energy of FL@MZIF-8/GO (4.07 eV) than that of FL@MZIF-8 (4.69 eV), electron transport was enhanced which later increased the catalytic activity of the immobilized enzyme. Meanwhile, the improved hydrophilicity characterized by contact angle and full infiltration time further promoted the efficiency of the enzymatic reaction. Benefiting from such regulatory effects of GO, the composite showed excellent storage stability and reusability, as well as multifaceted enhancements including pH, thermal, and solvent adaptation. On the basis of the characterized synergistic effect of adsorption and degradation, FL@MZIF-8/GO was successfully applied to the degradation of toluidine blue (TB) with a removal rate of 94.8%. Even in actual treated wastewater, the highest removal rate still reached more than 80%. Based on the inner mechanism analysis and the universality study, this material is expected to be widely used in the degradation of pollutants in real water under complex environmental conditions.
甲苯胺蓝的广泛使用和排放对水环境造成了严重的问题。漆酶作为一种绿色生物催化剂,具有染料脱色的能力,但由于其重复使用性差和稳定性低而受到限制。金属-有机骨架(MOFs)是酶固定化的良好平台。然而,由于 MOFs 的分散性较弱,酶的活性不可避免地受到抑制。在这里,我们提出使用氧化石墨烯(GO)作为介孔 ZIF-8 的分散介质,构建用于固定漆酶(FL)的 MZIF-8/GO 双载体。由于 FL@MZIF-8/GO(4.07 eV)的能带隙能量比 FL@MZIF-8(4.69 eV)更窄,因此电子传输得到增强,进而提高了固定化酶的催化活性。同时,接触角和完全渗透时间所表现出的改善的亲水性进一步促进了酶反应的效率。受益于 GO 的这种调节作用,该复合材料表现出优异的储存稳定性和可重复使用性,以及多方面的增强,包括 pH、热和溶剂适应性。基于吸附和降解的协同作用的特征,FL@MZIF-8/GO 成功地应用于甲苯胺蓝(TB)的降解,去除率达到 94.8%。即使在实际处理的废水中,最高去除率仍超过 80%。基于内在机制分析和普遍性研究,该材料有望在复杂环境条件下广泛应用于实际水中污染物的降解。