Jiangsu Engineering Technology Research Centre of Functional Textiles, Jiangnan University, Wuxi 214122, China.
Jiangsu Engineering Technology Research Centre of Functional Textiles, Jiangnan University, Wuxi 214122, China; Centre of Biological Engineering, University of Minho, Campus de Gualtar, 4710-057 Braga, Portugal.
Int J Biol Macromol. 2023 Apr 1;233:123410. doi: 10.1016/j.ijbiomac.2023.123410. Epub 2023 Jan 26.
Laccase have received extensive attention in pollutant degradation, but its practical viability is largely affected by the poor stability, easy inactivation and difficulty in recycling for the present. Enzyme immobilization offers enhanced enzyme stability and constructs a synergistic system for the efficient adsorption and degradation of pollutants. In this study, bimetallic Cu/Zn ZIFs were synthesized by co-precipitation method as the protective carrier for laccase. Lac@Cu-ZIF-90 exhibited a good protective effect on laccase and showed a high operational stability in various interfering environments. Free laccase was completely inactivated at pH 7.0 but Lac@Cu-ZIF-90 could maintain 50.0 % activity. Benefiting from the encapsulation of laccase and porous structure of Cu-ZIF-90, the Lac@Cu-ZIF-90 exhibited decolorization efficiency for dye wastewater. More importantly, the Lac@Cu-ZIF-90 could be recovered from the dye solution and re-used to adsorb and degrade the synthetic dye for multiple times, its removal rate for reactive deep green was only decreased about 10.8 % after five cycles. This work reveals that the Cu-ZIF-90 provides a favorable environment for laccase and as a protective layer to relieve the conformation change, which provides an efficient strategy to decolorize dye wastewater. Therefore, Cu-ZIF-90 promises applications as enzymes encapsulation has great potential in water remediation.
漆酶在污染物降解方面受到了广泛关注,但由于目前存在稳定性差、易失活和回收困难等问题,其实际应用受到了很大的限制。酶固定化技术提供了增强酶稳定性的方法,并构建了一个协同体系,用于高效吸附和降解污染物。在本研究中,采用共沉淀法合成了双金属 Cu/Zn ZIFs 作为漆酶的保护载体。Lac@Cu-ZIF-90 对漆酶表现出良好的保护作用,并在各种干扰环境下显示出较高的操作稳定性。游离漆酶在 pH 7.0 时完全失活,但 Lac@Cu-ZIF-90 仍能保持 50.0%的活性。得益于漆酶的封装和 Cu-ZIF-90 的多孔结构,Lac@Cu-ZIF-90 对染料废水具有脱色效率。更重要的是,Lac@Cu-ZIF-90 可以从染料溶液中回收并重复用于吸附和降解合成染料多次,其对活性深绿的去除率在五次循环后仅下降了约 10.8%。这项工作表明,ZIF-90 为漆酶提供了有利的环境,并作为一种保护层来缓解构象变化,为染料废水的脱色提供了一种有效的策略。因此,ZIF-90 作为酶封装的一种有前途的方法,在水修复方面具有巨大的应用潜力。