Jankowska Katarzyna, Ciesielczyk Filip, Bachosz Karolina, Zdarta Jakub, Kaczorek Ewa, Jesionowski Teofil
Institute of Chemical Technology and Engineering, Faculty of Chemical Technology, Poznan University of Technology, Berdychowo 4, PL-60965 Poznan, Poland.
Materials (Basel). 2019 Apr 16;12(8):1252. doi: 10.3390/ma12081252.
Nowadays, novel and advanced methods are being sought to efficiently remove dyes from wastewaters. These compounds, which mainly originate from the textile industry, may adversely affect the aquatic environment as well as living organisms. Thus, in presented study, the synthesized ZrO-SiO and Cu-doped ZrO-SiO oxide materials were used for the first time as supports for laccase immobilization, which was carried out for 1 h, at pH 5 and 25 °C. The materials were thoroughly characterized before and after laccase immobilization with respect to electrokinetic stability, parameters of the porous structure, morphology and type of surface functional groups. Additionally, the immobilization yields were defined, which reached 86% and 94% for ZrO-SiO-laccase and ZrO-SiO/Cu-laccase, respectively. Furthermore, the obtained biocatalytic systems were used for enzymatic decolorization of the Remazol Brilliant Blue R (RBBR) dye from model aqueous solutions, under various reaction conditions (time, temperature, pH). The best conditions of the decolorization process (24 h, 30 °C and pH = 4) allowed to achieve the highest decolorization efficiencies of 98% and 90% for ZrO-SiO-laccase and ZrO-SiO/Cu-laccase, respectively. Finally, it was established that the mortality of in solutions after enzymatic decolorization was lower by approx. 20% and 30% for ZrO-SiO-laccase and ZrO-SiO/Cu-laccase, respectively, as compared to the solution before enzymatic treatment, which indicated lower toxicity of the solution. Thus, it should be clearly stated that doping of the oxide support with copper ions positively affects enzyme stability, activity and, in consequence, the removal efficiency of the RBBR dye.
如今,人们正在寻找新颖且先进的方法来高效去除废水中的染料。这些主要源自纺织工业的化合物可能会对水生环境以及生物体产生不利影响。因此,在本研究中,首次使用合成的ZrO-SiO和铜掺杂的ZrO-SiO氧化物材料作为漆酶固定化的载体,固定化过程在pH值为5、温度为25℃的条件下进行1小时。在漆酶固定化前后,对材料的电动稳定性、多孔结构参数、形态以及表面官能团类型进行了全面表征。此外,还确定了固定化产率,ZrO-SiO-漆酶和ZrO-SiO/Cu-漆酶的固定化产率分别达到86%和94%。此外,在各种反应条件(时间、温度、pH值)下,将所得的生物催化体系用于对模型水溶液中活性艳蓝R(RBBR)染料进行酶促脱色。脱色过程的最佳条件(24小时、30℃和pH = 4)使得ZrO-SiO-漆酶和ZrO-SiO/Cu-漆酶的脱色效率分别达到最高的98%和90%。最后确定,与酶促处理前的溶液相比,酶促脱色后溶液中[未提及的生物]的死亡率分别降低了约20%和30%,这表明溶液的毒性较低。因此,应该明确指出,用铜离子掺杂氧化物载体对酶的稳定性、活性以及活性艳蓝R染料的去除效率有积极影响。