漆酶
纤维素
双酚A
降级(电信)
复合数
制浆造纸工业
活性炭
废水
Boosting(机器学习)
废物管理
化学
材料科学
复合材料
有机化学
环氧树脂
吸附
工程类
计算机科学
酶
电信
机器学习
作者
Na Li,Fangrui Yu,Xiangrui Meng,C. L. Peng,Xueru Sheng,Jian Zhang,Shanshan Liu,Qingwei Ping,Huining Xiao
摘要
Low enzyme activity is one of the disadvantages of immobilized laccase. In this study, waste Cu2+-loaded activated carbon (Cu-AC) was successfully used in preparing a novel composite support,cellulose / Cu2+-loaded activated carbon beads (C / Cu-AC), and effectively boosted immobilized laccase activity. To achieve optimum conditions for immobilization of laccase, the immobilization time, pH and laccase concentration were examined. The highest immobilized laccase activity (34.21 U/g) was achieved under optimum conditions (T = 4 h, pH = 4, C = 5 g/L) , which was increased by 35.86 % compared to control. In addition, the immobilized laccase showed an outstanding performance in thermostability and reusability compared to free laccases. Moreover, the degradation of BPA by immobilized laccase was carried out, and the optimum degradation conditions were explored. Under such conditions: concentration of BPA was 75 mg / L and pH = 6, the removal yield of BPA reached a maximum of 75.21 % after 70 minutes. Therefore, the utilization of waste Cu-CA is a powerful method to boost immobilized laccase activity and creating a new way to high value treatment of waste Cu-CA.
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