Inducing laccase activity in white rot fungi using copper ions and improving the efficiency of azo dye treatment with electricity generation using microbial fuel cells

被引:31
|
作者
Liu, Shu-Hui [1 ]
Tsai, Shen-Long [2 ]
Guo, Pei-Yu [1 ]
Lin, Chi-Wen [1 ,3 ]
机构
[1] Natl Yunlin Univ Sci & Technol, Dept Safety Hlth & Environm Engn, 123 Univ Rd Sec 3, Touliu 64002, Yunlin, Taiwan
[2] Natl Taiwan Univ Sci & Technol, Dept Chem Engn, 43,Keelung Rd,Sec 4, Taipei 10607, Taiwan
[3] Natl Yunlin Univ Sci & Technol, Touliu, Yunlin, Taiwan
关键词
Acid orange 7 (AO-7); Microbial fuel cell (MFC); White rot fungus (WRF); Laccase activity; Electricity generation; Decolorization; SOLID-STATE FERMENTATION; ACID ORANGE 7; WASTE-WATER; LIGNINOLYTIC ENZYMES; ELECTRON-TRANSFER; AIR CATHODE; DECOLORIZATION; DEGRADATION; MEMBRANE; CARBON;
D O I
10.1016/j.chemosphere.2019.125304
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
This work presents a white rot fungus-microbial fuel cell (WRF-MFC) that uses WRF that is grown at its cathode. Adding Cu2+ to the fungi-containing solid medium stimulated WRF-secreting laccase, which catalyzed the redox reaction in the MFC and thereby promoting the generation of electricity. Adding 12.5 mg L-1 Cu2+ to a G. lucidum-containing medium provided the greatest laccase stimulation and increased the laccase activity by a factor of 1.6. Adding 12.5 mg L-1 Cu2+ to the WRF chamber of WRFMFC increased its decolorization of Acid Orange 7 (AO-7) and increased its power density to 223 mW m(-2), which was 1.77 times that of an MFC without WRF. The enhancement of decolorization and electricity generation improved the performance of the WRF-MFC, indicating that a laccase-catalyzed cathode has great potential effectiveness in microbial fuel cells. (C) 2019 Elsevier Ltd. All rights reserved.
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页数:7
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