In the present work, we isolated and identified Aspergillus sydowii NYKA 510 as the most potent laccase producer. Its medium constituents were optimized to produce the highest possible amount of laccase, which was after 7 days at 31°C and pH 5.2. Banana peel and peptone excelled in inducing laccase production at concentrations of 15.1 and 2.60 g/l, respectively. Addition of copper sulfate elevated enzyme yield to 145%. The fungus was employed in a microbial fuel cell (MFC). The best performance was obtained at 2000 Ω achieving 0.76 V, 380 mAm-2, 160 mWm-2, and 0.4 W. A project to design a self-sufficient lighting unit was implemented by employing a system of 2 sets of 4 MFCs each, connected in series, for electricity generation. A scanning electron microscopy image of A. sydowii NYKA 510 was utilized in algorithmic form generation equations for the design. The mixed patterning and patterned customized mass approach were developed by the authors and chosen for application in the design.

译文

在目前的工作中,我们分离并鉴定了奈卡曲霉510是最有效的漆酶生产者。优化其培养基成分以产生最高可能量的漆酶,这是在31 °C和pH 5.2下7天后。香蕉皮和蛋白ept分别在15.1和2.60g/l的浓度下诱导漆酶产生。硫酸铜的添加提高了145% 的酶产量。真菌用于微生物燃料电池 (MFC)。在2000 Ω 处获得最佳性能,达到0.76 V、380 mAm-2、160 mWm-2和0.4 W。通过采用2套串联连接的4个mfc的系统来实现设计自给自足的照明单元的项目。将A. sydowii NYKA 510的扫描电子显微镜图像用于设计的算法形式生成方程。作者开发了混合图案和图案定制的质量方法,并选择在设计中应用。

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