光电阴极
降级(电信)
化学
键裂
羟基化
苯
光催化
硝基
光化学
催化作用
核化学
有机化学
电信
物理
电子
酶
量子力学
计算机科学
烷基
作者
Xia Hu,Jiangzhou Qin,Yubao Wang,Jiajia Wang,Aijiang Yang,Yiu Fai Tsang,Baojun Liu
标识
DOI:10.1016/j.jcis.2022.08.040
摘要
The abuse of Chloramphenicol (CAP) has become the increasingly serious environmental problem for its harmfulness and toxicity. A novel strategy was achieved by photocatalysis coupled with microbial fuel cell (Photo-MFC) over Ni/MXene photocathode for enhancing the degradation efficiency of (CAP). It was demonstrated that the best degradation efficiency of CAP can reach 82.62% (original concentration of 30 mg/L) after 36 h under the optimal conditions (pH = 2). Based on density functional theory (DFT) calculations and high-performance liquid chromatography-mass (HPLC-MS) spectrometry, it was speculated that the degradation mechanism of CAP in Photo-MFC over Ni/MXene photoelectrode was achieved by destroying the two asymmetric centers and nitro, including the hydrodechlorination, nitro reduction reaction, hydroxylation reaction, cleavage of CN bond and ring-opening reaction of benzene ring. Finally, the ecotoxicity evaluation of the degradation products showed that the CAP degradation in the Ni/MXene modified photo-MFC system showed a remarkable tendency to the low-toxicity level.
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