血红素
催化作用
降级(电信)
化学
电子转移
碳纳米管
氧化还原
双金属片
无机化学
光化学
化学工程
材料科学
纳米技术
有机化学
血红素
计算机科学
工程类
酶
电信
作者
Siyu Hou,Haizhu Zhang,Pu Wang,Ming Zhang,Ping Yang
标识
DOI:10.1016/j.jece.2022.108426
摘要
Heterogeneous catalysis of organic contaminants in water has been a research concern. In this study, Fe-Mn bimetallic MOF was prepared with low concentration of hemin (0.18 mmol) as Fe source. Meanwhile, multiwall carbon nano tube (CNT) was further decorated on it. Finally, CNT-hemin/Mn-MOF with high peroxymonosulfate (PMS) catalytic effect was successfully synthesized. CNT-hemin/Mn-MOFs could catalytic PMS to degrade BPA within 30 min. This excellent catalytic effect was attributed to the reinforced redox reaction between Mn and the Fe of hemin, which would transfer more electrons. Furthermore, CNT and the N elements of hemin could promote electron transfer in this process. In addition, the degradation mechanism of BPA by CNT-hemin/Mn-MOF activated PMS system was also proposed. Results manifested that the non-free radical degradation pathway initiated by 1 O 2 and the free radical degradation pathway dominated by·OH were the main reasons for BPA degradation. Besides, a small amount of·SO 4 − ,·O 2 - and direct electron transfer participated degradation. Two BPA degradation pathways have also been deduced. This work may broaden the horizons for the development of MOFs synthesis for the degradation of environmental pollutants. • CNT-hemin/Mn-MOF was successfully prepared using hemin as Fe source. • CNT-hemin/Mn-MOF exhibited prominent catalytic performance and wide pH application range for BPA degradation. • CNT and N of hemin promoted electron transfer. • 1 O 2 and·OH were dominant reactive species.
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