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New functionalization approach synthesis of Sulfur doped, Nitrogen doped and Co-doped porous carbon: Superior metal-free Carbocatalyst for the catalytic oxidation of aqueous organics pollutants
被引:69
作者:
Anfar, Zakaria
[1
,2
,3
]
El Fakir, Abdellah Ait
[1
,2
]
Zbair, Mohamed
[4
]
Hafidi, Zakaria
[5
]
Amedlous, Abdallah
[6
]
Majdoub, Mohammed
[6
]
Farsad, Salaheddine
[1
]
Amjlef, Asma
[1
]
Jada, Amane
[2
,3
]
El Alem, Noureddine
[1
]
机构:
[1] Ibn Zohr Univ, Lab Mat & Environm LME, Agadir 80000, Morocco
[2] Haute Alsace Univ, Inst Mat Sci Mulhouse IS2M, F-68100 Mulhouse, France
[3] Strasbourg Univ, F-67081 Strasbourg, France
[4] Chouaib Doukkali Univ, Lab Catalysis & Mat Corros LCCM, El Jadida 24000, Morocco
[5] Univ Mohammed 5, Ecole Normale Super Rabat, Ctr Sci Mat, Lab Physicochim Mat Inorgan & Organ, Rabat, Morocco
[6] Hassan II Univ, Lab Mat Catalysis & Valorizat Nat Resources, Casablanca 20650, Morocco
关键词:
Almond shell;
Green synthesis;
Functional carbocatalyst;
Catalysis;
Degradation;
ACTIVATED CARBON;
ENHANCED ACTIVATION;
HYDROGEN EVOLUTION;
ADSORPTION;
GRAPHENE;
PEROXYMONOSULFATE;
DEGRADATION;
SURFACE;
REMOVAL;
PERSULFATE;
D O I:
10.1016/j.cej.2020.126660
中图分类号:
X [环境科学、安全科学];
学科分类号:
08 ;
0830 ;
摘要:
New green synthesis methods of novel commercially applicable carbocatalysts suitable for the catalytic oxidation of organic pollutants, remain a challenge. Herein, Nitrogen doped (N-PC), Sulfur doped (S-PC) and Co-doped (N, S-PC) porous carbon, were synthesized via a new facile environmentally functionalization approach followed by pyrolysis. Thus, Almond Shell (AS) as Bio-sourced material was used for porous carbon (PC) preparation as support. Thereafter, the introduction of Melamine, Diphenyl Disulfide and Thiourea on the PC matrix with high-COCl- and -CCl- groups facilitated the surface functionalization, and allowed us the introduction of high N and S heteroatoms contents in the PC networks surface. It was found that the optimized carbocatalysts could effectively activate PS, and exhibited excellent catalytic performances for the organic pollutants degradation, with an exceptionally low activation energy and fast kinetic reaction. Based on a systematic comparison, it was found that the N-PC exhibited the superior catalytic activity for activating the PS and degrading various organic pollutants. Such superior catalytic activity of the N-PC Carbocatalyst resulted from its high surface area, its low defect degree with the higher content of Graphitic-N. In addition, all experimental and theoretical investigations demonstrated the critical role of graphitic-N for the PS activation. It is expected that the doping process by N will significantly break the chemical inertness of the PC network and will make the N-PC surface more positively charged accelerating hence its interaction with the negatively charged S2O82-. Furthermore, the O-1(2) was found to be the predominant reactive oxygen species (ROS) as assessed by radical scavenging tests and EPR experi-ments. The carbocatalysts were not easily influenced by the water aqueous phase, which give us more obvious advantages over the PS activation.
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页数:18
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