Cobalt-boron-fluoride decorated graphitic carbon nitride composite as a promising candidate catalyst for highly efficient hydrogen production via NaBH4 hydrolysis process

被引:1
|
作者
Kenar, Mehmet Emre [1 ]
Kutluay, Sinan [1 ]
Sahin, Omer [1 ]
Guner, Fatma Elif Genceli [1 ]
机构
[1] Istanbul Tech Univ, Fac Chem & Met Engn, Dept Chem Engn, TR-34469 Maslak, Istanbul, Turkiye
关键词
H-2; production; Catalytic activity; G-C3N4 @Co-B-F catalyst; NaBH4; hydrolysis; Kinetics; SODIUM-BOROHYDRIDE; GREEN SYNTHESIS; AMMONIA BORANE; GENERATION; ENERGY; NANOPARTICLES; REGENERATION; HYDRIDES; STORAGE; OXIDE;
D O I
10.1016/j.ijhydene.2024.09.445
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Herein, we have designed a cost-effective cobalt-boron-fluoride decorated graphitic carbon nitride (gC3N4@Co-B-F) 3 N 4 @Co-B-F) catalyst with a facile reduction method, which exhibits high catalytic activity and reusability in hydrogen (H2) 2 ) production via sodium borohydride (NaBH4) 4 ) hydrolysis process. The textural, structural and morphological characteristics of the fabricated catalysts were confirmed by XRD, FTIR, BET, SEM, EDX, TEM, and XPS characterization methods. Among the catalysts studied, the most efficient g-C3N4@Co-B-F 3 N 4 @Co-B-F catalyst exhibited remarkable catalytic activity with H2 2 production rate (H2PR) 2 PR) of 12813 mLH2 H2 min-- 1 g cat- 1 and turnover frequency (TOF) of 1439 h- 1 at 30 degrees C. The kinetics of H2 2 production via NaBH4 4 hydrolysis was elucidated employing the nth-order and Langmuir-Hinshelwood models. The activation energy (Ea) values calculated by fitting the nth-order and Langmuir-Hinshelwood kinetic models were found to be 26.32 kJ mol-1- 1 and 27.29 kJ mol-1,-1 , respectively. The g-C3N4@Co-B-F 3 N 4 @Co-B-F catalyst continued to exhibit catalytic activity after five consecutive cycles, the H2PR 2 PR value decreased from 12813 to 4394 mLH2 H2 min-- 1 g cat-1 and the TOF value decreased from 1439 to 482 h-1,-1 , indicating structural and regenerative ability. Characterization analyses including SEM images, TEM images, EDX analysis and FTIR spectra of the g-C3N4@Co-B-F 3 N 4 @Co-B-F catalyst after five reuse cycles provided significant findings for the decrease in H2PR 2 PR and TOF values. Th results position the g-C3N4@Co-B-F 3 N4@Co-B-F catalyst as a promising candidate for the further development of H2 2 production technologies. The study also highlights the potential of the g-C3N4@Co-B-F 3 N 4 @Co-B-F catalyst for H2 2 production, demonstrating its ability to provide sustainable solutions for various industrial and energy applications.
引用
收藏
页码:732 / 746
页数:15
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