Catalytic Selective Oxidation of β-O-4 Bond in Phenethoxybenzene as a Lignin Model Using (TBA)5[PMo10V2O40] Nanocatalyst: Optimization of Operational Conditions

被引:1
|
作者
Diaz, Juan [1 ,2 ]
Pizzio, Luis R. [3 ]
Pecchi, Gina [1 ,2 ]
Campos, Cristian H. [1 ]
Azocar, Laura [4 ]
Briones, Rodrigo [5 ]
Romero, Romina [1 ]
Troncoso, Eduardo [1 ,2 ]
Mendez-Rivas, Camila [1 ]
Melin, Victoria [1 ]
Murillo-Sierra, Juan C. [1 ]
Contreras, David [1 ,2 ]
机构
[1] Univ Concepcion, Fac Ciencias Quim, Concepcion 4070386, Chile
[2] Millennium Nuclei Catalyt Proc Sustainable Chem CS, ANID Millennium Sci Initiat Program, Santiago 8970117, Chile
[3] Univ La Plata, Ctr Invest & Desarrollo Ciencias Aplicadas Dr Jorg, B1900AJK, La Plata, Argentina
[4] Univ Catolica Santisima Concepcion, Fac Ciencias, Ctr Energia, Dept Quim Ambiental, Concepcion 4090541, Chile
[5] Ctr Invest Polimeros Avanzados CIPA, Concepcion 4051381, Chile
来源
MOLECULES | 2023年 / 28卷 / 17期
关键词
polyoxometalate nanocatalyst; Keggin-type; lignin model compound; beta-O-4; bond; heterogeneous catalysis; green chemistry; AEROBIC OXIDATION; VALORIZATION; VANADIUM; DEGRADATION; CHEMICALS; CLEAVAGE;
D O I
10.3390/molecules28176368
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The catalytic oxidation of phenethoxybenzene as a lignin model compound with a beta-O-4 bond was conducted using the Keggin-type polyoxometalate nanocatalyst (TBA)(5)[PMo10V2O40]. The optimization of the process's operational conditions was carried out using response surface methodology. The statistically significant variables in the process were determined using a fractional factorial design. Based on this selection, a central circumscribed composite experimental design was used to maximize the phenethoxybenzene conversion, varying temperature, reaction time, and catalyst load. The optimal conditions that maximized the phenethoxybenzene conversion were 137 degrees C, 3.5 h, and 200 mg of catalyst. In addition, under the optimized conditions, the Kraft lignin catalytic depolymerization was carried out to validate the effectiveness of the process. The depolymerization degree was assessed by gel permeation chromatography from which a significant decrease in the molar mass distribution Mw from 7.34 kDa to 1.97 kDa and a reduction in the polydispersity index PDI from 6 to 3 were observed. Furthermore, the successful cleavage of the beta-O-4 bond in the Kraft lignin was verified by gas chromatography-mass spectrometry analysis of the reaction products. These results offer a sustainable alternative to efficiently converting lignin into valuable products.
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页数:14
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