蔗渣
糠醛
催化作用
铌
化学
过程(计算)
固体酸
制浆造纸工业
化学工程
核化学
有机化学
计算机科学
操作系统
工程类
作者
Mariana N. Catrinck,Paula Nicole Vieira Pinto Barbosa,Helder Rezende De Oliveira Filho,Robson Q. Monteiro,Márcio Henrique Pereira Barbosa,Rogério Ferreira Ribas,Reinaldo F. Teófilo
标识
DOI:10.1016/j.fuproc.2020.106482
摘要
Abstract This study investigated the production of furfural from sugarcane bagasse over niobic acid (Nb2O2·nH2O, called as NbO) or niobium phosphate (NbOPO4·nH2O, called as NbP) in a one-step process performed in water. The variables temperature (T), the mass of catalyst (mcat), reaction time (rt), and vibration time (Vt) for mixing SCB and catalyst were studied through a design of experiments. After 5 h at 150 °C, the furfural yields were 52.1 g kg−1 for NbO and 59.3 g kg−1 for NbP, while the yields of xylose and arabinose were, respectively, 69.7 g kg−1 and 6.4 g kg−1 for NbO and 147.4 g kg−1 and 11.1 g kg−1 when using NbP. It was proved that furfural yield is independent of the SCB genotype. The selective depolymerization and hydrolysis of hemicellulose into monomers and its further dehydration to furfural were observed. The cellulose and lignin remained readily utilizable for further processing. The better catalytic performance of NbP was attributed to the higher ratio of Bronsted to Lewis acid sites on its surface than NbO.
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