Mosier N S, Sarikaya A, Ladisch C M, Ladisch M R
Department of Agricultural and Biological Engineering, Laboratory of Renewable Resources Engineering, Purdue University, West Lafayette, Indiana 47907, USA.
Biotechnol Prog. 2001 May-Jun;17(3):474-80. doi: 10.1021/bp010028u.
In this paper, we show that dilute maleic acid, a dicarboxylic acid, hydrolyzes cellobiose, the repeat unit of cellulose, and the microcrystalline cellulose Avicel as effectively as dilute sulfuric acid but with minimal glucose degradation. Maleic acid, superior to other carboxylic acids reported in this paper, gives higher yields of glucose that is more easily fermented as a result of lower concentrations of degradation products. These results are especially significant because maleic acid, in the form of maleic anhydride, is widely available and produced in large quantities annually.
在本文中,我们表明,二元羧酸稀马来酸水解纤维二糖(纤维素的重复单元)和微晶纤维素Avicel的效果与稀硫酸相当,但葡萄糖降解最少。马来酸优于本文报道的其他羧酸,由于降解产物浓度较低,其葡萄糖产率更高,且更容易发酵。这些结果尤为重要,因为马来酸酐形式的马来酸广泛可得,且年产量巨大。