Abstract
Alkali-oxygen pulping has received increasing attention as an environmentally compatible pulping process; however, the resulting pulp has low yield and properties due to carbohydrate degradation. In this work, the effect of regulating superoxide anion radicals (O 2-· ) on delignification selectivity in alkali-oxygen pulping was investigated. The pulp was characterized by Brunauer-Emmett-Teller (BET) analysis, scanning electron microscope (SEM), and X-ray diffraction (XRD). Lignin removal was improved by the regulation of O 2-· in the 1,2,3-trihydroxybenzene auto-oxidation system with addition of sodium 2-anthraquinonesulfonate, especially for the pulp from cooking time 120 min. The degree and selectivity of delignification were improved with alkali-oxygen pulping when sodium 2-anthraquinonesulfonate was added to facilitate the generation of superoxide anion radicals. The results showed that the increased fiber liberation was beneficial for the accessibility of O 2-· to lignin, which would improve the removal of lignin with negligible damage on cellulose, especially with regards to crystal area.
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Liang, X., Sun, B., Liu, Y., Zhang, B., Shan, Y., Song, X., & Nie, S. (2019). Regulation of superoxide anion radicals in bagasse alkali-oxygen pulping to enhance delignification selectively. BioResources, 14(1), 638–649. https://doi.org/10.15376/biores.14.1.638-649
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