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SECTION II. APPLIED BIOTECHNOLOGY IN THE PHARMACEUTICAL INDUSTRY... 4536. Zhang H., Chen W., Han X., Zeng Y., Zhang J., Gao Z., Xie J. Intensification of sugar production by using Tween 80 to enhance metal-salt catalyzed pretreatment and enzymatic hydrolysis of sugarcane bagasse, Bioresour Technol. 2021, 339, p. 125522.7. Sluiter A., Hames B., Ruiz R., Scarlata C., Sluiter J., and Templeton D. Determination of Structural Carbohydrates and Lignin in Biomass, Technical Report. 2012, NREL/TP-510-42618.8. Zhou Y., Chen H., Qi F., Zhao X., Liu D. Non-ionic surfactants do not consistently improve the enzymatic hydrolysis of pure cellulose, Bioresource Technology. 2015, 182, pp. 136-143.9. Wang W., Kang L., Wei H., Arora R., Lee Y.Y. Study on the decreased sugar yield in enzymatic hydrolysis of cellulosic substrate at high solid loading, Applied Biochemistry and Biotechnology, 2011, 164, pp. 1139-1149.10. Lou H., Zhou H., Li X., Wang M., Zhu J.Y., Qiu X. Understanding the effects of lignosulfonate on enzymatic saccharification of pure cellulose, Cellulose, 2014, 21 (3), pp. 1351-1359.11. Okino S., Ikeo M., Ueno Y., Taneda D. Effects of tween 80 on cellulase stability under agitated conditions, Bioresour Technol, 2013, 142, pp. 535%u2013539.12. Kim, W.; Gamo, Y.; Sani, Y.M.; Wusiman, Y.; Ogawa, S.; Karita, S.; Goto, M. Effect of Tween 80 on hydrolytic activity and substrate accessibility of carbohydrolase I (CBH I) from Trichoderma viride, Asian Austral. J. Anim. 2006, 19, pp. 684%u2013689.13. Wang, W.; Zhuang, X.S.; Tan, X.S.; Wang, Q.; Chen, X.Y.; Yu, Q.; Qi, W.; Wang, Z.M.; Yuan, Z.H. Dual effect of nonionic surfactants on improving the enzymatic hydrolysis of lignocellulose, Energy Fuel 2018, 32, pp. 5951%u20135959.