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研究成果

1、Song, K., Mohseni, M., Taghipour, F.*, 2016. Application of ultraviolet light emitting diodes (UV-LEDs) for water disinfection: A review. Water Research. 94: 341–349. (全球环境领域Top 1% ESI高被引论文。SCI收录, 一区,环境领域Top期刊,影响因子:9.130)


2、Chu, Q.L., Chandra, R.*, Kim, C.S., Saddler, J., 2017. Alkali-oxygen impregnation prior to steam pretreating poplar wood chips enhances selective lignin modification and removal while maximizing carbohydrate recovery, cellulose accessibility and enzymatic hydrolysis. ACS Sustainable Chemistry & Engineering. 5(5): 4011-4017. (SCI收录, 一区,化工领域Top期刊,影响因子:7.632)


3、Song, K., Taghipour, F., Mohseni, M.*, 2018. Microorganisms inactivation by continuous and pulsed irradiation of ultraviolet light-emitting diodes (UV-LEDs). Chemical Engineering Journal. 343: 362-370. (SCI收录, 一区,化工领域Top期刊,影响因子:10.652)


4、Chu, Q.L.*, Song, K., Quan, B., Hu, J.G., Li, F.Q., Wang, J., Chen, X.Y., Shi, A.P., 2018. Two-stage pretreatment with alkaline sulphonation and steam treatment of Eucalyptus woody biomass to enhance its enzymatic digestibility for bioethanol production. Energy Conversion and Management. 175: 236-245. (SCI收录, 一区,工程技术领域Top期刊,影响因子:8.208)


5、Song, K., Taghipour, F., Mohseni, M.*, 2019. Microorganisms inactivation by wavelength combinations of ultraviolet light-emitting diodes (UV-LEDs). Science of the Total Environment. 665: 1103-1110. (SCI收录, 一区,环境领域Top期刊,影响因子:6.551)


6、Chu, Q.L., Song, K.*, Wang, J., Hu, J.G., Chen, X.Y., 2019. Improving enzymatic saccharification of hardwood through lignin modification by carbocation scavengers and the underlying mechanisms. Bioresource Technology. 294, 122216. (SCI收录, 一区,工程技术领域Top期刊,影响因子:7.539)


7、Chu, Q.L., Song, K.*, Hu, J.G., Bu, Q., Zhang, X.D., Chen, X.Y., 2019. Integrated process for the coproduction of fermentable sugars and lignin adsorbents from hardwood. Bioresource Technology. 289, 121659. (SCI收录, 一区,工程技术领域Top期刊,影响因子:7.539)


8、Song, K., Chu, Q.L.*, Hu, J.G., Bu, Q., Li, F.Q., Chen, X.Y., Shi, A.P, 2019. Two-stage alkali-oxygen pretreatment capable of improving biomass saccharification for bioethanol production and enabling lignin valorization via adsorbents for heavy metal ions under the biorefinery concept. Bioresource Technology. 276: 161-169. (SCI收录, 一区,工程技术领域Top期刊,影响因子:7.539)


9、Song, K., Mohseni, M., Taghipour, F.*, 2019. Mechanisms investigation on bacterial inactivation through combinations of UV wavelengths. Water Research. 163, 114875.(SCI收录, 一区,环境领域Top期刊,影响因子:9.130)


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