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  1. Jian Zhang*, Cheng Lei, Gang Liu, Yanwen Bao, Venkatesh Balan*, Jie Bao*. In-situ vacuum distillation of ethanol helps to recycle cellulase and yeast during SSF of delignified corncob residues. ACS Sustainable Chemistry & Engineering (IF 5.951). 2017, 5:11676-11685. [PDF]

  2. Weiliang Hou, Lang Li, Jie Bao*. Oxygen transfer in high solids loading and highly viscous lignocellulose hydrolysates. ACS Sustainable Chemistry & Engineering (IF 5.951). 2017, 5:11395-11402. [PDF]

  3. Abdul Sattar Qureshi, Jian Zhang*, Leonardo da Costa Sousa*, Jie Bao*. An antibacterial peptide secreted by Pediococcus acidilactici enables efficient cellulosic open L-lactic acid fermentation. ACS Sustainable Chemistry & Engineering (IF 5.951), 2017, 5:9254-9262. [PDF]

  4. Yi Jiang1, Kuimei Liu1, Hongsen Zhang, Yingli Wang, Quanquan Yuan, Ning Su, Jie Bao, and Xu Fang*. Gluconic acid production from potato waste by Gluconobacter oxidans using sequential hydrolysis and fermentation. ACS Sustainable Chemistry & Engineering (IF 5.951),  2017, 5:6116-6123. [PDF]

  5. Ruimiao Yao1, Weiliang Hou1, Jie Bao*. Complete oxidative conversion of lignocellulose derived non-glucose sugars to sugar acids by Gluconobacter oxydans. Bioresource Technology (IF 5.651), 2017, 244:1188-1192. [PDF]

  6. Gang Liu, Jie Bao*. Maximizing cellulosic ethanol potentials by minimizing wastewater generation and energy consumption: Competing with corn ethanolBioresource Technology (IF 5.651)2017, 245:18-26. [PDF]

  7. Gang Liu, Jie Bao*. Evaluation of electricity generation from lignin residue and biogas in cellulosic ethanol productionBioresource Technology (IF 5.651)2017, 243:1232-1236. [PDF]

  8. Zhongyang Qiu, Qiuqiang Gao, Jie Bao*. Constructing xylose-assimilating pathways in Pediococcus acidilactici for high titer D-lactic acid fermentation from corn stover feedstockBioresource Technology (IF 5.651) 2017, 245:1369-1376. [PDF]

  9. Ping-Ping Zhou, Jiao Meng, Jie Bao*. Fermentative production of high titer citric acid from corn stover feedstock after dry dilute acid pretreatment and biodetoxification. Bioresource Technology (IF 5.651)2017, 224:563-572.[PDF]

  10. Hongsen Zhang1, Xushen Han1, Chengxiang Wei1, Jie Bao*.Oxidative production of xylonic acid using xylose in distillation stillage of cellulosic ethanol fermentation broth by Gluconobacter oxydans. Bioresource Technology (IF 5.651)2017, 224:573-580.[PDF]

  11. Shuai Shao, Jian Zhang*, Weiliang Hou, Abdul Sattar Qureshi, Jie Bao. Lower pressure heating steam is practical for the distributed dry dilute sulfuric acid pretreatment. Bioresource Technology (IF 5.651)2017, 238:744-748. [PDF]

  12. Xia Wang, Qiuqiang Gao, Jie Bao*. Enhancement of furan aldehydes conversion in Zymomonas mobilis by elevating dehydrogenase activity and cofactor regeneration. Biotechnology for Biofuels (IF 5.203), 2017, 10:24. [PDF]

  13. Dong Tian, Jinguang Hu*, Jie Bao, Richard P. Chandra, Jack N. Saddler, Canhui Lu*. Lignin valorization: lignin nanoparticles as high-value bio-additive for multifunctional nanocomposites. Biotechnology for Biofuels (IF 5.203), 2017,10:192. [PDF]

  14. Shuai Shao, Jian Zhang, Jie Bao*. Reduction of reactor corrosion by eliminating liquid phase existence in dry dilute acid pretreatment of corn stover. Energy & Fuels (IF 3.091), 2017, 31(6):6140-6144. [PDF]

  15. Juan Wang, Mingshan Hu, Huizhan Zhang*, Jie Bao*.Converting chemical oxygen demand (COD) of cellulosic ethanol fermentation wastewater into microbial lipid by oleaginous yeast Trichosporon cutaneum. Applied Biochemistry and Biotechnology (IF 1.751), 2017, 182:1121-1130.[PDF]
  16. Qiang Zhang, Jie Bao*. Industrial cellulase performance in the simultaneous saccharification and co-fermentation (SSCF) of corn stover for high titer ethanol production. Bioresources and Bioprocessing, 2017, 4:17. [PDF]

  17. 赵瞭, 鲍杰. 重塑生命. 科学画报. 2017, 6:18-19. [PDF]

 

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