> 2022年-生物质与生物能源实验室(2023)
2022年

#为共同第一作者(Equal contributors);*为通讯作者(Corresponding Author);IF为当年或五年影响因子;被引次数(Times Cited)更新日期为2023年7月31日。

Insights into pectin dominated enhancements for elimination of toxic Cd and coupled with ethanol production in desirable lignocelluloses

Insights into pectin dominated enhancements for elimination of toxic Cd and coupled with ethanol production in desirable lignocelluloses

Carbohydrate Polymers. (2022). 286: 119298. (IF: 11.2; Times Cited: 9)

Hua Yu, Meng Hu, Zhen Hu, Fei Liu, Haizhong Yu, Qiaomei Yang, Hairong Gao, Chengbao Xu, Meiling Wang, Guifen Zhang, Yun Wang, Tao Xia, Liangcai Peng, Yanting Wang*.

Distinct cellulose nanofibrils generated for improved Pickering emulsions and lignocellulose-degradation enzymes secretion coupled with high bioethanol production in natural rice mutant

Distinct cellulose nanofibrils generated for improved Pickering emulsions and lignocellulose-degradation enzymes secretion coupled with high bioethanol production in natural rice mutant

Green Chemistry. (2022). 24: 2975-2987. (IF: 9.8; Times Cited: 20)

Hao Peng#, Wenyue Zhao#, Jingyuan Liu, Peng Liu, Haizhong Yu, Jun Deng, Qiaomei Yang, Ran Zhang, Zhen Hu, Shilin Liu, Dan Sun, Liangcai Peng, Yanting Wang*.

Double integrating XYL2 into engineered Saccharomyces cerevisiae strains for consistently enhanced bioethanol production by effective xylose and hexose consumption of steam-exploded lignocellulose in bioenergy crops

Double integrating XYL2 into engineered Saccharomyces cerevisiae strains for consistently enhanced bioethanol production by effective xylose and hexose consumption of steam-exploded lignocellulose in bioenergy crops

Renewable Energy. (2022). 186: 341-349. (IF: 8.7; Times Cited: 12)

Boyang He, Bo Hao, Haizhong Yu, Fen Tu, Xiaoyang Wei, Ke Xiong, Yajun Zeng, Hu Zeng, Peng Liu, Yuanyuan Tu, Yanting Wang, Heng Kang, Liangcai Peng, Tao Xia*.

Specific lignin and cellulose depolymerization of sugarcane bagasse for maximum bioethanol production under optimal chemical fertilizer pretreatment with hemicellulose retention and liquid recycling

Specific lignin and cellulose depolymerization of sugarcane bagasse for maximum bioethanol production under optimal chemical fertilizer pretreatment with hemicellulose retention and liquid recycling

Renewable Energy. (2022). 200: 1371-1381. (IF: 8.7; Times Cited: 12)

Yansong Fu, Hairong Gao, Hua Yu, Qiaomei Yang, Hao Peng, Peng Liu, Yuqi Li,Zhen Hu, Ran Zhang, Jingyang Li, Zhi Qi, Lingqiang Wang, Liangcai Peng, Yanting Wang*.

Down-regulation of OsMYB103L distinctively alters beta-1,4-glucan polymerization and cellulose microfibers assembly for enhanced biomass enzymatic saccharification in rice

Down-regulation of OsMYB103L distinctively alters beta-1,4-glucan polymerization and cellulose microfibers assembly for enhanced biomass enzymatic saccharification in rice

Biotechnology for Biofuels. (2022). 14: 245. (IF: 6.3; Times Cited: 10)

Leiming Wu#, Mingliang Zhang#, Ran Zhang, Haizhong Yu, Hailang Wang, Jingyang Li, Youmei Wang, Zhen Hu, Yanting Wang, Zi Luo, Lin Li, Lingqiang Wang, Liangcai Peng, Tao Xia*.

Integrating mild chemical pretreatments with endogenous protein supplement for complete biomass saccharification to maximize bioethanol production by enhancing cellulases adsorption in novel bioenergy Amaranthus

Integrating mild chemical pretreatments with endogenous protein supplement for complete biomass saccharification to maximize bioethanol production by enhancing cellulases adsorption in novel bioenergy Amaranthus

Industrial Crops & Products. (2022). 177: 114471. (IF: 5.9; Times Cited: 12)

Meysam Madadi, Youmei Wang, Ran Zhang, Zhen Hu, Hairong Gao, Dan Zhan, Hua Yu, Qiaomei Yang, Yanting Wang, Yuanyuan Tu, Tao Xia, Liangcai Peng*.

CRISPR/Cas9 mutant rice Ospmei12 involved in growth cell wall development, and response to phytohormone and heavy metal stress

CRISPR/Cas9 mutant rice Ospmei12 involved in growth cell wall development, and response to phytohormone and heavy metal stress

International journal of Molecular Sciences. (2022). 23: 16082. (IF: 5.6; Times Cited: 2)

Zhaoyang Li#, Muhammad Junaid Rao#, Jiaying Li, Yanting Wang, Peng Chen, Hua Yu, Chongjian Ma*, Lingqiang Wang*.

Root cell remodeling mediates copper oxide nanoparticles phytotoxicity on lettuce(Lactuca sativa L.)

Root cell remodeling mediates copper oxide nanoparticles phytotoxicity on lettuce(Lactuca sativa L.)

Environmental and Experimental Botany. (2022). 200: 104906. (IF: 5.7; Times Cited: 7)

Xinyu Guo, Jipeng Luo, Ran Zhang, Hairong Gao, Liangcai Peng, Yongchao Liang, Tingqiang Li*.

Effective utilization of magnetic nano-coupled cloned β-xylanase in saccharification process

Effective utilization of magnetic nano-coupled cloned β-xylanase in saccharification process

RSC Advances. (2022). 12: 6463-6475. (IF: 3.9; Times Cited: 6)

Attia Hamid, Asma Zafar, Iram Liaqat, Muhammad Sohail Afzal, Liangcai Peng, Muhammad Khawar Rauf, Ikram ul Haq, Asad ur-Rehman, Sikander Ali, Muhammad Nauman Aftab*.

Enzymatic hydrolysis of lignocellulosic biomass using a novel, thermotolerant recombinant xylosidase enzyme from Clostridium clariflavum: a potential addition for biofuel industry

Enzymatic hydrolysis of lignocellulosic biomass using a novel, thermotolerant recombinant xylosidase enzyme from Clostridium clariflavum: a potential addition for biofuel industry.

RSC Advances. (2022). 12: 14917-14931. (IF: 3.9; Times Cited: 7)

Asma Zafar, Attia Hamid, Liangcai Peng, Yanting Wang, Muhammad Nauman Aftab*.

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