> 2021年-生物质与生物能源实验室(2023)
2021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。

Cascading of engineered bioenergy plants and fungi sustainable for low-cost bioethanol and high-value biomaterials under green-like biomass processing

Cascading of engineered bioenergy plants and fungi sustainable for low-cost bioethanol and high-value biomaterials under green-like biomass processing

Renewable and Sustainable Energy Reviews. (2021). 137:110586. (IF: 15.9; Times Cited: 52)

Youmei Wang#, Peng Liu#, Guifen Zhang, Qiaomei Yang, Jun Lu, Tao Xia, Liangcai Peng, Yanting Wang*.

Using Amaranthus green proteins as universal biosurfactant and biosorbent for effective enzymatic degradation of diverse lignocellulose residues and efficient multiple trace metals remediation of farming lands

Using Amaranthus green proteins as universal biosurfactant and biosorbent for effective enzymatic degradation of diverse lignocellulose residues and efficient multiple trace metals remediation of farming lands

Journal of Hazardous Materials. (2021). 406:124727. (IF: 13.6; Times Cited: 47)

Meysam Madadi#, Youmei Wang#, Chengbao Xu, Peng Liu, Yanting Wang, Tao Xia, Yuanyuan Tu, Xinchun Lin, Bo Song, Xiaoe Yang, Wanbin Zhu, Deqiang Duanmu, Shang-wen Tang*, Liangcai Peng*.

Modified Lignocellulose and rich starch for complete saccharification to maximize bioethanol in distinct polyploidy potato straw

Modified Lignocellulose and rich starch for complete saccharification to maximize bioethanol in distinct polyploidy potato straw

Carbohydrate Polymers. (2021). 265:118070. (IF: 11.2; Times Cited: 30)

Meysam Madadi#, Kanglu Zhao#, Youmei Wang, Yanting Wang, Shang-wen Tang, Tao Xia, Nengzhou Jin, Zhijun Xu, Guanhua Li, Zhi Qi, Liangcai Peng, Zhiyong Xiong*.

Combined steam explosion and optimized green-liquor pretreatments are effective for complete saccharification to maxmize bioethanol production by reducing lignocellulose recalcitrance in one-year-old bamboo

Combined steam explosion and optimized green-liquor pretreatments are effective for complete saccharification to maxmize bioethanol production by reducing lignocellulose recalcitrance in one-year-old bamboo

Renewable Energy. (2021). 175:1069-1079. (IF: 8.7; Times Cited: 52)

Hairong Gao, Yanting Wang, Qiaomei Yang, Hao Peng, Yuqi Li, Dan Zhan, Hantian Wei, Haiwen Lu, Mahmoud M.A.Baker, Mostafa M.El-Sheekh, Zhi Qi, Liangcai Peng, Xinchun Lin*.

Distinct Miscanthus lignocellulose improves fungus secreting cellulases and xylanases for consistently enhanced biomass saccharification of diverse bioenergy crops

Distinct Miscanthus lignocellulose improves fungus secreting cellulases and xylanases for consistently enhanced biomass saccharification of diverse bioenergy crops

Renewable Energy. (2021). 174:799-809. (IF: 8.7; Times Cited: 19)

Peng Liu, Ao Li, Youmei Wang, Qiuming Cai, Haizhong Yu, Yuqi Li, Hao Peng, Qian Li, Yanting Wang, Xiaoyang Wei, Ran Zhang, Yuanyuan Tu, Tao Xia,Liangcai Peng*.

Ecologically adaptable Populus simonii is specific for recalcitrance-reduced lignocellulose and largely-enhanced enzymatic saccharification among woody plants

Ecologically adaptable Populus simonii is specific for recalcitrance-reduced lignocellulose and largely-enhanced enzymatic saccharification among woody plants

Global Change Biology Bioenergy. (2021). 13:348-360. (IF: 5.6; Times Cited: 10)

Zhengyi Lv, Fei Liu, Youbing Zhang, Yuanyuan Tu, Peng Chen*, Liangcai Peng*.

Distinctively altered lignin biosynthesis by site-modification of OsCAD2 for enhanced biomass saccharification in rice

Distinctively altered lignin biosynthesis by site-modification of OsCAD2 for enhanced biomass saccharification in rice

Global Change Biology Bioenergy. (2021). 13:305-319. (IF: 5.6; Times Cited: 15)

Guifen Zhang, Lingqiang Wang*, Xukai Li, Shuming Bai, Yali Xue, Zihui Li,Shang-wen Tang, Yanting Wang, Youmei Wang, Zhen Hu, Ping Li, Liangcai Peng*.

Integrated NIRS and QTL assays reveal minor mannose and galactose as contrast lignocellulose factors for biomass enzymatic saccharification in rice

Integrated NIRS and QTL assays reveal minor mannose and galactose as contrast lignocellulose factors for biomass enzymatic saccharification in rice

Biotechnology for Biofuels. (2021). 14:144. (IF: 6.3; Times Cited: 4)

Zhen Hu, Youmei Wang, Jingyuan Liu, Yuqi Li, Yanting Wang, Jiangfeng Huang, Yuanhang Ai, Peng Chen, Yuqing He, Muhammad Nauman Aftab, Lingqiang Wang*, Liangcai Peng*.

Optimizing two green-like biomass pretreatments for maximum bioethanol production in desirable banana pseudostem by effectively enhancing cellulose depolymerization and accessibility.

Optimizing two green-like biomass pretreatments for maximum bioethanol production in desirable banana pseudostem by effectively enhancing cellulose depolymerization and accessibility

Sustainable Energy & Fuels. (2021). 5:3467. (IF: 5.6; Times Cited: 11)

Fei Liu, Jingyang Li, Hua Yu, Yuqi Li, Yanting Wang, Hairong Gao, Hao Peng, Zhen Hu, Hailang Wang, Guifen Zhang, Yuanyuan Tu, Liangcai Peng*.

Intgrated genetic and chemical modification with rice straw for maximum bioethanol production

Intgrated genetic and chemical modification with rice straw for maximum bioethanol production

Industrial Crops & Products. (2021). 173: 114133. (IF: 5.9; Times Cited: 9)

Yuanhang Ai, Shengqiu Feng, Youmei Wang, Jun Lu, Mengdan Sun, Huizhen Hu, Zhen Hu, Ran Zhang, Peng Liu, Hao Peng, Yanting Wang, Limin Cao, Tao Xia, Liangcai Peng*.

Diverse banana pseudostems and rachis are distinctive for edible carbohydrates and lignocellulose saccharification towards high bioethanol production under chemical and liquid hot water pretreatments

Diverse banana pseudostems and rachis are distinctive for edible carbohydrates and lignocellulose saccharification towards high bioethanol production under chemical and liquid hot water pretreatments

Molecules. (2021). 26(13):3870. (IF: 4.6; Times Cited: 7)

Jingyang Li, Fei Liu, Hua Yu, Yuqi Li,Shiguang Zhou, Yuanhang Ai, Xinyu Zhou, Youmei Wang, Lingqiang Wang, Liangcai Peng, Yanting Wang*.

Recyclable cascading of arsenic phytoremediation and lead removal coupled with high bioethanol production using desirable rice straws

Recyclable cascading of arsenic phytoremediation and lead removal coupled with high bioethanol production using desirable rice straws

Biochemical Engineering Journal. (2021). 168:107950. (IF: 3.9; Times Cited: 17).

Chengbao Xu, Jiejun Zhu, Haizhong Yu, Hua Yu, Yongqiang Yang, Qingling Fu, Dan Zhan, Yanting Wang, Hailang Wang, Yanqing Zhang, Tingqiang Li, Mostafa M. El-Sheekh, Liangcai Peng, Tao Xia*.

Selectively desirable rapeseed and corn stalks distinctive for low‑cost bioethanol production and high‑active biosorbents

Selectively desirable rapeseed and corn stalks distinctive for low‑cost bioethanol production and high‑active biosorbents

Waste and Biomass Valorization. (2021). 12:795-805. (IF: 3.2; Times Cited: 15)

Chengbao Xu, Tao Xia, Jintong Wang, Li Yu, Leiming Wu, Yanqing Zhang, Peng Liu, Peng Chen, Shengqiu Feng, Liangcai Peng*.

Efficient biomass saccharification using a novel cellobiohydrolase from Clostridium clariflavum for utilization in biofuel industry

Efficient biomass saccharification using a novel cellobiohydrolase from Clostridium clariflavum for utilization in biofuel industry

RSC Advances. (2021). 11:9246-9261. (IF: 3.9; Times Cited: 10).

Asma Zafar#, Muhammad Nauman Aftab#, Anam Asif, Ahmet Karadag, Liangcai Peng, Hassan Ufak Celebioglu, Muhammad Sohail Afzal, Attia Hamid, Irfana Iqbal*.

Incomplete genome doubling enables to consistently enhance plant growth for maximum biomass production by altering multiple transcript co-expression networks in potato

Incomplete genome doubling enables to consistently enhance plant growth for maximum biomass production by altering multiple transcript co-expression networks in potato

Theoretical and Applied Genetics. (2021). 135: 461-472. (IF: 5.4; Times Cited: 9)

Kanglu Zhao#, Nengzhou Jin#, Meysam Madadi, Youmei Wang, Lei Wu, Zhijun Xu, Jinxuan Wang, Jing Dong, Shangwen Tang, Yanting Wang, Liangcai Peng, Zhiyong Xiong*.

A novel banana mutant “RF1” (Musaspp. ABB, Pisang Awak Subgrounp) for improved agronomic traits and enhanced cold tolerance and disease resistance

A novel banana mutant “RF1” (Musaspp. ABB, Pisang Awak Subgrounp) for improved agronomic traits and enhanced cold tolerance and disease resistance

Frontiers in Plant Science. (2021). 12: 730718. (IF: 5.6; Times Cited: 10)

Xiaoyi Wang#, Anbang Wang#, Yujia Li#, Yi Xu, Qing Wei, Jiashui Wang, Fei Lin, Deyong Gong, Fei Liu, Yanting Wang, Liangcai Peng, Jingyang Li*.

植物果胶甲酯酶与果胶甲酯酶抑制子研究进展

植物果胶甲酯酶与果胶甲酯酶抑制子研究进展

江苏农业学报. (2021). 49(8): 49-56. (Times Cited: 6)

李佳颖, 胡利华, 周海连, 魏晓双, 王艳婷, 王令强*.

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