Results
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Distinct wall polymer deconstruction for high biomass digestibility under chemical pretreatment in Miscanthus and rice. [electronic resource] by
- Li, Yuyang
- Zhuo, Jingdi
- Liu, Peng
- Chen, Peng
- Hu, Huizhen
- Wang, Youmei
- Zhou, Shiguang
- Tu, Yuanyuan
- Peng, Liangcai
- Wang, Yanting
Producer: 20180917
In:
Carbohydrate polymers vol. 192
Availability: No items available.
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4.
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Mild chemical pretreatments are sufficient for complete saccharification of steam-exploded residues and high ethanol production in desirable wheat accessions. [electronic resource] by
- Tu, Yuanyuan
- Wang, Lingqiang
- Xia, Tao
- Sun, Dan
- Zhou, Shiguang
- Wang, Yanting
- Li, Ying
- Zhang, Heping
- Zhang, Tong
- Madadi, Meysam
- Peng, Liangcai
Producer: 20171023
In:
Bioresource technology vol. 243
Availability: No items available.
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5.
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Steam-exploded biomass saccharification is predominately affected by lignocellulose porosity and largely enhanced by Tween-80 in Miscanthus. [electronic resource] by
- Sun, Dan
- Alam, Aftab
- Tu, Yuanyuan
- Zhou, Shiguang
- Wang, Yanting
- Xia, Tao
- Huang, Jiangfeng
- Li, Ying
- Wei, Xiaoyang
- Hao, Bo
- Peng, Liangcai
Producer: 20171106
In:
Bioresource technology vol. 239
Availability: No items available.
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6.
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Biomass saccharification is largely enhanced by altering wall polymer features and reducing silicon accumulation in rice cultivars harvested from nitrogen fertilizer supply. [electronic resource] by
- Sun, Dan
- Li, Ying
- Wang, Jing
- Tu, Yuanyuan
- Wang, Yanting
- Hu, Zhen
- Zhou, Shiguang
- Wang, Lingqiang
- Xie, Guosheng
- Huang, Jianliang
- Alam, Aftab
- Peng, Liangcai
Producer: 20171023
In:
Bioresource technology vol. 243
Availability: No items available.
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Steam explosion distinctively enhances biomass enzymatic saccharification of cotton stalks by largely reducing cellulose polymerization degree in G. barbadense and G. hirsutum. [electronic resource] by
- Huang, Yu
- Wei, Xiaoyang
- Zhou, Shiguang
- Liu, Mingyong
- Tu, Yuanyuan
- Li, Ao
- Chen, Peng
- Wang, Yanting
- Zhang, Xuewen
- Tai, Hongzhong
- Peng, Liangcai
- Xia, Tao
Producer: 20151117
In:
Bioresource technology vol. 181
Availability: No items available.
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8.
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A precise and consistent assay for major wall polymer features that distinctively determine biomass saccharification in transgenic rice by near-infrared spectroscopy. [electronic resource] by
- Huang, Jiangfeng
- Li, Ying
- Wang, Yanting
- Chen, Yuanyuan
- Liu, Mingyong
- Wang, Youmei
- Zhang, Ran
- Zhou, Shiguang
- Li, Jingyang
- Tu, Yuanyuan
- Hao, Bo
- Peng, Liangcai
- Xia, Tao
Publication details: Biotechnology for biofuels 2017
In:
Biotechnology for biofuels vol. 10
Availability: No items available.
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9.
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Mild alkali-pretreatment effectively extracts guaiacyl-rich lignin for high lignocellulose digestibility coupled with largely diminishing yeast fermentation inhibitors in Miscanthus. [electronic resource] by
- Li, Ming
- Si, Shengli
- Hao, Bo
- Zha, Yi
- Wan, Can
- Hong, Shufen
- Kang, Yongbo
- Jia, Jun
- Zhang, Jing
- Li, Meng
- Zhao, Chunqiao
- Tu, Yuanyuan
- Zhou, Shiguang
- Peng, Liangcai
Producer: 20150514
In:
Bioresource technology vol. 169
Availability: No items available.
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10.
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Arabinose substitution degree in xylan positively affects lignocellulose enzymatic digestibility after various NaOH/H2SO4 pretreatments in Miscanthus. [electronic resource] by
- Li, Fengcheng
- Ren, Shuangfeng
- Zhang, Wei
- Xu, Zhengdan
- Xie, Guosheng
- Chen, Yan
- Tu, Yuanyuan
- Li, Qing
- Zhou, Shiguang
- Li, Yu
- Tu, Fen
- Liu, Lin
- Wang, Yanting
- Jiang, Jianxiong
- Qin, Jingping
- Li, Shizhong
- Li, Qiwei
- Jing, Hai-Chun
- Zhou, Fasong
- Gutterson, Neal
- Peng, Liangcai
Producer: 20130917
In:
Bioresource technology vol. 130
Availability: No items available.
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