A rapid and consistent near infrared spectroscopic assay for biomass enzymatic digestibility upon various physical and chemical pretreatments in Miscanthus
Jiangfeng Huang(Huazhong Agricultural University), Liangcai Peng(Shanghai Jiao Tong University), Wei Zhang(Huazhong Agricultural University), Yuanyuan Tu(Huazhong Agricultural University), Qing Li(Nanjing University of Information Science and Technology), Tao Xia(Anhui Medical University), Zili Yi(Hunan Agricultural University), Ao Li(Nanjing University of Science and Technology), Bin Yu(University of Science and Technology of China)
Cited by 97
Related Papers
Os<scp>CESA</scp>9 conserved‐site mutation leads to largely enhanced plant lodging resistance and biomass enzymatic saccharification by reducing cellulose <scp>DP</scp> and crystallinity in rice
|Plant Biotechnology Journal|2017|212
Tween-80 is effective for enhancing steam-exploded biomass enzymatic saccharification and ethanol production by specifically lessening cellulase absorption with lignin in common reed
|Applied Energy|2016|174
A finalized determinant for complete lignocellulose enzymatic saccharification potential to maximize bioethanol production in bioenergy Miscanthus
|Biotechnology for Biofuels|2019|163
Steam explosion distinctively enhances biomass enzymatic saccharification of cotton stalks by largely reducing cellulose polymerization degree in G. barbadense and G. hirsutum
|Bioresource Technology|2015|124
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|2020|105