[1] |
HUANG Yuefeng, MA Lisha, ZHANG Lili, WANG Zhiguo.
Research progress on functional application of lignocellulose composite biomass film materials
[J]. Chemical Industry and Engineering Progress, 2022, 41(9): 4840-4854.
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[2] |
HAN Mingyang, QIAO Hui, FU Jiaming, MA Zewen, WANG Yan, OUYANG Jia.
Research progress of non-aqueous solvents on the pretreatment of lignocellulose
[J]. Chemical Industry and Engineering Progress, 2022, 41(8): 4086-4097.
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[3] |
DONG Yanmei, AN Yanxia, MA Yangyang, ZHANG Jian, LI Mengqin.
Research progress on deep eutectic solvent of lignocellulose pretreatment
[J]. Chemical Industry and Engineering Progress, 2021, 40(3): 1594-1603.
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[4] |
Yunqi CAO,Xianli XIE,Zhenqiang GUO,Yanyan WANG,Yunyun LIU,Aimin WU,Yu ZHAO.
Research progress on lignocellulose pretreatment technology
[J]. Chemical Industry and Engineering Progress, 2020, 39(2): 489-495.
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[5] |
Xin LIN,Hailong LIN,Guojun YUE.
An effective mechanism connecting the production and marketing of biofuels—RINs
[J]. Chemical Industry and Engineering Progress, 2019, 38(08): 3621-3630.
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[6] |
CAO Yujiu, ZHANG Xing.
Removal of the typical products from lignocellulose acidolysis using Fenton reagent
[J]. Chemical Industry and Engineering Progress, 2018, 37(11): 4265-4272.
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[7] |
YUE Jun, XU Youhai, WANG Jiyan, HU Shiyang, HUI Jixing, JIN Gang.
Pretreatment of cassava alcohol residues and ethanol production by simultaneous saccharification and fermentation
[J]. Chemical Industry and Engineering Progress, 2018, 37(01): 276-282.
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[8] |
SUN Mingrong, LIU Xiaoxin, XIE Wenhua, ZONG Baoning, GAO Liang.
Present economical development and prospective of biorefineries
[J]. Chemical Industry and Engineering Progress, 2017, 36(09): 3250-3256.
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[9] |
LI Xinli, ZHU Yuhong, WANG Baowei, FU Jing, WANG Zhiwen, CHEN Tao.
Progress in bioethanol production via consolidated bioprocessing
[J]. Chemical Industry and Engineering Progress, 2016, 35(11): 3600-3610.
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[10] |
PING Qingwei, WANG Chun, PAN Mengli, ZHANG Jian, SHI Haiqiang, NIU Meihong.
Separation and high-value utilization of lignin from the lignocellulose biomass refining
[J]. Chemical Industry and Engineering Progree, 2016, 35(01): 294-301.
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[11] |
YIN Fang, LI Yingjuan, ZHANG Wudi, HUANG Wenrong, HU Xieke, LIU Shiqing, LEI Yu, TIAN Guangliang, YANG Bin.
Current situation and countermeasures of fuel ethanol industry in Yunnan province
[J]. Chemical Industry and Engineering Progree, 2015, 34(s1): 55-59.
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[12] |
LI Hong, HUANG Weijin, XIAO Caichun, CONG Haifeng, GAO Xin, LI Xingang.
Experimental study on hydrogenation of methyl acetate to fuel ethanol with copper-based catalyst
[J]. Chemical Industry and Engineering Progree, 2015, 34(10): 3644-3649,3736.
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[13] |
YUE Guojun,LIN Hailong,SHEN Naidong.
Energy input/output analysis for technical innovation of non-grain based fuel ethanol production at COFCO(Anhui)
[J]. Chemical Industry and Engineering Progree, 2014, 33(08): 2032-2037.
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[14] |
SUN Fubao1,WANG Liang1,2,TAN Ling1,2,CAO Yu1,LIU Jianquan1,ZHANG Zhenyu1.
Analytic technology of characterizing the substrate architecture in the Lignocellulose-to-sugar platform
[J]. Chemical Industry and Engineering Progree, 2014, 33(04): 883-890.
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[15] |
YUE Guojun,WANG Manyi,LIN Xin.
Study on the green house gas (GHG) emission and energy input/output assessment for fuel ethanol
[J]. Chemical Industry and Engineering Progree, 2013, 32(11): 2599-2603.
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