[1] |
HUANG Yue, ZHAO Lixin, YAO Zonglu, YU Jiadong, LI Zaixing, SHEN Ruixia, AN Kemeng, HUANG Yali.
Research progress in directed bioconversion of lactic acid and acetic acid from wood lignocellulosic wastes
[J]. Chemical Industry and Engineering Progress, 2023, 42(5): 2691-2701.
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[2] |
XU Pei, JIA Xuan, WANG Yong, QI Xuejiao, ZHAO Yujiao, LI Mingxiao.
Effect of flow field on the CO2 reduction performance and products of MEC biocathode
[J]. Chemical Industry and Engineering Progress, 2022, 41(7): 3816-3823.
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[3] |
ZHENG Xiaomei, LIN Rujing, ZHOU Wenjing, XU Ling, ZHANG Hongning, ZHANG Xinying, XIE Li.
Review on cathode materials for CO2 methanation assisted by microbial electrolytic cell
[J]. Chemical Industry and Engineering Progress, 2022, 41(5): 2476-2486.
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[4] |
JIN Yuanxun, HUO Di, SUN Xudong.
Preparation of rod-like Al2O3 and Al2O3-ZrO2 ceramic composite powders in aqueous solution
[J]. Chemical Industry and Engineering Progress, 2021, 40(S2): 309-314.
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[5] |
FENG Xinzhen, LIU Jun, JI Weijie.
Progresses in acrylic acid (acrylate) production via acetic acid (acetate)-formaldehyde condensation
[J]. Chemical Industry and Engineering Progress, 2021, 40(4): 2005-2015.
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[6] |
TAO Liangquan, LIU Jinglei, XIA Xiangming, FAN Genfang, CAO Honghai, XU Hong.
Corrosion resistance properties of stainless steel-based porous layer of high flux exchanging tube in acetic acid solution
[J]. Chemical Industry and Engineering Progress, 2017, 36(06): 2255-2261.
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[7] |
WANG Dongxu, XIAO Xianbin, LI Wenyan.
A review of literatures on catalytic steam reforming of acetic acid for hydrogen production
[J]. Chemical Industry and Engineering Progress, 2017, 36(05): 1658-1665.
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[8] |
ZHOU Wei, QIU Zumin, XIAO Jianjun, DU Chengcheng.
Study on the extraction of high whiteness bamboo fiber at atmospheric pressure
[J]. Chemical Industry and Engineering Progree, 2017, 36(02): 658-664.
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[9] |
QIN Yuelong, ZHANG Hanbing, CHEN Ninghua, SHI Huazhen, XIAN Dongcheng, TONG Zhangfa, TANG Yankui.
Malachite green adsorption on acetic acid bentonite
[J]. Chemical Industry and Engineering Progree, 2016, 35(03): 944-949.
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[10] |
QIU Long, ZHOU Junpeng, WU Jiang, ZHU Jintao.
Synthesis of chloroacetic acid and research
[J]. Chemical Industry and Engineering Progree, 2015, 34(s1): 178-181.
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[11] |
YAN Fengying, CHI Yongzhi, LIU Xiaomin, TIAN Zhe, ZHANG Yu, FEI Xuening.
Application of response surface methodology for volatile fatty acids recovery from waste activated sludge using microwave pretreatment process
[J]. Chemical Industry and Engineering Progree, 2015, 34(07): 2049-2054,2079.
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[12] |
ZHANG Huanhuan, GE Zhiqiang, GUO Xianghai, BAI Peng.
A review on recovery technologies of acetic acid from industrial wastewater
[J]. Chemical Industry and Engineering Progree, 2015, 34(06): 1768-1778.
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[13] |
CHEN Dan1,2,LI Guoru3,HUANG Minjian3,CHEN Biaohua2,YIN Fengxiang1,3.
Research progress of catalysts for producing N-phosphonomethyl glycine by air (oxygen) catalytic oxidation
[J]. Chemical Industry and Engineering Progree, 2014, 33(02): 374-378.
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[14] |
CHEN Dan1,LI Jian4,LI Guoru3,CHEN Biaohua1,YIN Fengxiang2,3.
Synthesis technologies for glyphosate
[J]. Chemical Industry and Engineering Progree, 2013, 32(07): 1635-1640.
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[15] |
RUAN Jiuyong1,QU Minjie1,JIANG Dianpin2,LI Chengbin2,XU Dongchao1,GUO Jing1.
Synthesis and characterization of (S)-3-benzoylthio-2-methylpropionic acid
[J]. Chemical Industry and Engineering Progree, 2012, 31(05): 1130-1133.
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