[1] |
LI Xin, YANG Zao, ZHONG Xinru, HAN Haoxuan, ZHUANG Xuning, BAI Jianfeng, DONG Bin, XU Zuxin.
Binding mechanism of Pb2+ onto humic acids from sludge hyper-thermophilic composting
[J]. Chemical Industry and Engineering Progress, 2023, 42(9): 4957-4966.
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[2] |
WANG Zhicai, LIU Weiwei, ZHOU Cong, PAN Chunxiu, YAN Honglei, LI Zhanku, YAN Jingchong, REN Shibiao, LEI Zhiping, SHUI Hengfu.
Synthesis and performance of a superplasticizer based on coal-based humic acid
[J]. Chemical Industry and Engineering Progress, 2023, 42(7): 3634-3642.
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[3] |
ZHU Yihao, ZHAO Baihang, WANG Chun, ZHANG Yuqing, YANG Haishan.
Humic acid adsorption removal by modified coal gangue-based zeolite
[J]. Chemical Industry and Engineering Progress, 2023, 42(10): 5531-5537.
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[4] |
LU Yao, WANG Peng, YIN Mengnan, YANG Mingyi, ZHANG Huang.
Characteristics and influencing factors of environmental persistent free radicals of humic acid extracts from different types of soil
[J]. Chemical Industry and Engineering Progress, 2021, 40(5): 2917-2927.
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[5] |
TANG Anzhong, XU Qike.
Research progress on the removal of humic acids from water by oxidation and its derived hybrid processes
[J]. Chemical Industry and Engineering Progress, 2021, 40(12): 6889-6896.
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[6] |
Minru ZHOU,Pei YAO,Qimeng ZHANG,Shubai LI,Yuan LIU,Shouxin XIA.
Preparation of magnetic humic acid adsorbent and its application in the removal for Cu(Ⅱ)
[J]. Chemical Industry and Engineering Progress, 2020, 39(3): 1145-1152.
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[7] |
Ruihua MU, Xiaojuan LAI, Lei WANG, Pei LIU, Jing YANG.
Synthesis and application properties of a sulfobetaine Gemini surfactant
[J]. Chemical Industry and Engineering Progress, 2019, 38(07): 214048992-214048998.
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[8] |
Yongyichuan ZHANG, Xuelai ZHANG, Xiaofeng XU, Lu LIU.
Preparation and cyclic stability of Na2S2O3·5H2O composites
[J]. Chemical Industry and Engineering Progress, 2019, 38(07): 3304-3310.
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[9] |
YAN Pingping, SUI Qian, LÜ Shuguang, QIU Zhaofu.
Removal of sulfamethoxazole by ferrous-activated sodium percarbonate in the aqueous phase
[J]. Chemical Industry and Engineering Progress, 2018, 37(09): 3635-3639.
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[10] |
RAU Juiyeh, MAO Zhujian, LIN Jingjing, LIAO Xialu, HU Jiapeng, LIN Hao.
Removal of humic acid from water and fouling mechanism by photocatalytic membrane
[J]. Chemical Industry and Engineering Progress, 2018, 37(09): 3649-3656.
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[11] |
YANG Tao, QIAO Bo, LI Guochao, LIU Fen, BO Ling.
Effects of photocatalysis on membrane fouling in cross-flow system with multichannel ceramic ultrafiltration membrane for removal of humic acid
[J]. Chemical Industry and Engineering Progress, 2017, 36(11): 4293-4300.
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[12] |
WANG Pingyan, LU Xuyang, TIAN Jihong, LIU Mousheng, WANG Hailong, QI Ziding.
Cascade utilization characteristics of Zhaotong lignite “extraction of humic acid from it——low temperature pyrolysis of humin”
[J]. Chemical Industry and Engineering Progress, 2017, 36(07): 2443-2450.
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[13] |
HE Huan, SUI Qian, LÜ Shuguang, ZHAO Wentao, QIU Zhaofu.
Effects of effluent organic matter on ozonation of sulpiride
[J]. Chemical Industry and Engineering Progree, 2015, 34(3): 867-871.
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[14] |
LI Yanhong, ZHUANG Rui, ZHANG Zheng, ZHAO Wenbo, WANG Pingyan, XIA Jupei, LI Guobin.
Research on the structure, chemical composition and characterization of humic acid from lignite
[J]. Chemical Industry and Engineering Progree, 2015, 34(08): 3147-3157.
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[15] |
CHENG Liang, XU Li, LUO Tingliang, ZHANG Baolin, LIU Guoji.
Adsorption thermodynamics and kinetics of Cr(Ⅵ) of nanoscale humic acid
[J]. Chemical Industry and Engineering Progree, 2015, 34(06): 1792-1798.
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