[1] |
Longji GAO, Zhiqing ZHAO, Yuan MA, Jing YUE, Wenjie LIAO, Minghui HUANG.
Removal of 2,4-difluoroanilne and Cu2+ by Diaphorobacter sp. DFA4 assistedmagnetic biochar
[J]. Industrial Water Treatment, 2024, 44(8): 90-98.
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[2] |
Yongming WU, Lizhi DENG, Hong ZHAO, Zifei SHEN, Tiancheng REN, Jiayu ZHOU, Mi DENG.
Removal of ammonia nitrogen from sewage in the service area of the highway by artificial zeolite
[J]. Industrial Water Treatment, 2023, 43(6): 99-105.
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[3] |
Zimu LI, Canhua LI, Yuhong ZHA, Minghui LI, Gang DU.
Study on the adsorption mechanism of Cu2+ by steel slag-manganese slag composite ceramics
[J]. Industrial Water Treatment, 2022, 42(8): 113-119.
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[4] |
Ning KANG, Kun YOU, Li XU, Zhenpeng LIU, Diannan HUANG, Zhendong GAO, Qi LIU, Kai CAO.
Research on porous spherical activated MgO preparation and its defluorination efficacy
[J]. Industrial Water Treatment, 2022, 42(11): 65-75.
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[5] |
Huali Zhang,Ruonan Qi,Weixu Xie,Shusheng Wang.
Study on adsorption of Cu2+ by modified corn straw
[J]. Industrial Water Treatment, 2020, 40(2): 71-74.
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[6] |
Han Kun, Hao Haotian, Kong Yan, Shi Baoyou, Han Zhiyong, Zhuang Yuan, Wang Yili.
Rapid treatment of Cu2+-containing methylene blue wastewater by ferrite process
[J]. INDUSTRIAL WATER TREATMENT, 2018, 38(7): 54-57.
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[7] |
Niu Yunfeng, Liu Pan, Wu Junfeng, Wang Xianli, Fu Yongmei, Guo Yifei, Zhu Xinfeng, Gu Xiaogang.
Treatment of industrial wastewater containing Cu2+ with coupling agent modified illite
[J]. INDUSTRIAL WATER TREATMENT, 2018, 38(2): 52-54.
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[8] |
Wang Xufeng, Zheng Li'an, Liu Mao, Le Pan, Yang Kai, Wang Hongyu.
Adsorption characters of Cu2+ and NH4+-N in wastewater by modified corncob biochar
[J]. INDUSTRIAL WATER TREATMENT, 2017, 37(1): 37-41.
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[9] |
Shi Ping, Liu Zhiping, Fang Fang, Wu Wenhui, Gou kai.
Influences of SRT on the treatment of wastewater containing HA and Cu2+ by SBR
[J]. INDUSTRIAL WATER TREATMENT, 2016, 36(9): 76-79.
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[10] |
Wang Zhuo, Deng Juan, Zhu Junyan, Zhou Chao, Zhou Xiaoji, Guo Yongfu, Bai Renbi.
Study on the adsorption capacity for mercury(Ⅱ) with chromium/cobalt-doped graphene oxide materials
[J]. INDUSTRIAL WATER TREATMENT, 2016, 36(7): 43-47,67.
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[11] |
Rong Hongwei, Li Quanbin, Zhang Chaosheng, Wang Lianjie, Dong Ming.
Studies on the recovery of the influences of Cu2+ on sludge microbial activity
[J]. INDUSTRIAL WATER TREATMENT, 2016, 36(7): 34-38.
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[12] |
Xiong Jiaqing, Sun Luyang, Chen Hao, Wang Xiaochang, Zheng Yucong, Ge Yuan.
Phosphorous adsorption capacity of different substrates and its application to surface flow constructed wetlands
[J]. INDUSTRIAL WATER TREATMENT, 2015, 35(1): 72-76.
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[13] |
Jiang Boquan, Zeng Fang, Zeng Qingfang, Chen Jianxin, Liu Yude.
Preparation of coconut shell-based activated carbon and its kinetics on the adsorption of acidic scarlet GR dye
[J]. INDUSTRIAL WATER TREATMENT, 2014, 34(6): 17-20.
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[14] |
Liu Xuecheng, Zhang Huiling, Lu Xueli, Wang Chunxing.
Study on the adsorption of two kinds of dyes by adsorbent derived from sludge and rice husk
[J]. INDUSTRIAL WATER TREATMENT, 2014, 34(5): 33-37.
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[15] |
Ding Lei, Li Beigang, Mi Jing.
Activation of fly ash and its adsorption for reactive deep blue K-R
[J]. INDUSTRIAL WATER TREATMENT, 2014, 34(10): 37-41.
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