[1] |
Wei MAO, Hongtao YU.
Emerging problems and strategies of electrochemical water softening technology
[J]. Industrial Water Treatment, 2023, 43(7): 32-40.
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[2] |
Tianzhen ZHU, Deze YU, Mingyin ZHANG, Guangyuan YAO, Xinggang HU, Aizhen HE, Lei TAO, Houkai TENG.
Enhancing electrochemical hardness removal for water with high hardness and low carbonate alkalinity by adding CO2
[J]. Industrial Water Treatment, 2023, 43(6): 130-136.
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[3] |
Songtao LIU, Xiaomei DANG, Wenyao JIA, Yue CAO, Yuling ZHANG, Chuanmin CHEN.
Synchronous hardness and silicon removal of high-salt wastewater
[J]. Industrial Water Treatment, 2023, 43(10): 71-78.
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[4] |
Ming QI,Liansong QIN,Yimin FANG,Weipeng CHEN,Tongbao GUO.
Application of membrane combined sectional salt separation process in the treatment of pharmaceutical wastewater
[J]. Industrial Water Treatment, 2022, 42(3): 160-167.
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[5] |
Songtao LIU, Hailong XU, Xiaomei DANG, Lipeng WANG, Qingzhuo SI, Chuanmin CHEN.
Membrane electrolysis used in circulating cooling water treatment
[J]. Industrial Water Treatment, 2022, 42(10): 154-159.
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[6] |
Haibo Xu,Nan Zhang,Jun Yang,Yaxiang Lin.
Research on the advanced treatment and reuse of the recirculating water blowdown water in steel plant
[J]. Industrial Water Treatment, 2021, 41(9): 157-160.
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[7] |
Wang Xiaolei, Tong Shenglu, Chen Quan, Huo Weidong.
Experimental study on the decrease of hardness of water-coal-slurry gasification ash water
[J]. INDUSTRIAL WATER TREATMENT, 2018, 38(3): 65-68.
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[8] |
Xu Changwen, Wang Guoying, Liu Jiming, Yue Xiuping, Ning Shuyi.
Optimization of simultaneous adsorption of fluoride and hardness from water by calcined Mg/Al hydrotalcites by response surface method
[J]. INDUSTRIAL WATER TREATMENT, 2018, 38(12): 24-27.
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[9] |
Ye Zhian, Mu Shirong, Chang Jianjun, Zhou Hongcang, Hu Teli.
Research on the automatic control method of sludge discharge by lime coagulation process
[J]. INDUSTRIAL WATER TREATMENT, 2018, 38(10): 109-112.
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[10] |
Yang Yuanliang, Wang Hui, Zhang Jian, Pang Huizhong, Gu Meixia, Song Wenfang.
Optimization of the project on the desalination technology of wastewater containing heavy oil with high salinity and high hardness
[J]. INDUSTRIAL WATER TREATMENT, 2016, 36(7): 90-93.
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[11] |
Wu Qingshou, Meng Yongxiang.
Design of the sodium ion exchanger having softened water hardness real-time monitoring
[J]. INDUSTRIAL WATER TREATMENT, 2016, 36(10): 104-106.
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[12] |
Wang Chao, Li Yanyun, Tao Lei, Qin Lijuan, Wang Hao.
Corrosion inhibition capacity of non-phosphorus corrosion inhibitor in water with moderate alkalinity and moderate hardness for A3 carbon steel
[J]. INDUSTRIAL WATER TREATMENT, 2015, 35(8): 71-73.
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[13] |
Hou Yang, Jin Xiaoxia, Wang Hui, Sun Ji, Zhao Yingqiu.
Study on the evaluation of scale inhibition capacity of water treatment agents by ultimate carbonate hardness method
[J]. INDUSTRIAL WATER TREATMENT, 2014, 34(3): 47-50.
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[14] |
Jin Baodan.
Experimental study on the reclaimed water reuse of petrochemical wastewater
[J]. INDUSTRIAL WATER TREATMENT, 2012, 32(11): 65-67,68.
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[15] |
Zhang Hua,Cui Liuhua,Wu Baichun.
Present situation of the research on water hardness removal
[J]. INDUSTRIAL WATER TREATMENT, 2011, 31(12): 5-8.
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