Zobrazeno 1 - 6
of 6
pro vyhledávání: '"Chengsi Hou"'
Autor:
Wenxin Song, Zhimin Gao, Chengsi Hou, Xiaoxiang Cheng, Jinchuan Lian, Tao Yang, Zhiwei Zhou, Daoji Wu, Heng Liang
Publikováno v:
Science of The Total Environment. 888:164235
Autor:
Chengsi, Hou, Xiaoxiang, Cheng, Xinyu, Zhang, Xuewu, Zhu, Jingtao, Xu, Xinsheng, Luo, Daoji, Wu, Heng, Liang
Publikováno v:
Science of The Total Environment. 858:160100
Forward osmosis (FO) is a high-efficiency and low-energy consumption way for algae-laden water treatment, whereas membrane fouling is still an unavoidable problem in its practical application. In this work, a strategy of ferrous-activated calcium per
Autor:
Xiaoxiang Cheng, Chengsi Hou, Hongbo Gao, Peijie Li, Xuewu Zhu, Congwei Luo, Lijie Zhang, Yan Jin, Daoji Wu, Heng Liang
Publikováno v:
Water research. 211
Algal blooms and eutrophication in natural surface water not only pose a threat to human health, but also adversely affect the water purification process. Ultrafiltration (UF) has been proved to be effective for the retention of algal cells, but its
Autor:
Chengsi Hou, Xiaoxiang Cheng, Xuewu Zhu, Yan Jin, Heng Liang, Daoji Wu, Congwei Luo, Zixiao Ren, Jinchuan Lian, Lijie Zhang
Publikováno v:
Water research. 204
To alleviate algal fouling in membrane water treatment processes, conventional technologies such as coagulation with poly aluminum chloride (PACl) has been widely adopted by many drinking water treatment plants. However, coagulation alone exhibited r
Autor:
Xiaoxiang Cheng, Xuewu Zhu, Chengsi Hou, Xinyu Zhang, Daoji Wu, Heng Liang, Congwei Luo, Peijie Li
Publikováno v:
Chemosphere. 284
Powdered activated carbon (PAC) has turned out to be an efficient adsorbent in drinking water treatment, whereas its application integrated with membrane filtration is still controversial because of the combined fouling effect between organic polluta
Autor:
Xiaoxiang Cheng, Congwei Luo, Chengsi Hou, Xuewu Zhu, Daoji Wu, Peijie Li, Lu Zheng, Heng Liang
Publikováno v:
Separation and Purification Technology. 270:118804
In this study, carbon nanoparticles (CNPs) in different structural dimensions, including carbon nanotubes (CNTs), carbon nanofibers (CNFs), hexagonally (CMK-3) and cubically (CMK-8) ordered mesoporous carbons were proposed for peroxymonosulfate (PMS)