scholarly journals Efficient bromide removal from produced water by peroxymonosulfate for controlling disinfection byproduct formation in downstream water supplies

Author(s):  
Kuan Huang
2021 ◽  
Vol 55 (5) ◽  
pp. 2908-2918
Author(s):  
Joshua M. Allen ◽  
Michael J. Plewa ◽  
Elizabeth D. Wagner ◽  
Xiao Wei ◽  
Gretchen E. Bollar ◽  
...  

Chemosphere ◽  
2021 ◽  
pp. 130643
Author(s):  
Lingxiao Fu ◽  
Xiaofeng Wu ◽  
Yongbin Zhu ◽  
Lei Yao ◽  
Chengqiang Wu ◽  
...  

2020 ◽  
Vol 6 (12) ◽  
pp. 3460-3475
Author(s):  
Chuhui Zhang ◽  
J. Clark Maness ◽  
Amy A. Cuthbertson ◽  
Susana Y. Kimura ◽  
Hannah K. Liberatore ◽  
...  

Granular activated carbon effectively controlled disinfection byproduct formation and calculated toxicity, especially at high influent bromide levels.


Author(s):  
Matthew R. Landsman ◽  
Rahul Sujanani ◽  
Samuel H. Brodfuehrer ◽  
Carolyn M. Cooper ◽  
Addison G. Darr ◽  
...  

Alongside the rising global water demand, continued stress on current water supplies has sparked interest in using nontraditional source waters for energy, agriculture, industry, and domestic needs. Membrane technologies have emerged as one of the most promising approaches to achieve water security, but implementation of membrane processes for increasingly complex waters remains a challenge. The technical feasibility of membrane processes replacing conventional treatment of alternative water supplies (e.g., wastewater, seawater, and produced water) is considered in the context of typical and emerging water quality goals. This review considers the effectiveness of current technologies (both conventional and membrane based), as well as the potential for recent advancements in membrane research to achieve these water quality goals. We envision the future of water treatment to integrate advanced membranes (e.g., mixed-matrix membranes, block copolymers) into smart treatment trains that achieve several goals, including fit-for-purpose water generation, resource recovery, and energy conservation.


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