A hydrophilic surface molecularly imprinted polymer on a spherical porous carbon support for selective phenol removal from coking wastewater
Author:
Publisher
Elsevier BV
Subject
General Materials Science,Materials Science (miscellaneous)
Reference39 articles.
1. Evaluation of the detoxification efficiencies of coking wastewater treated by combined anaerobic-anoxic-oxic (A2O) and advanced oxidation process[J];Na;Journal of Hazardous Materials,2017
2. Cost-efficient improvement of coking wastewater biodegradability by multi-stages flow through peroxi-coagulation under low current load[J];Ren;Water Research,2019
3. Treatment effects and genotoxicity relevance of the toxic organic pollutants in semi-coking wastewater by combined treatment process[J];Liu;Environmental Pollution,2017
4. State of the art of biological processes for coal gasification wastewater treatment[J];Zhao;Biotechnology Advances,2016
5. Treatment of real coal gasification wastewater using a novel integrated system of anoxic hybrid two stage aerobic processes: Performance and the role of pure oxygen microbubble[J];Zhang;Environmental science and pollution research international,2016
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