Affiliation:
1. Department of Municipal Engineering, College of Urban Construction, Nanjing Tech University, Nanjing, 211816, China
Abstract
Abstract
In this study, omphacite medium were modified by roasting at high temperature. The optimal preparation conditions were as follows: the pH value was 1, concentration of FeCl3 was 2 mol/L, roasting temperature was 450 °C and roasting time was 2 h. Specific surface area, scanning electron microscopy, and EDS analysis were used to compare the unmodified and modified omphacite, and a dynamic filtration experiment was performed to treat the slightly polluted water. The analysis of the characterization results revealed that the surface structure of the modified omphacite filter medium changed greatly. Its surface was rough and potholes increased, and the specific surface area and adsorption capacity were significantly increased. Results of the dynamic filtration experiment revealed that the average removal efficiencies of organic matter, TOC, and turbidity by quartz sand were 21.17%, 2.2%, and 94.5%. The average removal efficiencies of organic matter, TOC, and turbidity by unmodified omphacite were 23.46%, 26.7%, and 95.2%. The average removal efficiencies of organic matter, TOC, and turbidity by modified omphacite were 50.35%, 45.5%, and 96.3%. On the whole, the filtration performance of the modified omphacite filter column was the best among the three filter columns, and the recovery of the backwashing performance was also better.
Subject
Water Science and Technology
Reference19 articles.
1. Analysis on the comprehensive utilization status of metal tailings resources in China;Deng;Nonferrous Metals Digest,2015
2. Comparison of the performance of several modified filter materials for the removal of organic matter in water;Deng;Journal of Tongji University (Natural Science Edition),2001
3. Investigation of biotransformation, sorption, and desorption of multiple chemical contaminants in pilot-scale drinking water biofilters
4. Research status and progress of drinking water treatment technology;He;Liaoning Chemical Industry,2012
5. Optimization of preparation technology for modified coal fly ash and its adsorption properties for Cd2+
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