Superhydrophobic coating on quartz sand filter media for oily wastewater filtration

Author(s):  
Jianlin Liu ◽  
Xiaofei Zhu ◽  
Hongwei Zhang ◽  
Fuping Wu ◽  
Bigui Wei ◽  
...  
2018 ◽  
Vol 8 (4) ◽  
pp. 544-552 ◽  
Author(s):  
Wei Bigui ◽  
Liu Jianlin ◽  
Wang Gang ◽  
Chang Qing

Abstract To improve the hydrophobicity and lipophilicity of a quartz sand filter medium, two coupling agents, DN101 and KH570, were employed. The filter medium surface wettability and oil removal efficiency before and after modification were investigated, and the characteristics are summarized. The test results show that, after modification by the grafting of an organic long-chain coupling agent to the filter medium surface, the lipophilic to hydrophilic ratio increased from 1.31 (UQS) to 12.09 (MQD-Ti) and 5.11 (MQD-Si), and the oil removal efficiencies of MQD-Ti and MQD-Si improved by 21.7% and 6.9%, respectively. The stronger hydrophobicity resulted in higher quality factor values of 0.668 m−1 and 0.548 m−1 for MQD-Ti and MQD-Si, respectively, compared to 0.533 m−1 for UQS. This means that improving the filter medium surface hydrophobicity and oil removal efficiency via filter medium surface modification is effective.


2022 ◽  
Vol 46 ◽  
pp. 102561
Author(s):  
Jingming Zhao ◽  
Yuying Deng ◽  
Min Dai ◽  
Yanni Wu ◽  
Imran Ali ◽  
...  

Water ◽  
2018 ◽  
Vol 10 (9) ◽  
pp. 1160 ◽  
Author(s):  
Tadele Haile ◽  
Maria Fuerhacker

Stormwater runoff from roadways often contains a variety of contaminants such as heavy metals, which can adversely impact receiving waters. The filter media in stormwater filtration/infiltration systems play a significant role in the simultaneous removal of multiple pollutants. In this study, the capacity of five filter media—natural quartz sand (QS), sandy soil (SS) and three mineral-based technical filter media (TF-I, TF-II and TF-III)—to adsorb heavy metals (Cu, Pb and Zn) frequently detected in stormwater, as well as remobilization due to de-icing salt (NaCl), were evaluated in column experiments. The column breakthrough data were used to predict lifespan of the filter media. Column experiment operated under high hydraulic load showed that all technical filters and sandy soil achieved >97%, 94% and >80% of Pb, Cu and Zn load removals, respectively, while natural quartz sand (QS) showed very poor performance. Furthermore, treatment of synthetic stormwater by the soil and technical filter media met the requirements of the Austrian regulation regarding maximum effluent concentrations and minimum removal efficiencies for groundwater protection. The results showed that application of NaCl had only a minor impact on the remobilization of heavy metals from the soil and technical filter media, while the largest release of metals was observed from the QS column. Breakthrough analysis indicated that load removal efficiencies at column exhaustion (SS, TF-I, TF-II and TF-III) were >95% for Cu and Pb and 80–97% for Zn. Based on the adsorption capacities, filtration systems could be sized to 0.4 to 1% (TF-I, TF-II and TF-III) and 3.5% (SS) of their impervious catchment area and predicated lifespan of each filter media was at least 35, 36, 41 and 29 years for SS, TF-I, TF-II and TF-III, respectively. The findings of this study demonstrate that soil—based and technical filter media are effective in removing heavy metals and can be utilized in full-stormwater filtration systems.


2021 ◽  
Vol 189 ◽  
pp. 116581 ◽  
Author(s):  
F.H. de Souza ◽  
P.B. Roecker ◽  
D.D. Silveira ◽  
M.L. Sens ◽  
L.C. Campos

2019 ◽  
Vol 229 ◽  
pp. 115808 ◽  
Author(s):  
Wei Bigui ◽  
Yue Cheng ◽  
Liu Jianlin ◽  
Wang Gang ◽  
Dai Liang ◽  
...  

2013 ◽  
Vol 320 ◽  
pp. 683-687
Author(s):  
Yong Jiang Di ◽  
Bi Jia ◽  
Jun Wang ◽  
Xiao Hong Xu ◽  
Jian Feng Wu

The porous ceramic filter balls were synthesized with industrial solid waste by ceramic process. The removal efficiency, filtration velocity and turbidity for the water treatment properties of the porous ceramic ball filter materials was studied comparing with that of the quartz sand filter materials. The test result shown that the decontamination efficiency of the porous ceramic ball filter was 5% to 10% high than that of the quartz sand filter. When the water turbidity fluctuated with magnitude about 50%, the changes of final water turbidity was in the range of 5% to 8% through the porous ceramic ball filter. The energy saving efficiency of the porous ceramic ball filter was very significant for the porous ceramic ball filter effectively extend the filtration cycle life.


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