Study on the operation performance and floc adhesion mechanism of dissolved air flotation equipment

被引:7
|
作者
Wang, Yonglei [1 ]
Ma, Huiyuan [1 ]
Wang, Xiaobo [2 ]
Ju, Ling [3 ]
Tian, Liping [2 ]
Qi, Hua [4 ]
Yu, Haiyang [5 ]
He, Guilin [1 ]
Li, Jingjing [1 ]
机构
[1] Shandong Jianzhu Univ, Coll Municipal & Environm Engn, Jinan 250101, Peoples R China
[2] Weifang Municipal Publ Util Serv Ctr, Weifang 261041, Peoples R China
[3] Shuifa Planning & Design Co Ltd, Jinan 250100, Peoples R China
[4] Xintai Tap Water Co Ltd, Tai An 271299, Shandong, Peoples R China
[5] Shandong Haibang Water Technol Co Ltd, Jinan 250101, Peoples R China
关键词
Dissolved gas efficiency; Microbubble particle size; Bubble stabilization time; Air flotation; Adhesion mechanism; MATRIX REGIONAL-INTEGRATION; FLUORESCENCE EXCITATION; QUANTIFY SPECTRA; LC-OCD; WATER; REMOVAL; CARBON; MATTER;
D O I
10.1007/s11356-022-19359-9
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
As a critical air dissolving system, the performance of air flotation equipment directly determines the adhesion efficiency and pollutant removal efficiency of air flotation processes. The factors affecting the performance of air flotation equipment and the relationships between equipment performance and pollution removal efficiency were studied. The results show that when the dissolved gas pressure was 0.4 MPa and the air intake rate was 24 mL/min, the dissolved gas efficiency of the equipment reached its highest value of 55%, the average particle size of bubbles was maintained at 24 mu m, and the dissolved oxygen (DO) content significantly increased. When the dissolved gas pressure was 0.4 MPa, the air intake rate was 24 mL/min, and the coagulant dose was 6 mg/L; the removal rates for turbidity, chlorophyll-a, total organic carbon (TOC), and UV absorbance at 254 nm (UV254) reached 95.76%, 96.41%, 34.21%, and 65.96%, respectively. The degree of pollutant removal was positively correlated with changes to the equipment performance parameters. Microbubbles (MBs) showed good removal of high-molecular weight, strongly hydrophobic organic matter and showed some removal of the trihalomethane formation potential (THMFP) of the water. The removal mechanism mainly depended on the hydrophobic interactions of the MBs with algae and organic matter. The flocs and MBs collided and adhered to form air-entrained flocs. The separation of air-entrained flocs depended on the relationship between the surface load and the rising velocity. The surface load has to be lower than the rising velocity of the minimum air-entrained flocs to ensure good effluent outcomes.
引用
收藏
页码:54219 / 54233
页数:15
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