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作 者:傅金祥[1,2] 李麦雨 鲁勇朝 张延平 由昆 金星[1] 罗迪 王勇勇[1] FU Jinxiang;LI Maiyu;LU Yongchao;ZHANG Yanping;YOU Kun;JIN Xing;LUO Di;WANG Yongyong(School of Municipal and Environmental Engineering,Shenyang Jianzhu University,Shenyang 110168,China;School of Civil Engineering,Kashgar University,Kashen 844006,China)
机构地区:[1]沈阳建筑大学市政与环境工程学院,辽宁沈阳110168 [2]喀什大学土木工程学院,新疆喀什844006
出 处:《工业水处理》2023年第1期115-123,共9页Industrial Water Treatment
摘 要:气液混合泵溶气气浮系统能产生较小粒径的微气泡,在印染、食品、环保等工业废水处理中有着广泛的应用前景。为了优化气泡粒径分布云图以及提供更真实的计算流体动力学(CFD)流体模型,选用中试气浮池结合显微摄像在不同因素下探究气浮池混合区与分离区的气泡粒径分布。控制水力负荷为2.67~8 m^(3)/(m^(2)·h),溶气压力为0.28~0.36 MPa,回流比为20%~80%,进气比为2%~10%,结果表明,此条件下多数气泡粒径维持在50~100μm,最小粒径可达20μm,系统微气泡最佳状态的运行参数:水力负荷为5.33 m^(3)/(m^(2)·h),溶气压力为0.34 MPa,回流比为40%,进气比为6%,在此条件下该系统的除油率可达73%。The gas-liquid mixed pump combined with dissolving air floating system can produce small particle size microbubbles,which has a wide application prospect in dyeing,food,environmental protection and other industrial wastewater treatment.In order to optimize the bubble particle size distribution cloud and provide a more realistic computational fluid dynamics(CFD) fluid model,a pilot air flotation cell combined with microscopic camera was chosen to investigate the bubble particle size distribution in the mixing and separation zones under different factors to investigate the distribution of bubble size in the mixing and separation zones of the air flotation cell.Hydraulic load 2.67-8 m^(3)/(m^(2)·h),dissolved air pressure 0.28-0.36 MPa,reflux ratio 20%-80%,inlet air ratio 2%-10%were controlled.The results showed that the particle size of most of the bubbles under the control conditions was maintained at 50-100μm,and the smallest particle size was up to 20μm.The optimum operating parameters of the system were 5.33 m^(3)/(m^(2)·h) hydraulic load,0.34 MPa dissolved gas pressure,40%reflux ratio,and 6%inlet air ratio,and the oil removal effect of the system was up to 73%under these conditions.
分 类 号:X703.3[环境科学与工程—环境工程]
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