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Effects of Al2O3 and TiO2 on the coagulation process by Al2(SO4)3 (AS) and poly-aluminum chloride (PAD) in kaolin suspension

机译:Al2O3和TiO2对Al2(SO4)3(AS)和聚氯化铝(PAD)在高岭土悬浮液中凝固过程的影响

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摘要

More and more nanoparticles may be found in the aquatic environment. Effects of different nanoparticles (nano-Al2O3 and nano-TiO2) on the coagulation process in kaolin suspension (with or without humic acid) were investigated. The results indicated that when the pH was 7.0 in kaolin suspension, the strength factor with the presence of TiO2 increased from 28.79% to 48.69% and when the concentration of TiO2 was larger than 1.6 mg/L, the strength factor decreased to 23.39%. The removal efficiencies for Al2O3 were 58.27%, 62.73% and 47.3% under pH 6.0, 7.0 or 8.5. The removal efficiencies for TiO2 were 38.12%, 52.25% and 27.19%. When the concentration of DOC was 2.5 mg/L under pH 7.0, the recovery factor increased from 54.55% to 62.65% with increasing concentration of Al2O3 from 0.0 mg/L to 2.0 mg/L, and it increased from 54.55% to 67.74% for TiO2. PACl produced larger flocs, and this may be caused by higher charge neutralization ability and the electrostatic patch effect. The removal efficiency for TiO2 decreased from 52.25% to 22.13% with increasing concentration of DOC from 0 mg/L to 7.5 mg/L The removal efficiency for Al2O3 decreased from 62.73% to 32.12%.
机译:在水生环境中可能发现越来越多的纳米颗粒。研究了不同的纳米颗粒(纳米Al2O3和纳米TiO2)对高岭土悬浮液(有或没有腐殖酸)混凝过程的影响。结果表明,当高岭土悬浮液的pH值为7.0时,存在TiO2的强度因子从28.79%增加到48.69%,而当TiO2浓度大于1.6 mg / L时,强度因子降低到23.39%。在pH 6.0、7.0或8.5下,Al2O3的去除效率分别为58.27%,62.73%和47.3%。 TiO2的去除率分别为38.12%,52.25%和27.19%。当pH值为7.0时DOC的浓度为2.5 mg / L时,随着Al2O3的浓度从0.0 mg / L增加到2.0 mg / L,回收率从54.55%增加到62.65%,对于DOC,其回收率从54.55%增加到67.74%二氧化钛PACl产生较大的絮凝物,这可能是由于较高的电荷中和能力和静电补丁效应引起的。随着DOC浓度从0 mg / L增加到7.5 mg / L,TiO2的去除率从52.25%降低到22.13%。Al2O3的去除率从62.73%降低到32.12%。

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