Evaluation of zeta potential and particle size measurements of multiple coagulants in semiconductor wastewater

N. M. Zuki, Norli Ismail, F. M. Omar
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引用次数: 9

Abstract

Chemical precipitation method utilizing calcium salts has been extensively used to treat fluoride-containing wastewater from semiconductors industries. Aim of this paper it to investigate the coagulation behavior of calcium salts (CaCl2), aluminium salts (PACl) and polymer by using dynamic light scattering technique that is applied as an alternative methodology to pre-determine the optimum pH and dosage range. The stability and behavior of the wastewater sample and coagulants were studied in terms of zeta potential and z-average hydrodynamic diameter profiles as a function of pH (pH 2 to 12). It is observed that optimum pH range and dosage range for fluoride-containing wastewater, CaCl2, and PACl were at pH 9, pH 5 with 3 mg/L CaCl2, and pH 7 with 1 mg/L PACl, respectively. This condition is followed by the addition of polymer which act as a flocculant at three different pH regimes; pH below than pHPZC (pH pHPZC). Experimental results indicated that addition of polymer at pH=pHPZC (CaF2/PACl at pH 5) and dosage of 2 mg/L promotes the biggest size of z-average hydrodynamic diameter of the particles which is 4500±0.9 d.nm with zeta potential value of 0.2±0.1 mV. Therefore from this study proved that pH adjustment played an important roles during coagulation and flocculation process especially in aggregation or disaggregation of the particles.Chemical precipitation method utilizing calcium salts has been extensively used to treat fluoride-containing wastewater from semiconductors industries. Aim of this paper it to investigate the coagulation behavior of calcium salts (CaCl2), aluminium salts (PACl) and polymer by using dynamic light scattering technique that is applied as an alternative methodology to pre-determine the optimum pH and dosage range. The stability and behavior of the wastewater sample and coagulants were studied in terms of zeta potential and z-average hydrodynamic diameter profiles as a function of pH (pH 2 to 12). It is observed that optimum pH range and dosage range for fluoride-containing wastewater, CaCl2, and PACl were at pH 9, pH 5 with 3 mg/L CaCl2, and pH 7 with 1 mg/L PACl, respectively. This condition is followed by the addition of polymer which act as a flocculant at three different pH regimes; pH below than pHPZC (pH pHPZC). Experimental results indicated that a...
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半导体废水中多种混凝剂zeta电位和粒径测量的评价
利用钙盐化学沉淀法处理半导体工业含氟废水已得到广泛应用。本文的目的是通过动态光散射技术研究钙盐(CaCl2)、铝盐(PACl)和聚合物的混凝行为,并将其作为一种替代方法来预先确定最佳pH和剂量范围。根据zeta电位和z-平均水动力直径曲线作为pH (pH 2至12)的函数,研究了废水样品和混凝剂的稳定性和行为。结果表明,含氟废水、CaCl2和PACl的最佳pH范围和投加量分别为pH = 9、pH = 5和pH = 1 mg/L PACl。在此条件下,加入聚合物,在三种不同的pH值下作为絮凝剂;pH低于pHPZC (pH pHPZC)。实验结果表明,在pH=pHPZC (CaF2/PACl pH= 5)条件下,添加2 mg/L的聚合物可使颗粒的z-平均水动力直径最大,为4500±0.9 d.nm, zeta电位值为0.2±0.1 mV。因此,本研究证明了pH调节在混凝和絮凝过程中,特别是在颗粒的聚集或分解过程中起着重要的作用。利用钙盐化学沉淀法处理半导体工业含氟废水已得到广泛应用。本文的目的是通过动态光散射技术研究钙盐(CaCl2)、铝盐(PACl)和聚合物的混凝行为,并将其作为一种替代方法来预先确定最佳pH和剂量范围。根据zeta电位和z-平均水动力直径曲线作为pH (pH 2至12)的函数,研究了废水样品和混凝剂的稳定性和行为。结果表明,含氟废水、CaCl2和PACl的最佳pH范围和投加量分别为pH = 9、pH = 5和pH = 1 mg/L PACl。在此条件下,加入聚合物,在三种不同的pH值下作为絮凝剂;pH低于pHPZC (pH pHPZC)。实验结果表明……
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