Department of Environment and Energy, Sejong University, Seoul 05006, South Korea.
Department of Environment and Energy, Sejong University, Seoul 05006, South Korea.
Chemosphere. 2017 Jul;178:317-324. doi: 10.1016/j.chemosphere.2017.03.068. Epub 2017 Mar 21.
The removal of a commercial humic acid (HA) and changes in its chemical composition were examined for coagulation/flocculation (C/F) processes based on jar tests using two different coagulants at a wide range of pH. ZrCl showed a better performance in eliminating HA than AlSO with the same removal rates at lower dosages. The highest removal rates were found at a neutral pH range (5.0-6.5). The HA was further decomposed into three different humic-like components (C1, C2, and C3) by excitation emission matrix coupled with parallel factor analysis (EEM-PARAFAC). Although the removal rates of all three components generally followed those of dissolved organic carbon, the relative removals of the individual components depended on the coagulant's doses and the solution pH. The fluorescent components of five ultrafiltered size fractions of the HA revealed that the peak with a longer emission wavelength could be associated with larger sized molecules. The C1/C3 ratios of the size fractions exhibited a significant linear relationship with the logarithmic values of the average molecular weight (MW) measured by size exclusion chromatography, which made it possible to predict the HA MW value changes upon the C/F using EEM-PARAFAC alone. Irrespective of the coagulant types and the pH, larger sized HA molecules were removed to a greater extent than smaller sized fractions. The preferential removal was more pronounced for ZrCl versus AlSO and at a neutral pH range. Our study suggests a great potential of EEM-PARAFAC in fast tracking the MW of humic substances in conventional C/F processes.
研究了在广泛的 pH 值范围内使用两种不同的混凝剂进行混凝/絮凝 (C/F) 过程中,商业腐殖酸 (HA) 的去除及其化学组成的变化。ZrCl 在去除 HA 方面的性能优于 AlSO,在较低剂量下具有相同的去除率。在中性 pH 范围(5.0-6.5)下,去除率最高。通过激发发射矩阵与平行因子分析(EEM-PARAFAC)进一步将 HA 分解为三种不同的腐殖质样成分(C1、C2 和 C3)。尽管所有三种成分的去除率通常与溶解有机碳的去除率一致,但单个成分的相对去除率取决于混凝剂的剂量和溶液 pH 值。HA 的五个超滤级分的荧光成分表明,具有较长发射波长的峰可能与较大尺寸的分子有关。级分的 C1/C3 比值与通过尺寸排阻色谱法测量的平均分子量 (MW) 的对数呈显著线性关系,这使得仅使用 EEM-PARAFAC 就有可能预测 C/F 过程中 HA MW 值的变化。无论混凝剂类型和 pH 值如何,较大尺寸的 HA 分子的去除程度都大于较小尺寸的分子。ZrCl 对 AlSO 的优先去除作用更明显,且在中性 pH 范围内更为明显。我们的研究表明,EEM-PARAFAC 在快速跟踪常规 C/F 过程中腐殖质物质的 MW 方面具有很大的潜力。