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Effect of acid medium on the coagulation efficiency of polysilicate-ferric (PSF)-A new kind of inorganic polymer coagulant

机译:酸性介质对新型无机高分子混凝剂聚硅酸铁(PSF)混凝效率的影响

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Polysilicate-ferric (PSF) prepared with water glass, FeSO4·7H2O and oxidant by co-polymerization is a new kind of inorganic polymer coagulant for water and wastewater treatment. Acid, as a medium, played a vital role in the preparation and polymerization of PSF. In this experiments, four PSF coagulants were prepared with different acid (HCl, H2SO4, H3PO4 and CH3COOH), which were denoted as PSF(Cl), PSF(S), PSF(P) and PSF(C) respectively. The objective of this work is to study the influence of acid on physico-chemical property and surface morphology of PSF and on the coagulation performance as well. To do so, scanning electron microscope (SEM) analyses were used to investigate the surface properties and morphology of PSF coagulants. Infra-red (IR) spectroscopy was used to characterize the structure of PSF coagulants. Results showed that PSF(Cl), PSF(S) and PSF(C) possessed three-dimensional cluster structure and higher surface area. PSF(C) possessed the best stability performance among the four PSF coagulants. The comparison of coagulation efficiencies for turbidity, UV_(254), COD_(Mn) and TOC by PSF (Cl), PSF(S), PSF (P) and PSF(C) were investigated by batch experiments. The results showed that the retardation of acetic acid was favorable to the stability and coagulation performance of PSF. The removal efficiencies of turbidity, UV_(254) and COD_(Mn) by PSF(C) were the best compared with other PSF coagulants at the same dosage. The good coagulation efficiencies of PSF(C) at 0.21 mmol Fe/L were 92.4% for UV_(254) removal, 98.5% for turbidity removal and 73.5% for COD_(Mn) removal, however, acetic acid introduced organic carbon which led to a high total organic carbon (TOC) concentration.
机译:由水玻璃,FeSO4·7H2O和氧化剂共聚制备的聚硅酸铁(PSF)是一种新型的用于水和废水处理的无机聚合物混凝剂。酸作为介质,在PSF的制备和聚合中起着至关重要的作用。在该实验中,用不同的酸(HCl,H2SO4,H3PO4和CH3COOH)制备了四种PSF凝结剂,分别表示为PSF(Cl),PSF(S),PSF(P)和PSF(C)。这项工作的目的是研究酸对PSF的理化性质和表面形态以及对混凝性能的影响。为此,使用扫描电子显微镜(SEM)分析来研究PSF凝结剂的表面特性和形态。红外(IR)光谱用于表征PSF凝结剂的结构。结果表明,PSF(Cl),PSF(S)和PSF(C)具有三维簇结构和较高的表面积。 PSF(C)在四种PSF混凝剂中具有最佳的稳定性能。通过分批实验研究了混浊度,UV_(254),COD_(Mn)和TOC与PSF(Cl),PSF(S),PSF(P)和PSF(C)的混凝效率的比较。结果表明,乙酸的阻滞作用有利于PSF的稳定性和混凝性能。在相同剂量下,PSF(C)去除浊度,UV_(254)和COD_(Mn)的效率最高。 PSF(C)在0.21 mmol Fe / L时具有良好的混凝效率,其中UV_(254)去除率为92.4%,浊度去除率为98.5%,COD_(Mn)去除率为73.5%,但是乙酸引入了有机碳,导致总有机碳(TOC)浓度高。

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