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首页> 外文期刊>Desalination and water treatment >Study of the iron(Ⅲ)-modified clinoptilolite in the adsorption of phosphate from aqueous medium: mechanism and kinetics
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Study of the iron(Ⅲ)-modified clinoptilolite in the adsorption of phosphate from aqueous medium: mechanism and kinetics

机译:铁(Ⅲ)修饰斜发沸石在水介质中吸附磷酸盐的研究:机理与动力学

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摘要

Clinoptilolite-rich tuff (Z) enriched with Fe(III) was studied in the removal of phosphate ions present in aqueous medium at pH = 6.5. Fe(III) modification was performed by a simple wet impregnation giving the product (FeZ) with about 18 wt% Fe. Transmission electron microscopy showed the presence of a flaky Fe(III) amorphous precipitate on the clinoptilolite sheets and a preserved clinoptilolite crystallinity. The modification increased the specific surface area from 28.6 to 140.3 m(2) g(-1). FeZ effectively adsorbed phosphate, the removal rate at 298 K varying from 86% to 42.5% (for C-0 = 50 mg dm(-3) and C-0 = 400 mg dm(-3)). The sorption isotherms were in accord with the Langmuir model, giving for the Langmuir constant (R-L) values in the range 0-1 that are characteristic of a favourable adsorption. The data for adsorption kinetics were best described by the pseudo-second-order model suggesting chemisorption as the phosphate sorption mechanism. Intra-particle diffusion was present in the adsorption, but it was not the rate-limiting step. A P-31 static spin-echo mapping nuclear magnetic resonance (NMR) measurement was performed for studying the phosphate-FeZ interaction. The results showed that the phosphate adsorption on FeZ proceeds through electrostatic interactions and covalent bonding, the latter being more pronounced.
机译:研究了富Fe(III)的富斜发沸石凝灰岩(Z)去除pH = 6.5的水性介质中存在的磷酸根离子的方法。通过简单的湿浸渍进行Fe(III)改性,得到具有约18wt%Fe的产物(FeZ)。透射电子显微镜显示在斜发沸石片上存在片状Fe(III)无定形沉淀物并保持了斜发沸石的结晶度。修改将比表面积从28.6增加到140.3 m(2)g(-1)。 FeZ有效吸附了磷酸盐,在298 K时的去除率从86%到42.5%不等(对于C-0 = 50 mg dm(-3)和C-0 = 400 mg dm(-3))。吸附等温线符合Langmuir模型,给出了0-1范围内的Langmuir常数(R-L)值,这是良好吸附的特征。吸附动力学数据最好用拟二阶模型描述,表明化学吸附是磷酸盐的吸附机理。颗粒内扩散存在于吸附中,但这不是限速步骤。进行了P-31静态自旋回波映射核磁共振(NMR)测量,以研究磷酸盐与FeZ的相互作用。结果表明,FeZ上的磷酸盐吸附是通过静电相互作用和共价键进行的,共价键更为明显。

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