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采用硝酸钠改性煅烧天然沸石去除铵。

Ammonium removal using a calcined natural zeolite modified with sodium nitrate.

机构信息

Department of Environmental Engineering, China Jiliang University, Hangzhou, 310018, China.

Department of Environmental Engineering, China Jiliang University, Hangzhou, 310018, China.

出版信息

J Hazard Mater. 2020 Jul 5;393:122481. doi: 10.1016/j.jhazmat.2020.122481. Epub 2020 Mar 5.

Abstract

Ammonium is one of the key factors responsible for the eutrophication of water bodies. The purpose of this study was to remove ammonium from water using a natural zeolite (NZ) modified with sodium nitrate (NaNO) by impregnation and calcination. The ability of the NZ to remove ammonium from water was determined by single calcination; however, its efficiency was significantly enhanced by impregnation with a NaNO solution. Zeolite modified with 3.00 M NaNO and calcination at 673 K yielded the best ammonium removal efficiency, which was 39.88 % higher than the NZ alone. The zeolites that were regenerated over six times maintained a removal rate of 79.35-84.79 % by mixing 25.0 mg of the NZ into 50 mL of a 5.0 mg/L ammonium solution. The improved performance of the modified zeolite (q, 16.96 mg/g) was mainly attributed to its relatively elevated mesopore volumes and higher ion-exchange capacity that results from nitrate decomposition, oxygen release, and sodium-ion exchange. The adsorption kinetics and isotherms are best described by the pseudo-first-order (PFO) and Freundlich model, respectively, and the process was endothermic. The effects of other factors, including coexisting ions, pH, and dosage, on ammonium adsorption were also determined.

摘要

氨氮是造成水体富营养化的关键因素之一。本研究旨在通过浸渍和煅烧的方法,用硝酸钠(NaNO)改性天然沸石(NZ)去除水中的氨氮。通过单次煅烧来确定 NZ 去除水中氨氮的能力,但是用 NaNO 溶液浸渍后,其效率显著提高。用 3.00 M NaNO 改性并在 673 K 下煅烧,可获得最佳的氨氮去除效率,比单独使用 NZ 时提高了 39.88%。经过六次再生的沸石,通过将 25.0mg NZ 混合到 50mL 5.0mg/L 的氨氮溶液中,可保持 79.35-84.79%的去除率。改性沸石(q,16.96mg/g)的性能得到改善,主要归因于其相对较高的中孔体积和较高的离子交换容量,这是由于硝酸盐分解、氧气释放和钠离子交换所致。吸附动力学和等温线分别最好由拟一级(PFO)和 Freundlich 模型描述,该过程是吸热的。还确定了其他因素(包括共存离子、pH 值和剂量)对氨氮吸附的影响。

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