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采用响应面法研究铁、锰及铁锰改性天然斜发沸石对水溶液中氟的吸附。

The adsorption of fluoride from aqueous solutions by Fe, Mn, and Fe/Mn modified natural clinoptilolite and optimization using response surface methodology.

机构信息

Department of Environmental Engineering, Pamukkale University, Denizli, Turkey.

Aydem Energy, Denizli, Turkey.

出版信息

Water Environ Res. 2021 Apr;93(4):620-635. doi: 10.1002/wer.1464. Epub 2020 Oct 26.

Abstract

Natural clinoptilolite was modified using iron, manganese, or iron-manganese for adsorption of fluoride from aqueous solutions. Natural and modified clinoptilolite samples were characterized by X-ray fluorescence spectrometry, scanning electron microscope, X-ray diffraction, and Brunauer-Emmett-Teller. For all modified clinoptilolite samples, the time required to reach equilibrium was determined as 5 hr. The effects of adsorbent dose, pH, and initial fluoride concentration for fluoride adsorption were determined using the Box-Behnken Design. Maximum fluoride removal efficiency was 80.23% at the solution pH of 11, iron-modified clinoptilolite amount of 1.08 g/50 ml and at the initial fluoride concentration of 2 mg/L. Fluoride adsorption on iron-modified clinoptilolite showed good compatibility with the Freundlich isotherm and the pseudo-second-order kinetic model. The adsorption capacity of iron-modified clinoptilolite was found to be 1.72 mg/g for the initial fluoride concentration of 50 mg/L. This study has shown that BBD is an effective and dependable method in determining the optimum conditions for fluoride adsorption. PRACTITIONER POINTS: Response surface methodology is effective in determining the optimum conditions for fluoride adsorption using modified clinoptilolite. Fluoride adsorption on iron-modified clinoptilolite is well described Freundlich isotherm and follows pseudo-second-order kinetic model. Fluoride removal percentage not only depends on the adsorbent dose, but also depends on the initial fluoride concentrations. Regeneration process using acid solution is not very effective for desorption of iron-modified zeolite. The natural clinoptilolite is an effective and economical adsorbent for adsorption of fluoride.

摘要

天然沸石用铁、锰或铁锰进行改性,以从水溶液中吸附氟化物。用 X 射线荧光光谱法、扫描电子显微镜、X 射线衍射和 Brunauer-Emmett-Teller 对天然和改性沸石样品进行了表征。对于所有改性沸石样品,达到平衡所需的时间确定为 5 小时。使用 Box-Behnken 设计确定了吸附剂剂量、pH 值和初始氟浓度对氟吸附的影响。在溶液 pH 值为 11、铁改性沸石用量为 1.08 g/50 ml 和初始氟浓度为 2 mg/L 的条件下,氟的去除效率最高可达 80.23%。氟在铁改性沸石上的吸附与 Freundlich 等温线和拟二级动力学模型具有良好的兼容性。在初始氟浓度为 50 mg/L 的条件下,铁改性沸石的吸附容量为 1.72 mg/g。本研究表明,BBD 是确定用改性沸石吸附氟的最佳条件的有效可靠方法。实践要点:响应面法可有效确定用改性沸石吸附氟的最佳条件。铁改性沸石对氟的吸附很好地描述了 Freundlich 等温线,并遵循拟二级动力学模型。氟的去除率不仅取决于吸附剂的剂量,还取决于初始氟浓度。使用酸溶液的再生过程对铁改性沸石的解吸不是很有效。天然沸石是一种有效且经济的吸附剂,可用于吸附氟化物。

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