Preparation of Ammonium Phosphotungstate Composite Loaded with Silica-calcium Alginate Hybrid Material and Its Adsorption Performance for Cs+

The separation and extraction of radioactive cesium is of great significance for the safe disposal of high-level liquid waste (HLLW). Although ammonium phosphotungstate (AWP) has shown notable selectivity for Cs+ adsorption in HLLW, the micro-crystalline structure and fine powder morphology of AWP l...

Full description

Saved in:
Bibliographic Details
Main Author: DIAO Xinya1, 2, FAN Ye1, 2, HAO Lecun1, 2, ZHAO Xin1, 2, JIN Qiang1, 2, , CHEN Zongyuan1, 2, GUO Zhijun1, 2
Format: Article
Language:English
Published: Editorial Board of Atomic Energy Science and Technology 2025-02-01
Series:Yuanzineng kexue jishu
Subjects:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1849245816653348864
author DIAO Xinya1, 2, FAN Ye1, 2, HAO Lecun1, 2, ZHAO Xin1, 2, JIN Qiang1, 2, , CHEN Zongyuan1, 2, GUO Zhijun1, 2,
author_facet DIAO Xinya1, 2, FAN Ye1, 2, HAO Lecun1, 2, ZHAO Xin1, 2, JIN Qiang1, 2, , CHEN Zongyuan1, 2, GUO Zhijun1, 2,
author_sort DIAO Xinya1, 2, FAN Ye1, 2, HAO Lecun1, 2, ZHAO Xin1, 2, JIN Qiang1, 2, , CHEN Zongyuan1, 2, GUO Zhijun1, 2,
collection DOAJ
description The separation and extraction of radioactive cesium is of great significance for the safe disposal of high-level liquid waste (HLLW). Although ammonium phosphotungstate (AWP) has shown notable selectivity for Cs+ adsorption in HLLW, the micro-crystalline structure and fine powder morphology of AWP limit its industrial application with column separation. Therefore, it is important to prepare AWP-based adsorbents into a usable form to improve their utilization. In this paper, a novel millimeter-sized AWP-based adsorbent, AWP-CaALG-SiO2 composite, was prepared by encapsulating the fine crystals of AWP exchanger into a calcium alginate-silica matrix. The prepared composite was characterized using scanning electron microscopy (SEM), Fourier transform infrared (FT-IR) spectra, X-ray fluorescence (XRF), X-ray diffraction (XRD), N2 adsorption/desorption isotherms and the universal testing machine, and its adsorption performance for Cs+ in strong acidic solution was determined using both batch-type and dynamic column experiments in terms of the kinetics, equilibrium capacity and selectivity. The characterization results indicate that the addition of silica in the fabrication significantly improves the mechanical strength of composite in comparison to those without silica. The adsorption of Cs+ on AWP-CaALG-SiO2 composite could reach equilibrium within 12 h, and the adsorption kinetics follows a non-linear pseudo-second order rate equation. The distribution coefficient of Cs+ is high even in extreme acidic condition (about 150 mL/g in 8.0 mol/L HNO3 solution). The adsorption capacity of Cs+ increases significantly with the increase of initial Cs+ concentration, and the adsorption of Cs+ on AWP-CaALG-SiO2 composite can be well fitted with the Langmuir model, indicating a homogeneous single-layer adsorption process. The maximum adsorption capacity of AWP-CaALG-SiO2 composite for Cs+ is determined to be 22.9 mg/g with batch-type experiment in 3.0 mol/L HNO3 solution. In addition, the composite shows excellent selectivity toward Cs+ uptake over 8 co-existing metal ions in simulated HLLW, as evidenced by a Kd value of 772 mL/g and SF values all above 42. The dynamic column experiment shows that the composite can serve as the stationary phase in columns to effectively remove Cs+ with the maximum dynamic adsorption capacity of 17.3 mg/g. This work not only develops a granulated AWP-based composite for the selective capture of Cs+ from strongly acidic HLLW, but also provids insights into the design of high-mechanical strength ion-exchange materials for radiocesium decontamination with their practical applications.
format Article
id doaj-art-a086d76362be41fb8e5be6b92301c541
institution Kabale University
issn 1000-6931
language English
publishDate 2025-02-01
publisher Editorial Board of Atomic Energy Science and Technology
record_format Article
series Yuanzineng kexue jishu
spelling doaj-art-a086d76362be41fb8e5be6b92301c5412025-08-20T03:58:41ZengEditorial Board of Atomic Energy Science and TechnologyYuanzineng kexue jishu1000-69312025-02-0159231832610.7538/yzk.2024.youxian.0486Preparation of Ammonium Phosphotungstate Composite Loaded with Silica-calcium Alginate Hybrid Material and Its Adsorption Performance for Cs+DIAO Xinya1, 2, FAN Ye1, 2, HAO Lecun1, 2, ZHAO Xin1, 2, JIN Qiang1, 2, , CHEN Zongyuan1, 2, GUO Zhijun1, 2, 01. MOE Frontiers Science Center for Rare Isotopes, Lanzhou University, Lanzhou 730000, China 2. Radiochemistry Laboratory, School of Nuclear Science and Technology, Lanzhou University, Lanzhou 730000, ChinaThe separation and extraction of radioactive cesium is of great significance for the safe disposal of high-level liquid waste (HLLW). Although ammonium phosphotungstate (AWP) has shown notable selectivity for Cs+ adsorption in HLLW, the micro-crystalline structure and fine powder morphology of AWP limit its industrial application with column separation. Therefore, it is important to prepare AWP-based adsorbents into a usable form to improve their utilization. In this paper, a novel millimeter-sized AWP-based adsorbent, AWP-CaALG-SiO2 composite, was prepared by encapsulating the fine crystals of AWP exchanger into a calcium alginate-silica matrix. The prepared composite was characterized using scanning electron microscopy (SEM), Fourier transform infrared (FT-IR) spectra, X-ray fluorescence (XRF), X-ray diffraction (XRD), N2 adsorption/desorption isotherms and the universal testing machine, and its adsorption performance for Cs+ in strong acidic solution was determined using both batch-type and dynamic column experiments in terms of the kinetics, equilibrium capacity and selectivity. The characterization results indicate that the addition of silica in the fabrication significantly improves the mechanical strength of composite in comparison to those without silica. The adsorption of Cs+ on AWP-CaALG-SiO2 composite could reach equilibrium within 12 h, and the adsorption kinetics follows a non-linear pseudo-second order rate equation. The distribution coefficient of Cs+ is high even in extreme acidic condition (about 150 mL/g in 8.0 mol/L HNO3 solution). The adsorption capacity of Cs+ increases significantly with the increase of initial Cs+ concentration, and the adsorption of Cs+ on AWP-CaALG-SiO2 composite can be well fitted with the Langmuir model, indicating a homogeneous single-layer adsorption process. The maximum adsorption capacity of AWP-CaALG-SiO2 composite for Cs+ is determined to be 22.9 mg/g with batch-type experiment in 3.0 mol/L HNO3 solution. In addition, the composite shows excellent selectivity toward Cs+ uptake over 8 co-existing metal ions in simulated HLLW, as evidenced by a Kd value of 772 mL/g and SF values all above 42. The dynamic column experiment shows that the composite can serve as the stationary phase in columns to effectively remove Cs+ with the maximum dynamic adsorption capacity of 17.3 mg/g. This work not only develops a granulated AWP-based composite for the selective capture of Cs+ from strongly acidic HLLW, but also provids insights into the design of high-mechanical strength ion-exchange materials for radiocesium decontamination with their practical applications.cs+ammonium phosphotungstatesilica-calcium alginate hybrid materialhigh level liquid wasteadsorption
spellingShingle DIAO Xinya1, 2, FAN Ye1, 2, HAO Lecun1, 2, ZHAO Xin1, 2, JIN Qiang1, 2, , CHEN Zongyuan1, 2, GUO Zhijun1, 2,
Preparation of Ammonium Phosphotungstate Composite Loaded with Silica-calcium Alginate Hybrid Material and Its Adsorption Performance for Cs+
Yuanzineng kexue jishu
cs+
ammonium phosphotungstate
silica-calcium alginate hybrid material
high level liquid waste
adsorption
title Preparation of Ammonium Phosphotungstate Composite Loaded with Silica-calcium Alginate Hybrid Material and Its Adsorption Performance for Cs+
title_full Preparation of Ammonium Phosphotungstate Composite Loaded with Silica-calcium Alginate Hybrid Material and Its Adsorption Performance for Cs+
title_fullStr Preparation of Ammonium Phosphotungstate Composite Loaded with Silica-calcium Alginate Hybrid Material and Its Adsorption Performance for Cs+
title_full_unstemmed Preparation of Ammonium Phosphotungstate Composite Loaded with Silica-calcium Alginate Hybrid Material and Its Adsorption Performance for Cs+
title_short Preparation of Ammonium Phosphotungstate Composite Loaded with Silica-calcium Alginate Hybrid Material and Its Adsorption Performance for Cs+
title_sort preparation of ammonium phosphotungstate composite loaded with silica calcium alginate hybrid material and its adsorption performance for cs
topic cs+
ammonium phosphotungstate
silica-calcium alginate hybrid material
high level liquid waste
adsorption
work_keys_str_mv AT diaoxinya12fanye12haolecun12zhaoxin12jinqiang12chenzongyuan12guozhijun12 preparationofammoniumphosphotungstatecompositeloadedwithsilicacalciumalginatehybridmaterialanditsadsorptionperformanceforcs