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Constructing porous ZnFC-PA/PSF composite spheres for highly efficient Cs^(+) removal

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摘要 Radioisotope leaking from nuclear waste has become an intractable problem due to its gamma radiation and strong water solubility.In this work,a novel porous ZnFC-PA/PSF composite sphere was fabricated by immobilization of ferrocyanides modified zinc phytate into polysulfone(PSF)substrate for the treatment of Cs-contaminated water.The maximum adsorption capacity of ZnFC-PA/PSF was 305.38 mg/g,and the removal efficiency of Cs+was reached 94.27%within 2 hr.The ZnFC-PA/PSF presented favorable stability with negligible dissolution loss of Zn^(2+)and Fe^(2+)(<2%).The ZnFC-PA/PSF achieved high-selectivity towards Cs+(K_(d)=2.24×10^(4)mL/g)even in actual geothermal water.The adsorption mechanism was inferred to be the ion-exchange between Cs^(+)and K^(+).What’s more,ZnFC-PA/PSF worked well in the fixed-bed adsorption(E=91.92%),indicating the application potential for the hazardous Cs^(+)removal from wastewater.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2024年第9期126-137,共12页 环境科学学报(英文版)
基金 supported by the National Natural Science Foundation of China(Nos.22203062,22078247,U1707602,U1507109) the Yangtze Scholars and Innovative Research Team in University of Ministry of Education of China(No.IRT17R81)。
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