首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Reformation of the surface of powdered activated carbon (PAC) using covalent organic polymers (COPs) and synthesis of a Prussian blue impregnated adsorbent for the decontamination of radioactive cesium
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Reformation of the surface of powdered activated carbon (PAC) using covalent organic polymers (COPs) and synthesis of a Prussian blue impregnated adsorbent for the decontamination of radioactive cesium

机译:使用共价有机聚合物(COP)的粉末活性炭(PAC)表面的改性,并合成普鲁士蓝浸渍吸附剂,用于放射性铯的去污

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摘要

Prussian blue (PB) is known to selectively adsorb cesium (Cs), with a high adsorption efficiency. However, it is difficult to collect it after adsorption, which increases the risk of secondary environmental pollution. In this study, covalent organic polymers (COPs) were used to reform the surface of powdered activated carbon (PAC) particles in order to stably immobilize PB, with the aim of developing an adsorbent impregnated with PB (COP-PAC-PB). PAC particles reformed with COPs (COP-PAC) were analyzed using TEM (EDS) and FT-IR techniques, and it was found that COPs were successfully synthesized on the surface of COP-PAC particles. COP-PAC-PB particles were synthesized by reacting PAC particles with iron(III) chloride and potassium ferrocyanide solutions in order, to synthesize PB within the pores of COPs (in situ). COP-PAC-PB particles were analyzed using XRD and FT-IR techniques, and peaks showing the general characteristics of PB were observed, which indicated that PB existed on the surface of COP-PACPB particles. PB was synthesized on the surface of the non-reformed groups (PAC and Ox-PAC) using the same method. In addition, UV-vis analysis was performed to compare the characteristics of PB desorbed from the non-reformed and reformed groups immediately after synthesizing and washing them. In the non-reformed groups (PAC-PB and Ox-PAC-PB), a large amount of PB was desorbed while they were washed 6 times. For COP-PAC-PB, however, a small amount of PB was desorbed during the first washing, but no desorbed PB was observed thereafter. The maximum Cs adsorption capacity of COP-PAC-PB particles was 19 mg/g, and its removal efficiency of radioactivity cesium (Cs-137, 60 Bq/kg) was 97.3%. In this study, the surface of PAC particles was effectively reformed using COPs, and an adsorbent to which PB was stably immobilized was developed. (C) 2019 Elsevier B.V. All rights reserved.
机译:已知普鲁士蓝(PB)选择性地吸附具有高吸附效率的铯(CS)。然而,吸附后难以收集,这增加了次要环境污染的风险。在该研究中,使用共价有机聚合物(COP)来改造粉末状活性炭(PAC)颗粒的表面以稳定地固定Pb,目的是浸渍有Pb(Cop-PAC-PB)的吸附剂。使用TEM(EDS)和FT-IR技术分析用COPS(COP-PAC)重整的PAC颗粒,并发现COP-PAC颗粒表面成功地合成了警察。通过使PAC颗粒与铁(III)氯化物和铁偶氰化钾溶液反应,合成COP-PAC-PB颗粒,以在COPS(原位)内合成PB。使用XRD和FT-IR技术分析COP-PAC-PB颗粒,观察显示PB的一般特征的峰,表明PB存在于COP-PAPB颗粒的表面上。使用相同的方法在非重整基团(PAC和OX-PAC)的表面上合成Pb。此外,进行UV-VIS分析以比较合成和洗涤后立即从非重整和重整的基团解吸的Pb的特性。在非重整基团(PAC-PB和Ox-PAC-PB)中,在洗涤6次时,将大量Pb解吸。然而,对于COP-PAC-PB,在第一洗涤过程中解吸少量Pb,但此后未观察到解吸的PB。 COP-PAC-PB颗粒的最大CS吸附能力为19mg / g,其放射性铯(CS-137,60bq / kg)的去除效率为97.3%。在该研究中,PAC颗粒的表面使用警察有效地重整,并且稳定地固定的吸附剂被稳定地固定。 (c)2019 Elsevier B.v.保留所有权利。

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