Biswas Kishalay, Dam Gourab K, Mahanta Supriti, Roy Anirban, Vinod Parmar Saurabh, Avasare Vidya, Ghosh Sujit K
Department of Chemistry, Indian Institute of Science Education and Research (IISER) Pune, Dr. Homi Bhabha Road, Pashan, Pune, 411008, India.
Department of Chemistry, Ashoka University, Sonipat, Haryana, 131029, India.
Chemistry. 2025 Feb 20;31(11):e202403931. doi: 10.1002/chem.202403931. Epub 2025 Jan 8.
The efficient removal of TcO from alkaline nuclear waste is vital for optimizing nuclear waste management and safeguarding the environment. However, current state-of-the-art sorbent materials are constrained by their inability to simultaneously achieve high alkali resistance, rapid adsorption kinetics, large adsorption capacity, and selectivity. In this study, we synthesized a urea-rich cationic porous organic polymer, IPM-403, which demonstrates exceptional chemical stability, ultrafast kinetics (~92 % removal within 30 seconds), high adsorption capacity (664 mg/g), excellent selectivity, along with multiple-cycle recyclability (up to 7 cycles), making it highly promising for the removal of ReO (surrogate of TcO ) from nuclear wastewater. Notably, after exposure to 1 M NaOH solution for 24 hours, IPM-403 maintained a high adsorption capacity of 421.3 mg/g for ReO . Furthermore, IPM-403 acts as an efficient sensor for ReO , exhibiting a turn-on response and a detection limit as low as 78.8 ppb.
从碱性核废料中高效去除高锝酸根离子对于优化核废料管理和保护环境至关重要。然而,目前的先进吸附剂材料受到限制,无法同时实现高耐碱性、快速吸附动力学、高吸附容量和选择性。在本研究中,我们合成了一种富含尿素的阳离子多孔有机聚合物IPM-403,它表现出优异的化学稳定性、超快动力学(30秒内去除率约92%)、高吸附容量(664 mg/g)、出色的选择性以及多循环可回收性(高达7次循环),使其在从核废水中去除高铼酸根离子(高锝酸根离子的替代物)方面极具前景。值得注意的是,在暴露于1 M NaOH溶液24小时后,IPM-403对高铼酸根离子仍保持421.3 mg/g的高吸附容量。此外,IPM-403可作为高铼酸根离子的高效传感器,呈现开启响应,检测限低至78.8 ppb。