Ren Jie, Wang Peng, Gu Aotian, Gong Chunhui, Chen Kaiwei, Mao Ping, Jiao Yan, Chen Kai, Yang Yi
Jiangsu Key Laboratory of Chemical Pollution Control and Resources Reuse, School of Environmental and Biological Engineering, Nanjing University of Science and Technology, Nanjing, China.
National & Local Joint Engineering Research Center for Mineral Salt Deep Utilization, Key Laboratory for Palygorskite Science and Applied Technology of Jiangsu Province, School of Chemical Engineering, Huaiyin Institute of Technology, Huaian, China.
PLoS One. 2024 Dec 31;19(12):e0315753. doi: 10.1371/journal.pone.0315753. eCollection 2024.
The leakage of Liquid scintillator exudates has brought potential harm to the environment. Attributed to the large specific surface area and high modifiability, high-performance adsorbents based on metal-organic frameworks (MOFs) can effectively remove organic pollutants. In this work, we use different functional groups to prepare the material of UIO-66(Zr). These materials were used to remove dimethyl sulfoxide (DMSO) from water, which is considered a typical liquid scintillator exudate. The results showed that the UIO-66-NH2 (154.3 mg/g) exhibited better adsorption performance compared to the UIO-66-OH (39.5 mg/g) and UIO-66-COOH (105.8 mg/g) for the removal of DMSO. Upon examining the adsorptive abilities of various samples of different UIO-66-NH2 samples, it was observed that the material's ability to adsorb is in a direct relationship with the -NH2 group concentration present in the substance, as evidenced by a correlation coefficient R2 of 0.99. Simultaneously, in the low concentration of environment, the samples of UIO-66 which load NH2 groups shows high removal effectiveness of over 90%. The adsorption capacity of the prepared materials was little affected by the complex water quality conditions and different initial pH values (between 4~10). Furthermore, the material has good reusability and adsorption capacity over five cycles, and slight zirconium release (< 5%). This optimal material showed significant removal capacity for DMSO. In conclusion, this work presents insight into the construction of advanced adsorbents for the removal of liquid scintillator exudates that have high adsorption capacity and strong potential for DMSO removal.
液体闪烁体渗出液的泄漏对环境造成了潜在危害。基于金属有机框架(MOF)的高性能吸附剂由于具有大比表面积和高可改性,能够有效去除有机污染物。在本工作中,我们使用不同的官能团制备了UIO-66(Zr)材料。这些材料用于从水中去除二甲基亚砜(DMSO),DMSO被认为是一种典型的液体闪烁体渗出液。结果表明,对于DMSO的去除,UIO-66-NH2(154.3 mg/g)比UIO-66-OH(39.5 mg/g)和UIO-66-COOH(105.8 mg/g)表现出更好的吸附性能。在考察不同UIO-66-NH2样品的吸附能力时,发现该材料的吸附能力与物质中存在的-NH2基团浓度呈直接关系,相关系数R2为0.99证明了这一点。同时,在低浓度环境下,负载NH2基团的UIO-66样品显示出超过90%的高去除效率。制备材料的吸附容量受复杂水质条件和不同初始pH值(4~10之间)的影响较小。此外,该材料具有良好的可重复使用性,在五个循环中吸附容量良好,且锆释放量轻微(<5%)。这种优化后的材料对DMSO显示出显著的去除能力。总之,本工作为构建用于去除液体闪烁体渗出液的先进吸附剂提供了见解,该吸附剂对DMSO具有高吸附容量和强大的去除潜力。