首页> 外文期刊>Journal of Hazardous Materials >Capture of iodine in solution and vapor phases by newly synthesized and characterized encapsulated Cu_2O nanoparticles into the TMU-17-NH_2 MOF
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Capture of iodine in solution and vapor phases by newly synthesized and characterized encapsulated Cu_2O nanoparticles into the TMU-17-NH_2 MOF

机译:通过新合成和表征包封的Cu_2O纳米颗粒捕获溶液和蒸汽相中的碘,进入TMU-17-NH_2MOF

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摘要

The efficient capture and storage of radioactive iodine (I-129 or I-131) formed during the extensive use of nuclear energy is of paramount importance. Therefore, it is a great deal to design new adsorbents for effectively disposing of iodine from nuclear waste. In this work, a new Cu2O/TMU-17-NH2 composite has been prepared by a simple encapsulation of Cu2O nanoparticles (NPs) into the metal organic framework (MOF) TMU-17-NH2 for the first time. The as-synthesized Cu2O/TMU-17-NH2 was fully characterized in details and the iodine sorption/release capability of the Cu2O/TMU-17-NH2 composite has been investigated both in solution and in the vapor phase. According to the FE-SEM images, the Cu2O/TMU-17-NH2 was obtained with same morphology to that of the pristine TMU-17-NH2. The I-2 sorption/release experiments were examined by UV-vis spectroscopy. The optimal iodine sorption was obtained by almost complete removal of iodine with a sorption capacity of about 567 mg/g. Detailed experimental evidence demonstrating that the iodine was captured by chemisorption process. Furthermore, photoluminescence (PL) properties of Cu2O/TMU-17-NH2 have also been investigated in which indicate that the Cu2O/TMU-17-NH2 composite exhibits stronger emission than the pristine TMU-17-NH2.
机译:在广泛使用核能期间形成的放射性碘(I-129或I-131)的有效捕获和储存是至关重要的。因此,设计新的吸附剂是有效地处理来自核废料的碘。在这项工作中,通过首次将Cu 2 O纳米颗粒(NPS)简单地封装在金属有机骨架(MOF)TMU-17-NH 2中来制备新的Cu2O / TMU-17-NH2复合材料。在细节中完全表征了如合成的Cu 2 O / TMU-17-NH2,并在溶液和气相中研究了Cu2O / TMU-17-NH2复合物的碘吸附/释放能力。根据FE-SEM图像,获得Cu2O / TMu-17-NH 2以与原始TMU-17-NH2相同的形态。通过UV-Vis光谱检查I-2吸附/释放实验。通过几乎完全除去碘的最佳碘吸附,吸附能力为约567mg / g。详细的实验证据证明碘被化学吸附过程捕获。此外,还研究了Cu 2 O / TMU-17-NH2的光致发光(PL)性质,其指示CU2O / TMU-17-NH2复合材料表现出比原始TMU-17-NH2更强的发射。

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