Department of Chemistry, Xi'an Jiaotong-Liverpool University, 111 Ren'ai Road Suzhou Dushu Lake Science and Education Innovation District Suzhou Industrial Park, 215123, Suzhou, China.
School of Chemistry and Chemical Engineering, Nantong University, 9, Seyuan Road, Jiangsu Province, Nantong, 226019, China.
Environ Sci Pollut Res Int. 2021 Aug;28(29):38829-38838. doi: 10.1007/s11356-021-13497-2. Epub 2021 Mar 20.
The spent ternary lithium-ion batteries were utilized as the precursors to prepare Sm-Mn and Sm-Co perovskite oxides (SmMnO-spent ternary lithium-ion battery [STLIB] and SmCoO-STLIB) for the first time. Their catalytic activities were evaluated by catalytic oxidation of propylene glycol methyl ether. Compared with that of the catalysts synthesized by analytical reagents, the catalytic activities of SmMnO-STLIB and SmCoO-STLIB had been significantly enhanced. The analysis of X-ray photoelectron spectroscopy (XPS) showed that the molar ratios of Mn/Mn and O/O of SmMnO-STLIB were higher than that of pure SmMnO and the Co/Co ratios of SmCoO-STLIB was much larger than that of pure SmCoO. The hydrogen temperature-programmed reduction (H-TPR) and N adsorption-desorption tests determined that the reducibilities and specific surface areas of SmMnO-STLIB and SmCoO-STLIB were also superior to pure catalysts. Ultimately, the by-products of the catalytic oxidation of propylene glycol methyl ether over SmMnO-STLIB were also detected by gas chromatography-mass spectrometry (GC-MS). This work will provide a demonstration for the resource utilization of spent lithium ions batteries and the analysis of the increased activity obtained by using spent lithium ions batteries as the precursors to prepare catalysts.
首次利用报废三元锂离子电池作为前驱体制备 Sm-Mn 和 Sm-Co 钙钛矿氧化物(SmMnO-报废三元锂离子电池 [STLIB] 和 SmCoO-STLIB)。通过催化氧化丙二醇甲醚评估了它们的催化活性。与用分析试剂合成的催化剂相比,SmMnO-STLIB 和 SmCoO-STLIB 的催化活性得到了显著提高。X 射线光电子能谱(XPS)分析表明,SmMnO-STLIB 的 Mn/Mn 和 O/O 摩尔比高于纯 SmMnO,SmCoO-STLIB 的 Co/Co 比远大于纯 SmCoO。氢气程序升温还原(H-TPR)和 N 吸附-脱附测试表明,SmMnO-STLIB 和 SmCoO-STLIB 的还原能力和比表面积也优于纯催化剂。最终,通过气相色谱-质谱联用仪(GC-MS)也检测了 SmMnO-STLIB 催化氧化丙二醇甲醚的副产物。这项工作将为报废锂离子电池的资源利用以及使用报废锂离子电池作为前驱体制备催化剂获得更高活性的分析提供示范。