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源自废旧三元锂离子电池的锰基多氧化物作为挥发性有机化合物氧化的高效催化剂。

Manganese-based multi-oxide derived from spent ternary lithium-ions batteries as high-efficient catalyst for VOCs oxidation.

作者信息

Guo Mingming, Li Kan, Liu Lizhong, Zhang Hongbo, Guo Weimin, Hu Xiaofang, Meng Xianglong, Jia Jinping, Sun Tonghua

机构信息

School of Environmental Science and Engineering, Shanghai Jiao Tong University, 800 Dong Chuan Road, Shanghai, 200240, PR China.

School of Environmental Science and Engineering, Shanghai Jiao Tong University, 800 Dong Chuan Road, Shanghai, 200240, PR China; Shanghai Institute of Pollution Control and Ecology Security, Shanghai, 200092, PR China.

出版信息

J Hazard Mater. 2019 Dec 15;380:120905. doi: 10.1016/j.jhazmat.2019.120905. Epub 2019 Jul 17.

Abstract

Valuable metals such as manganese, cobalt, nickel and copper are recycled from spent ternary lithium-ions batteries (LiBs) and are considered as the active metal precursor to prepare based-manganese multi oxide for VOCs oxidation. The results of characterization analysis indicate that the catalyst from spent LiBs shows larger specific surface area of 26.80 m/g as well as abundant mesoporous structures on the surface, higher molar ratio of Mn/Mn (0.70) and O/O (1.68), better low-temperature reductivity and stronger intensity of weak acid sites in comparison with those of pure manganese oxides. The evaluation experiments show that the catalyst from waste exhibits more excellent catalytic performance of toluene combustion in comparison with pure manganese oxides. Furthermore, the presence of considerable amount of lithium and aluminum ions can severely weaken the catalytic activity while the co-existence of nickel, cobalt and copper ions contribute a lot to facilitate the catalytic behavior. In-situ DRIFT study implies that the introduction of lithium, aluminum, nickel, copper and cobalt into pure manganese oxides can facilitate toluene conversion to various extents, following the consecutive steps via benzyl species, benzoyl oxide species, benzaldehyde species, benzoate species and the primary intermediates are benzoate species.

摘要

锰、钴、镍和铜等有价金属可从废旧三元锂离子电池(LiBs)中回收,并被视为制备用于挥发性有机化合物(VOCs)氧化的锰基多氧化物的活性金属前驱体。表征分析结果表明,废旧锂离子电池制备的催化剂具有较大的比表面积,为26.80 m²/g,表面具有丰富的介孔结构,Mn/Mn摩尔比更高(0.70),O/O摩尔比更高(1.68),与纯锰氧化物相比,具有更好的低温还原性和更强的弱酸位点强度。评价实验表明,与纯锰氧化物相比,废旧催化剂对甲苯燃烧表现出更优异的催化性能。此外,大量锂和铝离子的存在会严重削弱催化活性,而镍、钴和铜离子的共存则有助于促进催化行为。原位漫反射红外傅里叶变换光谱(DRIFT)研究表明,将锂、铝、镍、铜和钴引入纯锰氧化物中可在不同程度上促进甲苯转化,其依次通过苄基物种、苯甲酰氧化物物种、苯甲醛物种、苯甲酸盐物种等步骤,主要中间体为苯甲酸盐物种。

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