Song Ningning, Cai Yongfeng, Sun Lingmin, Hu Peng, Zhou Qinqin, Wu Junshu, Wang Jinshu
Key Laboratory of Advanced Functional Materials, Education Ministry of China, Faculty of Materials and Manufacture, Beijing University of Technology, Beijing 100124, China.
Materials (Basel). 2022 Feb 17;15(4):1514. doi: 10.3390/ma15041514.
In this work, a strategy of heat treatment-precipitation has been developed to recycle Ti-containing metallurgical solid waste by forming Ti-embedded MgAl layered double hydroxide (TMA-LDH). This facile and simple route is featured by the dedicated utilization of the composition of slag with high overall recovery efficiency. Importantly, as-obtained product exhibits visible light response distinctly different from that of pristine MA-LDH ascribed to the Fe doping inherited from initial slag. Its mesoporous nanostructure also provides more microchannels for mass and carrier transfer. As such, excellent photocatalytic activity towards degradation of tetracycline hydrochloride is achieved, and 88% removal could be obtained in 60 min. Furthermore, 44% increase in efficiency than that of Ti-excluded LDH also indicates the synergistically promoting effect of Ti incorporation. Mechanism investigation suggests that Ti incorporation regulates the electronic structure of pristine LDH with more active sites, and favors the formation of radicals with improved oxidative ability for photocatalysis.
在这项工作中,开发了一种热处理-沉淀策略,通过形成嵌入钛的MgAl层状双氢氧化物(TMA-LDH)来回收含钛冶金固体废弃物。这条简便的路线以对炉渣成分的专门利用为特点,具有较高的总回收效率。重要的是,所得产物表现出与原始MA-LDH明显不同的可见光响应,这归因于从初始炉渣继承的铁掺杂。其介孔纳米结构也为质量和载流子转移提供了更多微通道。因此,实现了对盐酸四环素降解的优异光催化活性,在60分钟内可实现88%的去除率。此外,与不含钛的LDH相比,效率提高了44%,这也表明了钛掺入的协同促进作用。机理研究表明,钛的掺入调节了原始LDH的电子结构,产生了更多活性位点,并有利于形成具有更高氧化能力的自由基用于光催化。