Viganò Lorenzo, Di Credico Barbara, Parrino Francesco, Keller Nicolas, Bellotto Maurizio, D'Arienzo Massimiliano, Mostoni Silvia, Latorrata Saverio, Dotti Anna, Nisticò Roberto, Scotti Roberto
Department of Materials Science, INSTM, University of Milano-Bicocca, Via R. Cozzi, 55, 20125, Milano, Italy.
Department of Industrial Engineering, University of Trento, Via Sommarive 9, 38123, Trento, Italy.
ChemSusChem. 2025 Mar 3;18(5):e202401698. doi: 10.1002/cssc.202401698. Epub 2024 Nov 15.
Industrial waste management is an urgent problem to solve possibly by recycling, reuse and recovery of resources. In this framework, the sludge of the TiO manufacturing, called tionite, is of certain interest because it contains metallic oxide-bearing impurities, dangerous to the environment. Hence, we propose a strategy to recover TiO from tionite, towards its effective re-use as a photocatalyst. In detail, tionite was treated under acidic or alkaline conditions to remove impurities and improve the TiO accessibility, and each single purification step was monitored by a thorough multi-technique characterization. The photocatalytic activity of the modified tionite materials was tested for the partial oxidation of ferulic acid to vanillin, a relevant sustainable green reaction, being vanillin an industrially relevant high added value compound and ferulic acid an abundant component of lignin present in industrial waste. All the tionite catalysts have shown significant efficiency in terms of vanillin selectivity respect to the benchmark TiO P25. In particular, the sample treated under acidic conditions showed the best performances, due to specific interaction between the organic substrates and the catalyst. Results demonstrated that an industrial waste such as tionite can be valorized by proposing a tailored regeneration strategy.
工业废物管理是一个亟待解决的问题,可能需要通过资源回收利用和再循环来解决。在此框架下,二氧化钛制造过程中产生的污泥(称为钛铁矿)具有一定的研究价值,因为它含有对环境有害的含金属氧化物杂质。因此,我们提出了一种从钛铁矿中回收二氧化钛的策略,以实现其作为光催化剂的有效再利用。具体而言,对钛铁矿在酸性或碱性条件下进行处理,以去除杂质并提高二氧化钛的可及性,并且通过全面的多技术表征对每个单一的纯化步骤进行监测。对改性钛铁矿材料的光催化活性进行了测试,以考察阿魏酸部分氧化为香草醛的反应,这是一个相关的可持续绿色反应,因为香草醛是一种具有工业相关性的高附加值化合物,而阿魏酸是工业废物中木质素的丰富成分。相对于基准二氧化钛P25,所有钛铁矿催化剂在香草醛选择性方面均表现出显著的效率。特别是,在酸性条件下处理的样品表现出最佳性能,这归因于有机底物与催化剂之间的特定相互作用。结果表明,通过提出一种量身定制的再生策略,可以使钛铁矿等工业废物具有价值。