DONATE

Publications

Access IBEC scientific production portal (IBEC CRIS), for more detailed information and advanced search features.

Find here the list of all IBEC's publications by year.

by Keyword: Photocatalysts

Arnau, Marc, Ramos, Albert, Aleman, Carlos, Sans, Jordi, Perez-Madrigal, Maria M, (2026). Rutile nanoparticles decorated onto permanently polarized hydroxyapatite for polypropylene solar photodegradation CHEMICAL ENGINEERING JOURNAL 531, 174313

The accumulation of microplastics (& micro;Pls) in ecosystems has become a serious environmental concern. Despite increasing awareness, the development of efficient technologies for their removal and remediation remains a major challenge. Herein, we investigate the photocatalytic degradation of polypropylene (PP) & micro;Pls using nanocomposite catalysts composed of permanently polarized hydroxyapatite microparticles (pp-HAp) and rutile TiO2 nanoparticles (TiO2 NPs). pp-HAp, a macroporous bioceramic, is known for its ability to convert gases (CO2 or/and N2) into small value-added chemical products. While pp-HAp serves both as the substrate and thermocatalytic part of the composite, TiO2 NPs are incorporated as the photocatalytic component. A series of XTiO2/ pp-HAp photocatalyts, where X represents the weight percentage of TiO2 (X = 2.5, 5, 10 and 20), were prepared applying a thermal stimulated polarization treatment. The resulting materials show no formation of undesirable calcium titanate. After thorough chemical and physical characterization, the photocatalytic performance of the XTiO2/pp-HAp in the degradation of PP-& micro;Pls was evaluated. Under 1 sun irradiation, the process is selective toward ethanol, which indicates the cleavage of consecutive C-C bonds along the PP chains, with the highest yield obtained for 2.5TiO2/pp-HAp. When the irradiation intensity decreases (0.5 sun), ethanol and isopropanol are produced, suggesting a reduction in the efficiency of the C-C cleavage. In all cases, the nanocomposite catalysts exhibit significantly higher yields than TiO2 NPs or pp-HAp individually, which indicates cooperative electronic effects between both components. Regarding selectivity, in addition to the solar irradiation, the TiO2: pp-HAp ratio also determines which product is obtained. Within the framework of circular economy, our strategy yields added-value chemical products from PP waste using only sunlight and an environmentally friendly catalyst.

JTD Keywords: Anatase, Heterogeneous catalysis, Microplastics, Microplastics removal, Nanocomposites, Photocatalysts, Polypropylene photodegradation, Water treatment plants