Program in Environmental and Polymer Engineering, Inha University, Incheon, 22212, Republic of Korea.
University of Science and Technology (UST), Daejeon, 34113, Republic of Korea; Department of Environmental Research, Korea Institute of Civil Engineering and Building Technology (KICT), Goyang, 10223, Republic of Korea.
Environ Res. 2022 Sep;212(Pt C):113422. doi: 10.1016/j.envres.2022.113422. Epub 2022 May 11.
The degradation of plastics, especially polypropylene (PP), is difficult since it is the most hydrophobic polymer. Photocatalytic degradation of PP films has been reported to be one of the most efficient degradation techniques. However, it is still insignificant to employ it in field applications. In this study, TiO nanoparticles supported on amorphous carbon with nanoporosity (TiO@NC) are used as a photocatalyst to degrade macro-sized co-axially oriented PP globules under the influence of UV-C irradiation. Surface characterization such as SEM, ATR-FTIR, and XPS of the PP globules was performed. The SEM images distinctly showed the surface degradation phenomenon. Interestingly, the ATR-FTIR spectra demonstrated a significant rise in the band intensity in the -OH radical region and fairly in the CO region as well, with the increase in the photocatalytic time. Surprisingly, in the XPS spectra, the intensity of C-1s spectra kept on falling, and the intensity of O-1s spectra kept on rising with the increase in the photocatalytic time. The higher surface area due to nanoporosity of TiO@NC enhanced the photocatalytic degradation of PP globules than previously reported studies. TiO@NC seems to be a potential catalyst for the degradation of different types of polymers.
塑料,尤其是聚丙烯(PP)的降解较为困难,因为它是疏水性最强的聚合物。据报道,PP 薄膜的光催化降解是最有效的降解技术之一。然而,将其应用于现场应用仍然意义不大。在本研究中,使用负载在具有纳米多孔无定形碳上的 TiO 纳米粒子(TiO@NC)作为光催化剂,在 UV-C 照射下降解宏观同轴取向的 PP 小球。对 PP 小球进行了表面特性分析,如 SEM、ATR-FTIR 和 XPS。SEM 图像清晰地显示了表面降解现象。有趣的是,ATR-FTIR 光谱显示,随着光催化时间的增加,-OH 自由基区域和 CO 区域的带强度显著增加。令人惊讶的是,在 XPS 光谱中,随着光催化时间的增加,C-1s 光谱的强度不断下降,而 O-1s 光谱的强度不断上升。TiO@NC 的高比表面积由于纳米多孔性增强了 PP 小球的光催化降解,优于之前的研究。TiO@NC 似乎是降解不同类型聚合物的潜在催化剂。