Zhou Man, Zhou Yanli, Ni Minmin, Zhang Yuzhe, Xu Song, Ma Hao, Zhou Jian, Zhao Jin, Lin Liwei, Li Zhongyu
Jiangsu Province Key Laboratory of Fine Petrochemical Engineering, Changzhou University, Changzhou 213164, China.
BGRIMM Technology Group, Daxing, Beijing 102600, China.
Nanomaterials (Basel). 2025 Mar 28;15(7):514. doi: 10.3390/nano15070514.
Superior selective adsorption of organic dye is still a big challenge in the process of dye wastewater treatment. Meanwhile, low-price and environmentally friendly biomass-based adsorbents show huge potential in the fields of separation and purification. In this study, we adopted the "hydrolysis-calcination method" to develop a novel in situ anchoring strategy for ultrasmall TiO on carbonized bacterial cellulose (CBC), which was derived from natural bacterial cellulose. Notably, 3D networks of porous CBC played a dual role for both providing hydrolytic sites and controlling the oxygen vacancies (V) of TiO. As for the single-dye adsorption, the TiO/CBC had a strong adsorption ability (101.4 mg/g) for removing methylene blue (MB), which was much higher than that of methyl orange (MO), malachite green (MG), rhodamine B (RhB), and tetracyclines (TC). Moreover, under the optimized carbonization temperature (T) of 300 °C, the TiO/CBC-300 exhibited an outstanding separation efficiency of 97.07% for the MB/MO solution. Detailed analysis confirmed that T was a key regulator for adjusting the V concentration, which directly influenced the surface charge density and, further, the separation efficiency of TiO/CBC. Additionally, the used adsorbent could be easily regenerated from washing by ethanol. After 4 regenerations, the adsorption efficiency declined only by 6.9% after 20 min and 13.6% after 120 min adsorption, respectively. Ultimately, this oxygen vacancy-rich TiO/BC system illuminated good prospects for mixed dye wastewater adsorption and separation.
在染料废水处理过程中,对有机染料具有优异的选择性吸附仍然是一个巨大的挑战。同时,价格低廉且环境友好的生物质基吸附剂在分离和纯化领域显示出巨大潜力。在本研究中,我们采用“水解-煅烧法”开发了一种新颖的原位锚定策略,用于在由天然细菌纤维素衍生而来的碳化细菌纤维素(CBC)上制备超小TiO。值得注意的是,多孔CBC的三维网络对于提供水解位点和控制TiO的氧空位(V)起到了双重作用。对于单一染料吸附,TiO/CBC对亚甲基蓝(MB)具有很强的吸附能力(101.4 mg/g),远高于甲基橙(MO)、孔雀石绿(MG)、罗丹明B(RhB)和四环素(TC)。此外,在优化的300℃碳化温度(T)下,TiO/CBC-300对MB/MO溶液表现出97.07%的出色分离效率。详细分析证实,T是调节V浓度的关键因素,这直接影响表面电荷密度,进而影响TiO/CBC的分离效率。此外,用过的吸附剂通过乙醇洗涤可轻松再生。经过4次再生后,吸附20分钟后的吸附效率仅下降6.9%,吸附120分钟后下降13.6%。最终,这种富含氧空位的TiO/BC体系在混合染料废水吸附和分离方面展现出良好的前景。