School of Chemical Engineering, Engineering Campus, Universiti Sains Malaysia, 14300, Nibong Tebal, Pulau Pinang, Malaysia.
Department of Biological Sciences and Biotechnology, Faculty of Science and Technology, Universiti Kebangsaan Malaysia, 43600, UKM, Bangi, Selangor, Malaysia.
Environ Res. 2021 Aug;199:111298. doi: 10.1016/j.envres.2021.111298. Epub 2021 May 8.
Culture scaffolds allow microalgae cultivation with minimum water requirement using the air-liquid interface approach. However, the stability of cellulose-based scaffolds in microalgae cultivation remains questionable. In this study, the stability of regenerated cellulose culture scaffolds was enhanced by adjusting TiO loading and casting gap. The membrane scaffolds were synthesized using cellulose dissolved in NaOH/urea aqueous solution with various loading of TiO nanoparticles. The TiO nanoparticles were embedded into the porous membrane scaffolds as proven by Fourier transform infrared spectra, scanning electron microscopic images, and energy-dispersive X-ray spectra. Although surface hydrophilicity and porosity were enhanced by increasing TiO and casting gap, the scaffold pore size was reduced. Cellulose membrane scaffold with 0.05 wt% of TiO concentration and thickness of 100 μm attained the highest percentage of Navicula incerta growth rate, up to 37.4%. The membrane scaffolds remained stable in terms of weight, porosity and pore size even they were immersed in acidic solution, hydrogen peroxide or autoclaved at 121 °C for 15 min. The optimal cellulose membrane scaffold is with TiO loading of 0.5 wt% and thickness of 100 μm, resulting in supporting the highest N. incerta growth rate and and exhibits good membrane stability.
采用气-液界面法,通过文化支架可在最低需水量的情况下培养微藻。然而,纤维素基支架在微藻培养中的稳定性仍存在疑问。在这项研究中,通过调整 TiO 的负载量和浇铸间隙,提高了再生纤维素培养支架的稳定性。使用溶解在 NaOH/尿素水溶液中的纤维素,通过各种 TiO 纳米粒子负载量合成了膜支架。傅里叶变换红外光谱、扫描电子显微镜图像和能量色散 X 射线能谱证明了 TiO 纳米粒子嵌入到多孔膜支架中。虽然通过增加 TiO 和浇铸间隙提高了表面亲水性和孔隙率,但支架的孔径减小了。纤维素膜支架的 TiO 浓度为 0.05wt%,厚度为 100μm,达到了最高的 Navicula incerta 生长速率,高达 37.4%。即使浸入酸性溶液、过氧化氢或在 121°C 下高压灭菌 15 分钟,膜支架在重量、孔隙率和孔径方面仍保持稳定。最佳的纤维素膜支架的 TiO 负载量为 0.5wt%,厚度为 100μm,可支撑最高的 N. incerta 生长速率,且表现出良好的膜稳定性。