School of Textiles, Zhongyuan University of Technology, No. 41 Zhongyuan Road (M), Zhengzhou, Henan Province 450007, China; Collaborative Innovation Centre of Textile and Garment Industry, Zhengzhou, Henan Province 450007, China.
School of Textiles, Zhongyuan University of Technology, No. 41 Zhongyuan Road (M), Zhengzhou, Henan Province 450007, China.
Int J Biol Macromol. 2023 Jun 1;239:124233. doi: 10.1016/j.ijbiomac.2023.124233. Epub 2023 Mar 29.
Dispersion and recycling of powdered nano-photocatalysts for water purification is still not an easy task. The self-supporting and floating photocatalytic cellulose-based sponges ware conveniently prepared by anchoring BiOX nanosheet arrays on cellulose-based sponge's surface. The introduction of sodium alginate into the cellulose-based sponge significantly enhanced the electrostatic adsorption of bismuth oxygen ions and promoted the formation of bismuth oxyhalide (BiOX) crystal nuclei. Among the photocatalytic cellulose-based sponges, the sponge (BiOBr-SA/CNF) modified with bismuth oxybromide displayed excellent photocatalytic ability for photodegrading 96.1 % rhodamine B within 90 min under 300 W Xe lamp irradiation (λ > 400 nm). The loading of bismuth oxybromide on cellulose-based sponge's surface improves the flotation stability of the cellulose-based sponge. Benefiting from excellent load fastness of bismuth oxybromide nanosheet and flotation stability of BiOBr-SA/CNF sponge, after 5 cycles of recycling, the photodegradation rates of BiOBr-SA/CNF sponge to rhodamine B remained above 90.2 % (90 min), and it also has excellent photocatalytic degradation effect on methyl orange and herbicide isoproteron. This work may provide a convenient and efficient method to construct self-supporting and floating photocatalytic sponges using cellulose based materials as substrates for sewage treatment.
用于水净化的纳米光催化剂的分散和回收仍然不是一件容易的事。通过将 BiOX 纳米片阵列锚定在纤维素海绵表面上,方便地制备了自支撑和漂浮的光催化纤维素基海绵。海藻酸钠的引入显著增强了铋氧离子的静电吸附,并促进了铋氧卤化物(BiOX)晶核的形成。在光催化纤维素基海绵中,用溴氧化铋修饰的海绵(BiOBr-SA/CNF)在 300 W Xe 灯照射(λ>400 nm)下,在 90 min 内对罗丹明 B 的光降解率达到 96.1%。溴氧化铋在纤维素海绵表面上的负载提高了纤维素海绵的浮选稳定性。得益于溴氧化铋纳米片的优异负载牢度和 BiOBr-SA/CNF 海绵的浮选稳定性,经过 5 次循环回收后,BiOBr-SA/CNF 海绵对罗丹明 B 的光降解率仍保持在 90.2%以上(90 min),对甲基橙和除草剂异丙隆也具有优异的光催化降解效果。这项工作可能为使用纤维素基材料作为基底构建自支撑和漂浮的光催化海绵提供了一种方便、高效的方法,用于污水处理。