School of Chemistry and Chemical Engineering, Jiangsu University, 212013, Zhenjiang, PR China; Institute of Green Chemistry and Chemical Technology, Jiangsu University, 212013, Zhenjiang, PR China.
School of Material Science and Engineering, Jiangsu University, 212013, Zhenjiang, PR China.
Environ Res. 2020 Mar;182:108998. doi: 10.1016/j.envres.2019.108998. Epub 2019 Dec 5.
This work focused on the utilization of biological extract for the preparation of lignin-based carbon composites materials and used in the field of photocatalysis. A straightforward one-step carbonization way has been developed to prepare vanadium-doped lignin-based carbon/BiO composites photocatalyst by using sodium lignosulfonate as the carbon source and catalyst. The application of lignin as the carbon source to form photocatalyst support tends to control the uniform distribution. At the same time, sodium lignosulfonate as the catalyst could break down the BiVO during carbonization process. A series of characterizations demonstrated the BiVO was transformed into BiO and vanadium-doped lignin-based carbon. The possible synthesis process was proposed. Moreover, the novel V-doped carbon/BiO composites photocatalyst displayed higher photocatalytic activity than bare BiVO. A possible photocatalytic mechanism was also discussed. This work provided new insight into the lignin-based carbon materials.
这项工作专注于利用生物提取物来制备基于木质素的碳复合材料,并将其应用于光催化领域。我们开发了一种简单的一步碳化方法,以木质素磺酸钠作为碳源和催化剂,制备了钒掺杂木质素基碳/ BiO 复合材料光催化剂。将木质素作为碳源用于形成光催化剂载体,有助于控制其均匀分布。同时,在碳化过程中,木质素磺酸钠作为催化剂可以分解 BiVO。一系列的表征结果表明,BiVO 被转化为 BiO 和钒掺杂木质素基碳。提出了可能的合成过程。此外,新型 V 掺杂碳/ BiO 复合材料光催化剂表现出比纯 BiVO 更高的光催化活性。还讨论了可能的光催化机制。这项工作为木质素基碳材料提供了新的见解。