School of Energy and Environmental Engineering, Hebei University of Technology, Tianjin 300401, China.
School of Energy and Environmental Engineering, Hebei University of Technology, Tianjin 300401, China.
Bioresour Technol. 2021 Oct;337:125453. doi: 10.1016/j.biortech.2021.125453. Epub 2021 Jun 24.
The utilization of lignin as carbonaceous material for pollution adsorption provides an alternative way for lignocellulose valorization. Here in, lignin-based adsorbents (i.e., LC-A, LC-B, and LC-C) were prepared and used for the removal of o-DCB (a toxic gaseous pollutant). LC-B exhibited the best adsorption capacity (718.2 mg/g) when comparing with LC-A (93.1 mg/g), LC-C (10.2 mg/g), and activated carbon (72.7 mg/g). LC-B also demonstrated excellent recycling stability with the adsorption capacity of 710.8 mg/g after five runs. More importantly, LC-B supported Ru adsorbent catalyst could effectively remove o-DCB with removal rate >80% under a wide range of temperature (50-300°C). The excellent performance of lignin-based adsorbents could be attributed to its abundant pore structure, high specific surface area (1618.55 m/g), enhanced graphitization degree as well as the abundant hydroxyl functional groups. The present work provided a cost-effective strategy for pollution control by lignin-based material.
木质素作为碳质材料用于污染吸附,为木质纤维素增值提供了一种替代方法。在这里,制备了基于木质素的吸附剂(即 LC-A、LC-B 和 LC-C),并将其用于去除邻二氯苯(一种有毒的气态污染物)。与 LC-A(93.1 mg/g)、LC-C(10.2 mg/g)和活性炭(72.7 mg/g)相比,LC-B 的吸附容量(718.2 mg/g)最高。LC-B 还表现出优异的循环稳定性,五次运行后的吸附容量为 710.8 mg/g。更重要的是,LC-B 负载 Ru 吸附剂催化剂在很宽的温度范围内(50-300°C)可有效去除邻二氯苯,去除率>80%。木质素基吸附剂的优异性能可归因于其丰富的孔结构、高比表面积(1618.55 m/g)、增强的石墨化程度以及丰富的羟基官能团。本工作为木质素基材料的污染控制提供了一种具有成本效益的策略。