Sun Xinzhe, Guo Peng, Sun Yuanyuan, Cui Yuqian
College of Environmental Science and Engineering, Qingdao University, Qingdao 266071, China.
School of Chemical Engineering, China University of Petroleum (East China), Qingdao 266580, China.
Materials (Basel). 2021 Apr 26;14(9):2224. doi: 10.3390/ma14092224.
Lanthanun oxide (LaO) is a lanthanum chemical compound incorporates a sensible anionic complexing ability; however, it lacks stability at a low pH scale. Biochar fibers will give the benefit of their massive space and plethoric uses on the surface to support a metal chemical compound. Herein, wet spinning technology was used to load La onto sodium alginate fiber, and to convert La into LaO through carbonization. The LaO-modified biochar (La-BC) fiber was characterized by SEM, XRD and XPS, etc. An adsorption experiment proved that La-BC showed an excellent adsorption capacity for chromates, and its saturation adsorption capacity was about 104.9 mg/g. The information suggested that the adsorption was in step with both the Langmuir and Freundlich models, following pseudo-second-order surface assimilation mechanics, which showed that the Cr (VI) adsorption was characterized by single-phase and polyphase adsorption, mainly chemical adsorption. The thermodynamic parameters proved that the adsorption process was spontaneous and endothermic. The mechanistic investigation revealed that the mechanism of the adsorption of Cr (VI) by La-BC may include electrostatic interaction, ligand exchange, or complexation. Moreover, the co-existing anions and regeneration experiments proved that the La-BC is recyclable and has good prospects in the field of chrome-containing wastewater removal.
氧化镧(LaO)是一种具有显著阴离子络合能力的镧化合物;然而,它在低pH值范围内缺乏稳定性。生物炭纤维将利用其巨大的空间优势以及在表面的多种用途来负载金属化合物。在此,采用湿法纺丝技术将La负载到海藻酸钠纤维上,并通过碳化将La转化为LaO。通过扫描电子显微镜(SEM)、X射线衍射仪(XRD)和X射线光电子能谱仪(XPS)等对LaO改性生物炭(La-BC)纤维进行了表征。吸附实验证明,La-BC对铬酸盐具有优异的吸附能力,其饱和吸附容量约为104.9 mg/g。该信息表明,吸附符合朗缪尔模型和弗伦德利希模型,遵循准二级表面吸附机理,这表明Cr(VI)吸附具有单相和多相吸附的特征,主要为化学吸附。热力学参数证明吸附过程是自发的且吸热的。机理研究表明,La-BC对Cr(VI)的吸附机理可能包括静电相互作用、配体交换或络合作用。此外,共存阴离子和再生实验证明La-BC可回收利用,在含铬废水处理领域具有良好的应用前景。