Department of Epidemiology, School of Public Health, Shahroud University of Medical Sciences, Shahroud, Iran.
Department of Environmental Health Engineering, School of Public Health, Shahroud University of Medical Sciences, Shahroud, Iran.
Environ Sci Pollut Res Int. 2021 Apr;28(14):18201-18215. doi: 10.1007/s11356-020-11743-7. Epub 2021 Jan 6.
A novel adsorbent with excellent adsorptive properties for fluoride was prepared through a green and cheap synthesis route. Populus caspica pruning wastes, a cheap agri-waste material, were reduced to multi-layer green graphene (MLG) and then post-modified to aluminum/iron modified multi-layer green graphene (AMLG and IMLG). Batch experiments revealed the effect of pH (3-11), contact time (0.5-12 h), and initial fluoride concentration (5-40 mg/L). The conversion of raw material to MLG increased the specific surface area about 120 times (from 4 to 475 m/g). Furthermore, a significant improvement in zero points of charge (pHzpc) was attained for IMLG (7.1) and AMLG (8) compared with pristine MLG (4.3). Fluoride showed superior affinity to AMLG and IMLG compared with MLG. Fluoride removal increased gradually by pH from 3 to 8 and then decreased sharply up to pH 11. The study of process dynamics demonstrated the monolayer fluoride adsorption onto AMLG and IMLG controlled by the chemisorptions. The highest predicted adsorption capacities based on the Langmuir model were 31.52, 47.01, and 53.76 mg/g for MLG, IMLG, and AMLG, respectively. Considering economic and technical feasibility presents AMLG and IMLG as a promising candidate against water contamination by elevated fluoride. Graphical abstract.
通过绿色廉价的合成路线,制备了一种对氟具有优异吸附性能的新型吸附剂。利用便宜的农业废弃物胡杨修剪废物,通过还原法制备了多层绿色石墨烯(MLG),然后对其进行后修饰,得到了铝/铁改性多层绿色石墨烯(AMLG 和 IMLG)。批实验研究了 pH 值(3-11)、接触时间(0.5-12 h)和初始氟浓度(5-40 mg/L)对吸附的影响。从原材料到 MLG 的转化使比表面积增加了约 120 倍(从 4 增加到 475 m2/g)。此外,与原始 MLG(4.3)相比,IMLG(7.1)和 AMLG(8)的零电荷点(pHzpc)显著提高。与 MLG 相比,氟化物对 AMLG 和 IMLG 具有更高的亲和力。氟的去除率随 pH 值从 3 增加到 8 而逐渐增加,然后在 pH 值为 11 时急剧下降。动力学研究表明,AMLG 和 IMLG 上的氟单层吸附是由化学吸附控制的。基于 Langmuir 模型预测的最大吸附容量分别为 31.52、47.01 和 53.76 mg/g。考虑到经济和技术可行性,AMLG 和 IMLG 是一种很有前途的去除水中高浓度氟的候选材料。