Department of Comparative Bioscience, Faculty of Veterinary Medicine, University of Tehran, Tehran 1419963111, Iran.
Food Technology and Agricultural Products Research Center, Standard Research Institute (SRI), Karaj 3174734563, Iran.
Int J Environ Res Public Health. 2022 Oct 4;19(19):12697. doi: 10.3390/ijerph191912697.
The drop immerses calcium chloride aqueous solution was utilized to prepare the zero valent iron-doped polyethersulfone beads (PES/ZVI) for the efficient removal of arsenic from apatite-soil treated waters. The proposed beads can assist in promoting uptake efficiency by hindering ZVI agglomeration due to a high porosity and different active sites. The PES/ZVI beads were characterized by Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), thermogravimetric analysis (TGA), and vibrating sample magnetism (VSM). The main objective of this study was to investigate the function of new PES/ZVI beads with an increased removal efficiency for the remediation of arsenic ions from the apatite-soil treated waters. A maximum adsorption removal of 82.39% was achieved when the experiment was performed with 80 mg of adsorbent for a contact time of 180 min. Based on the results, a removal efficiency >90% was obtained after 300 min of shaking time with an arsenic concentration of 20 mg·L. The experimental process was fitted with the Langmuir model due to the high R (0.99) value compared to the Freundlich model (0.91) with an adsorption capacity of 41.32 mg·g. The adsorption process speed was limited by pseudo-second-order (R = 0.999) and the adsorption mechanism nature was endothermic and physical.
采用滴浸氯化钙水溶液的方法制备了零价铁掺杂聚醚砜珠(PES/ZVI),用于从处理过磷灰石土壤的水中高效去除砷。所提出的珠粒由于高孔隙率和不同的活性位,可以阻碍 ZVI 团聚,从而有助于提高吸收效率。通过傅里叶变换红外光谱(FTIR)、扫描电子显微镜(SEM)、热重分析(TGA)和振动样品磁强计(VSM)对 PES/ZVI 珠粒进行了表征。本研究的主要目的是研究具有更高去除效率的新型 PES/ZVI 珠粒的功能,以修复处理过磷灰石土壤的水中的砷离子。当实验中使用 80mg 吸附剂,接触时间为 180min 时,最大吸附去除率达到 82.39%。结果表明,在砷浓度为 20mg·L 的情况下,经过 300min 的摇动时间,去除效率>90%。与 Freundlich 模型(0.91)相比,由于高 R(0.99)值,实验过程更符合 Langmuir 模型,吸附容量为 41.32mg·g。吸附过程速度受拟二级(R=0.999)限制,吸附机制本质上是吸热和物理的。