Hojabri Shayan, Rajic Ljiljana, Zhao Yuwei, Alshawabkeh Akram N
Civil and Environmental Engineering, Northeastern University, Boston MA 02115, United States.
Elateq Inc., 240 Thatcher road, Amherst, MA 01003, United States.
J Hazard Mater. 2024 Sep 5;476:135195. doi: 10.1016/j.jhazmat.2024.135195. Epub 2024 Jul 14.
An electrocoagulation (EC) model is developed for hexavalent chromium reduction and precipitation, using iron electrodes. Parallel removal mechanisms such as adsorption of chromium on ferrihydrite and direct reduction at the cathode is assumed negligible due to low concentration of Cr(VI). The reaction model presented for batch system represents species complexation, precipitation/dissolution, acid/base, and oxidation-reduction reactions. Batch reactor simulation is verified using experimental data obtained by Sarahney et al. (2012), where the effect of initial chromium concentration, pH, volumetric current density, and ionic strength is considered (Sarahney et al., 2012). The model couples multicomponent ionic transport in MATLAB with chemical reaction model in PHREEQC, as a widely used computational programming tool and a geochemical reaction simulator with comprehensive geochemistry databases. The suggested current density is 0.05-0.3mA/cm and the surface to volume ratio in batch reactor is considered 0.017 1/cm. Design parameters are presented for operation of a flow-through hexavalent chromium removal using electrocoagulation by iron electrode to treat Cr(VI) in range of 10-50 mg/L. The operational parameters for a flow-through EC reactor for Cr(VI) removal is suggested to follow [Formula: see text] .
开发了一种使用铁电极进行六价铬还原和沉淀的电凝聚(EC)模型。由于六价铬浓度较低,假定诸如铬在水铁矿上的吸附和在阴极的直接还原等并行去除机制可忽略不计。所提出的间歇系统反应模型涵盖了物种络合、沉淀/溶解、酸碱和氧化还原反应。使用Sarahney等人(2012年)获得的实验数据对间歇反应器模拟进行了验证,其中考虑了初始铬浓度、pH值、体积电流密度和离子强度的影响(Sarahney等人,2012年)。该模型将MATLAB中的多组分离子传输与PHREEQC中的化学反应模型相结合,PHREEQC是一个广泛使用的计算编程工具,也是一个拥有综合地球化学数据库的地球化学反应模拟器。建议的电流密度为0.05 - 0.3mA/cm ,间歇反应器中的表面积与体积比假定为0.017 1/cm。给出了使用铁电极电凝聚去除六价铬以处理浓度范围为10 - 50mg/L的六价铬的流通式操作的设计参数。建议用于去除六价铬的流通式EC反应器的操作参数遵循[公式:见原文] 。