Mohrazi Ava, Ghasemi-Fasaei Reza, Mojiri Amin, Safarzadeh Shirazi Sedigheh
Department of Soil Science, School of Agriculture, Shiraz University, Shiraz 71348-14336, Iran.
Envirowise Research Associate, Christchurch 8053, New Zealand.
Polymers (Basel). 2023 Sep 15;15(18):3778. doi: 10.3390/polym15183778.
With the continuous growth of industrialization, the presence of heavy metals (HMs) in the environment has become a critical issue, necessitating cost-effective and efficient techniques for their removal. The present study aimed to determine the optimal preparation conditions for synthesizing pectin (PC) as a polymer sorbent, combined with Magnesium (Mg) Aluminum (Al) layered double oxides (LDOs), using a fast and facile co-precipitation method. Both the response surface method (RSM) and the Taguchi method were employed to optimize the influence of key independent variables, including the molar ratio of cations Mg:Al, the ratio of pectin to LDO, and the temperature for removing multiple elements from wastewater. The results indicated that RSM is more accurate and examines more interactions, while Taguchi reduces the number of tests and is more economical than RSM. However, both statistical methods showed good potential for predicting the adsorption capacity (Qe) of HMs. The optimal preparation conditions were identified as a molar ratio of 3:1, a ratio of pectin to LDO of 7% /, and a temperature of approximately 600 °C. In conclusion, the application of RSM and Taguchi approaches was found to be feasible and effective in optimizing the preparation conditions of modified LDO, which can be utilized as a potential adsorbent for removing multiple elements from wastewater.
随着工业化的持续发展,环境中重金属(HMs)的存在已成为一个关键问题,因此需要经济高效的去除技术。本研究旨在确定使用快速简便的共沉淀法合成作为聚合物吸附剂的果胶(PC)与镁(Mg)铝(Al)层状双氢氧化物(LDOs)相结合的最佳制备条件。采用响应面法(RSM)和田口方法来优化关键自变量的影响,这些自变量包括阳离子Mg:Al的摩尔比、果胶与LDO的比例以及从废水中去除多种元素的温度。结果表明,RSM更准确且能考察更多相互作用,而田口方法减少了试验次数,比RSM更经济。然而,两种统计方法在预测重金属的吸附容量(Qe)方面都显示出良好的潜力。确定的最佳制备条件为摩尔比3:1、果胶与LDO的比例为7%/,温度约为600°C。总之,发现RSM和田口方法在优化改性LDO的制备条件方面是可行且有效的,改性LDO可作为从废水中去除多种元素的潜在吸附剂。