Naseri Tannaz, Beiki Vahid, Mousavi Seyyed Mohammad, Farnaud Sebastien
Biotechnology Group, Chemical Engineering Department, Tarbiat Modares University Tehran Iran
Modares Environmental Research Institute, Tarbiat Modares University Tehran Iran.
RSC Adv. 2023 Aug 7;13(34):23570-23589. doi: 10.1039/d3ra03498d. eCollection 2023 Aug 4.
A serious environmental problem is associated with the accumulation of solid waste on the Earth. Researchers are encouraged to find an efficient and sustainable method to recover highly profitable heavy metals and precious and base metals. Bioleaching is a green method of recovering valuable metals from solid waste. Optimizing the variables and conditions of the bioleaching process is crucial to achieving maximum metal recovery most cost-effectively. The conventional optimization method (one factor at a time) is well-studied. However, it has some drawbacks, such as the necessity of more experiments, the need to spend more time, and the inability to illuminate the synergistic effect of the variables. Optimization studies are increasingly utilizing response surface methodology (RSM) because it provides details about the interaction effects of variables with fewer experiments. This review discusses the application of RSM for bioleaching experiments from other solid wastes. It discusses the Central Composite and Box-Behnken designs as the most commonly used designs for optimizing bioleaching methods. The most influential factors for increasing the heavy metal recovery rate in applying RSM using the bioleaching process are recognized, and some suggestions are made for future research.
一个严峻的环境问题与地球上固体废物的积累相关。鼓励研究人员找到一种高效且可持续的方法来回收高利润的重金属以及贵金属和贱金属。生物浸出是一种从固体废物中回收有价值金属的绿色方法。优化生物浸出过程的变量和条件对于以最具成本效益的方式实现最大程度的金属回收至关重要。传统的优化方法(一次一个因素)已得到充分研究。然而,它存在一些缺点,例如需要更多实验、花费更多时间,并且无法阐明变量的协同效应。优化研究越来越多地采用响应面法(RSM),因为它能用更少的实验提供有关变量相互作用效应的详细信息。本综述讨论了RSM在其他固体废物生物浸出实验中的应用。它讨论了中心复合设计和Box-Behnken设计作为优化生物浸出方法最常用的设计。识别了在使用生物浸出过程应用RSM时提高重金属回收率的最具影响力的因素,并对未来研究提出了一些建议。