Department of Chemistry, International Hellenic University, 65404 Kavala, Greece.
Department of Physics, University of Zabol, Zabol 98613-35856, Iran.
Molecules. 2021 Jul 16;26(14):4318. doi: 10.3390/molecules26144318.
The threat of the accumulation of heavy metals in wastewater is increasing, due to their abilities to inflict damage to human health, especially in the past decade. The world's environmental agencies are trying to issue several regulations that allow the management and control of random disposals of heavy metals. Scientific studies have heavily focused on finding suitable materials and techniques for the purification of wastewaters, but most solutions have been rejected due to cost-related issues. Several potential materials for this objective have been found and have been compared to determine the most suitable material for the purification process. Sawdust, among all the materials investigated, shows high potential and very promising results. Sawdust has been shown to have a good structure suitable for water purification processes. Parameters affecting the adsorption mechanism of heavy metals into sawdust have been studied and it has been shown that pH, contact time and several other parameters could play a major role in improving the adsorption process. The adsorption was found to follow the Langmuir or Freundlich isotherm and a pseudo second-order kinetic model, meaning that the type of adsorption was a chemisorption. Sawdust has major advantages to be considered and is one of the most promising materials to solve the wastewater problem.
由于重金属在废水中积累的威胁日益增加,它们能够对人类健康造成损害,尤其是在过去十年中。世界环境机构正试图颁布一些规定,允许对重金属的随意处置进行管理和控制。科学研究已经大力集中在寻找合适的材料和技术来净化废水,但由于成本问题,大多数解决方案都被拒绝了。已经发现了几种用于此目的的潜在材料,并对其进行了比较,以确定最适合净化过程的材料。在所有研究的材料中,木屑显示出很高的潜力和非常有前景的结果。木屑具有适合水净化过程的良好结构。已经研究了影响重金属在木屑中吸附机制的参数,结果表明 pH 值、接触时间和其他几个参数可能在改善吸附过程中起主要作用。吸附被发现遵循朗缪尔或弗伦德利希等温线和伪二级动力学模型,这意味着吸附类型是化学吸附。木屑具有被考虑的主要优势,是解决废水问题最有前途的材料之一。