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Fly ash-based adsorbent for adsorption of heavy metals and dyes from aqueous solution: a review

机译:粉煤灰基吸附剂,用于吸附来自水溶液的重金属和染料:综述

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Acritical global issue in the 21st century is water shortage, as well as its pollution with noxious metal ions and organic dyes. To extract these pollutants from wastewater, a variety of traditional methods have been employed but they lack reusability/recyclability, are expensive, environmentally unfriendly, unsafe and the remediation process takes a long time. Therefore, to treat these contaminants, nanotechnology (NT) has recently been granted several leeways in terms of making the desirable nanomaterials (NMs) with high surface-to-volume ratios and special surface functionalities. In particular, fly ash (FA) has stood out as one of the greatest exciting new-found affordable and high efficient materials for water decontamination owing to its high porosity, huge surface area, and exceptional features. Hence, this present review study will attempt to compile data from existing literature on the utilization of FA-based adsorbent for the removal of heavy metals (HMs) and dyes from wastewater. Based on the reviewed publications, Langmuir's isotherm models (LIMs) and Freundlich's isotherm models (FIMs) best described the sorption process thus signalling monolayer and multi-layer sorptions. Pseudo-second-order (PSO) model provided the best appropriate means in elucidating the kinetic process and both exothermic and endothermic processes revealed the nature of the thermodynamic process during sorption. Some recommendations in the form of future prospects on how to advance the capacity of the adsorption and effectiveness of FA on the removal of HMs, dyes and other environmental contaminants using innovative technologies such as the nanofiber technology is also been proposed.
机译:21世纪的协理全球问题是水资源短缺,以及用有毒金属离子和有机染料的污染。为了从废水中提取这些污染物,已经采用了各种传统方法,但它们缺乏可重用性/可回收性,昂贵,环境不友好,不安全,修复过程需要很长时间。因此,为了治疗这些污染物,最近在制备所需的纳米材料(NMS)和高度体积比和特殊表面官能团方面获得了几次余地的纳米技术(NT)。特别是,由于其高孔隙度,巨大的表面积和特殊特征,粉煤灰(FA)已成为最令人兴奋的新发现实惠和高效的水去污的最高效。因此,本综述研究将尝试从现有文献中编制关于利用Fa基吸附剂的数据,以从废水中除去重金属(HMS)和染料。基于审查的出版物,Langmuir的等温模型(LIMS)和Freundlich的等温模型(FIMS)最佳地描述了由此发信号传导的单层和多层索兰的吸附过程。伪二阶(PSO)模型提供了阐明动力学过程的最佳方法,并且放热和吸热过程揭示了吸附过程中热力学过程的性质。还提出了以未来前景的形式建议如何提出使用纳米纤维技术如纳米纤维技术等创新技术,提高FA的吸附和有效性的能力。

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