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从水溶液中去除有害离子:当前的方法,重点是绿色离子浮选。

Removal of hazardous ions from aqueous solutions: Current methods, with a focus on green ion flotation.

机构信息

School of Science, UNSW Canberra, Canberra, ACT, 2610, Australia.

School of Science, UNSW Canberra, Canberra, ACT, 2610, Australia.

出版信息

J Environ Manage. 2022 Oct 1;319:115666. doi: 10.1016/j.jenvman.2022.115666. Epub 2022 Jul 15.

DOI:10.1016/j.jenvman.2022.115666
PMID:35849932
Abstract

Hazardous ions, like those of heavy metals, cause significant health and environmental problems when they are discharged into water resources naturally or through various industrial processes. Removing these ions from water is of significant importance in the provision of high-quality water for drinking and agricultural usage. This work discusses current techniques that are frequently used for the removal of heavy-metal ions from aqueous solutions by absorption, particularly the use of biodegradable surfactants in ion flotation. Certain new surfactants promise high efficiency in their use in the ion-flotation process and in their application in industrial-water treatment to remove heavy metals. As an example, this work demonstrates the high efficiency of surfactants based on an amino-acid (L-cysteine) in removing a range of heavy-metal ions in a simple, single-stage ion-flotation process. High foaming ability, the ability to operate in various temperatures and pHs, decomposing into natural products and high binding affinity for heavy-metal ions make the cysteine-based surfactants a highly suitable compound to replace current commercial surfactants in ion- and froth-flotation processes. Removal of particular ions can also be achieved in ion flotation; a suitable choice of parameters, such as pH and surfactant concentration, favours the surfactant binding to those ions. Further intensive work is required to develop an optimal process to recover valuable elements from waste solutions.

摘要

有害离子,如重金属离子,在自然排放或通过各种工业过程排放到水资源中时,会对健康和环境造成重大问题。从水中去除这些离子对于提供高质量的饮用水和农业用水非常重要。本工作讨论了目前通过吸收从水溶液中去除重金属离子的常用技术,特别是在离子浮选过程中使用可生物降解的表面活性剂。某些新型表面活性剂在离子浮选过程中的应用以及在工业水处理中去除重金属方面具有高效性。例如,本工作证明了基于氨基酸(L-半胱氨酸)的表面活性剂在简单的单级离子浮选过程中去除一系列重金属离子的高效率。高发泡能力、在各种温度和 pH 值下运行的能力、分解为天然产物和对重金属离子的高结合亲和力,使基于半胱氨酸的表面活性剂成为一种非常适合替代离子和泡沫浮选过程中现有商业表面活性剂的化合物。在离子浮选过程中也可以去除特定的离子;选择合适的参数,如 pH 值和表面活性剂浓度,有利于表面活性剂与这些离子结合。需要进一步开展密集工作,以开发从废水中回收有价值元素的最佳工艺。

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