4.7 Article

The attachment-detachment mechanism of ionic/nanoscale/microscale substances on quartz sand in water

期刊

POWDER TECHNOLOGY
卷 394, 期 -, 页码 1158-1168

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ELSEVIER
DOI: 10.1016/j.powtec.2021.09.051

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Suspended matter; Heavy metal ion; Attachment-detachment; Microstructural analysis; Purification technology

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The attachment-detachment process of heavy metal ions and suspended matter onto a quartz sand porous medium can be described by a nonlinear model. The irregular motions of Cu2+, GO and silica powder were significantly enhanced by increasing the temperature.
The attachment-detachment of heavy metal ions and suspended matter (SM), such as copper ions (Cu2+), graphene oxide (GO) and silica powders, onto a quartz sand porous medium (SiO2 particles) in water was investigated. The experimental results showed that the attachment-detachment process can be described by a nonlinear model. The detachment curves appeared as a group of parallel scanning curves. The attachment/detachment curves ranged from linear to nonlinear for copper ions, GO and silica powders (ranging from ions to particles). Finally, a unified static attachment-detachment model was established. The attachment mechanism mainly involved the interfacial electrostatic attraction between SM and the solid matrix, the formation and directional adjustment of metal bonds, and the complementary molecular structure characteristics of the different materials. The irregular motions of Cu2+, GO and silica powder were significantly enhanced by increasing the temperature. (C) 2021 Elsevier B.V. All rights reserved.

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