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Submerged glow-discharge plasma: an economical approach to convert construction scrap metal into nanomaterials

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conference contribution
posted on 2024-07-13, 09:08 authored by Peter Nai Yuh Yek, Muhammad Rafiq Mirza Julaihi, Mohammad Shahril Osman, Tung Chuan Tiong, Wak Ha Lee, Chern Leing Lee
Submerged glow-discharge plasma (SGDP) is relatively new among the various methods available for nanomaterials synthesis (NMs) techniques. This method allows great control over the production cost of nanomaterials synthesis. A lab-scale batch type SDGP technology has been constructed to produce nanomaterials and investigate the inter-relationship between plasma excitation voltages, electrodes submerged areas and electrolyte concentration. Metal oxide nanospheres has been synthesised from different electrolyte concentrations (1M-0.001M) and characterized by Scanning Electron Microscopy (SEM) and Energy Dispersive Spectroscopy (EDS). As the major results showed that the nanospheres are uniformly spherical with diameter size distribution are between 100 nm - 2μm. EDS analysis shown the nano-Iron Oxide have been formed. Scrap metal initially showed around 6.45% and 93.55% of Carbon and Iron composition respectively. After SGDP process to the scrap metal, Carbon content has increased to 34-35% and Iron content has reduced to around 15-40%. EDS results also shown the higher percentage of Iron amount has remained with lower electrolyte concentration and Current is proportionally related to submersion area of cathode.

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ISSN

2267-1242

Journal title

E3S Web of Conferences - International Conference on Civil & Environmental Engineering (CENVIRON 2017), Penang, Malaysia, 28-29 November 2017.

Conference name

E3S Web of Conferences - International Conference on Civil & Environmental Engineering CENVIRON 2017, Penang, Malaysia, 28-29 November 2017.

Volume

34

Publisher

EDP Sciences

Copyright statement

Copyright © The Authors, published by EDP Sciences, 2018. This is an Open Access article distributed under the terms of the Creative Commons Attribution License 4.0, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. (http://creativecommons.org/licenses/by/4.0/).

Language

eng

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