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Full Length Article | Open Access

Greening Pidgeon process with deoxidized diamond-wire sawing silicon waste

Xuenan FengHuajing Fang( )Shaochuan ZhengPengfei WangChao DuZhiwei Shan( )
Engineering Research Center for Magnesium-Based New Materials, Center for Advancing Materials Performance from the Nanoscale (CAMP-Nano), State Key Laboratory for Mechanical Behavior of Materials, Xi’an Jiaotong University, Xi’an 710049, PR China

Peer review under the responsibility of Chongqing University.

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Abstract

Diamond-wire sawing silicon waste (DWSSW) as a reductant of the Pidgeon process is beneficial for alleviating the high energy consumption of primary magnesium production. However, the oxygen in DWSSW exists in the form of SiO2 coated on the Si surface, which is not conducive to the silicothermic reaction and thus affecting the yield of primary magnesium. In this study, we proposed a modified deoxidation method utilizing ammonium fluoride (NH4F) and hydrochloric acid (HCl) solutions to deoxidize the DWSSW. It was found that NH4F solution effectively reduced the oxygen content in DWSSW and the deoxidation efficiency increased with higher NH4F concentration. The addition of HCl further enhanced the deoxidation efficiency, leading to a minimum oxygen content of 1.31% in the deoxidized DWSSW. Transmission electron microscopy (TEM) images indicated a significant reduction in SiO2 layer thickness, which improves the chemical reactivity of the material. The deoxidized DWSSW was subsequently employed as the reductant in the Pidgeon process to produce primary magnesium. Consequently, the reduction conversion of the Pidgeon process increased by 6.7% compared to raw DWSSW. This work not only provided an effective solution to reduce the oxygen content in DWSSW, but also expanded its application in Pidgeon process, promoting primary magnesium industry towards energy conservation and cost reduction.

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Journal of Magnesium and Alloys

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Cite this article:
Feng X, Fang H, Zheng S, et al. Greening Pidgeon process with deoxidized diamond-wire sawing silicon waste. Journal of Magnesium and Alloys, 2026, 17(C). https://doi.org/10.1016/j.jma.2025.05.001

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Received: 02 January 2025
Revised: 29 April 2025
Accepted: 12 May 2025
Published: 10 June 2025
© 2026 Chongqing University.

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/)