DI HU, ALEKSEI DOLGANOV
The extraction of titanium through the traditional Kroll process has been a dominant method since the 1950s, despite its labor and energy-intensive nature. In response to the challenges presented by this conventional approach, the Fray-Farthing-Chen (FFC) Cambridge process was developed in the late 1990s, offering a more sustainable alternative by employing electrochemical reduction in molten salts to extract titanium from solid oxides with reduced energy consumption. This study aims to advance the FFC process to enhance the sustainability of titanium production and post-extraction processing. We focus on two key aspects: the improvement of resource sustainability and the implementation of advanced technologies in post-extraction processing. The findings indicate that the FFC process not only facilitates lower energy and material consumption but also allows for the production of titanium alloys and powders while maintaining the integrity of the metal. The advantages of the FFC method in terms of efficiency and environmental impact present a significant opportunity for reducing the costs associated with titanium extraction and fabrication. Consequently, this research contributes to the growing discourse on sustainable practices in the production of advanced materials, aiming to make titanium more accessible for various industrial applications.
@article{f1790383-3262-4048-be40-e7cfc08a7323,
title={Development of the Fray Farthing Chen Ca},
author={DI HU and ALEKSEI DOLGANOV},
year={2026},
language={en}
}TY - JOUR TI - Development of the Fray Farthing Chen Ca AU - DI HU AU - ALEKSEI DOLGANOV PY - 2026 LA - en ER -
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