Xiaoxin Xuan, Guangyu Zhang
This study addresses the challenge of achieving efficient separation of vanadium and chromium from vanadium–chromium slag (VCS) while simultaneously tackling issues related to artificial granite waste residue (AGWR), such as its substantial stockpiling and associated air pollution. AGWR was used as a substitute calcination additive for calcium carbonate to achieve efficient separation through a calcination-leaching process. Orthogonal experiments were conducted to investigate the effects of AGWR addition amount, calcination temperature, and calcination time on the leaching behavior of vanadium and chromium. During calcination, vanadium reacts with CaO (a decomposition product of AGWR) to form acid-soluble calcium vanadate. Concurrently, chromium hydroxide decomposes into chromium oxide, which is poorly soluble in dilute acid. Subsequent leaching of the calcination product with dilute sulfuric acid leaches vanadium (V) into the solution, while chromium (Cr) remains in the residue, thus achieving separation. The experimental results showed that under the conditions of 30% AGWR addition; calcination at 850 ◦C for 1 h; leaching at 90 ◦C for 2 h with a liquid-to-solid ratio of 10:1 and a sulfuric acid concentration of 50 g ·L−1; the leaching rate of vanadium reached 85.68%, whereas that of chromium was only 2.34%. These results demonstrate highly efficient separation of vanadium and chromium, offering valuable insights for resource recovery from both VCS and AGWR.
@article{abd51fd2-ed59-4143-8c27-801d0e911809,
title={2026 Xuan Vanadium Chromium Slag Roasting and Acid Leaching},
author={Xiaoxin Xuan and Guangyu Zhang},
year={2026},
language={en}
}TY - JOUR TI - 2026 Xuan Vanadium Chromium Slag Roasting and Acid Leaching AU - Xiaoxin Xuan AU - Guangyu Zhang PY - 2026 LA - en ER -
This paper addresses the challenge of assessing the feasibility of wind power plant projects at sites with insufficient or no local historic wind data
Important advances in electrochemical engineering technology over the last three decades have fostered the development of a lternative methods to alle
Increasing volumes of waste printed circuit boards from obsolete electronic equipment posed escalating environmental risks and resource losses due to