4.7 Review

Dealkalization processes of bauxite residue: A comprehensive review

Journal

JOURNAL OF HAZARDOUS MATERIALS
Volume 403, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.jhazmat.2020.123671

Keywords

Bauxite residue (Red mud); Alkalinity; Neutralization; Dealkalization; Remediation

Funding

  1. National Key Research and Development Program of China [2018YFC1901901]
  2. Natural Science Foundation of China [51974365, U1704252]
  3. Natural Science Foundation of Hunan Province [2020JJ5747, 2020JJ5749]
  4. Innovation-Driven Project of Central South University [2020CX039]
  5. Young Elite Scientists Sponsorship Program by CAST [2019QNRC001]
  6. Key Laboratory of Hunan Province for Clean and Efficient Utilization of Strategic Calcium-containing Mineral Resources [2018TP002]
  7. Collaborative Innovation Center for Clean and Efficient Utilization of Strategic Metal Mineral Resources

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The review provides a comprehensive overview of the composition characteristics, processing methods, and management strategies of bauxite residue, emphasizing the importance and complexity of dealkalization. It is recommended to select appropriate treatment methods based on the characteristics of bauxite residue and regional resources.
Bauxite residue is a kind of strong alkaline waste produced in the production of alumina. Its long-term storage poses a potential threat to the environment. With the tightening of environment policies in various countries, the strong alkalinity of bauxite residue has become a bottleneck restricting the sustainable development of aluminum industry all over the world. This review covers the composition characteristics of bauxite residue, and describes the Bayer process in detail, where emphasis is put on the formation of alkaline substances in bauxite residue and its release process in long-term storage. This review focuses on several typical processes for the management of bauxite residue alkalinity in recent decades around the world. The phase transformation mechanisms, merits and limitations, as well as application status are discussed. The potential application values of these typical methods are evaluated based on process characteristics. The large amount and varied characteristics of bauxite residue determine that it is unrealistic to solve the dealkalization problem of all bauxite residue with one method. It is recommended that the appropriate dealkalization process of bauxite residue should be selected according to the characteristics of bauxite residue and regional resources, as well as the planning of subsequent application.

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