PDF

Research Progress in the Detoxification and Resource Utilization of Chromium Slag: Recovery Technologies, Large-Scale Utilization, and Emerging Challenges—A Review

Bin Wang, Jianjun Gao

2026Englishchromium slagdetoxificationresource utilizationwaste managementhydrometallurgyconstruction materials

Abstract

Language:

Chromium slag, a chromium-bearing solid waste characterized by substantial environmental hazards yet with appreciable resource potential, has become a focal topic in solid-waste pollution control and the circular economy. Centered on the overarching logic of 'evidence chain–system boundary–scalable and verifiable acceptance,' this review systematically synthesizes recovery technologies, industrial-scale utilization pathways, and the key challenges associated with the detoxification and resource utilization of chromium slag. From the perspective of recovery technologies, we examine pyrometallurgical and hydrometallurgical routes, solidification/stabilization (S/S), and bioelectrochemical coupling approaches, elucidating their fundamental principles, applicability boundaries, and critical nodes where environmental burdens may be transferred across media. We emphasize that process design should concurrently consider detoxification efficiency, resource recovery performance, and whole-process pollution control. Regarding utilization pathways, this review highlights three major routes with strong scale-up relevance—metallurgical process co-treatment (CAP–sintering–blast furnace), bulk utilization in construction materials, and high-value utilization—and analyzes their industrial potential and engineering constraints. Particular attention is given to the lack of long-term leaching and durability evidence, which represents a central bottleneck limit.

Download

Cite This Work

@article{46b8983b-bbfc-4bd2-a487-649ee2cb6f76,
  title={Research Progress in the Detoxification and Resource Utilization of Chromium Slag: Recovery Technologies, Large-Scale Utilization, and Emerging Challenges—A Review},
  author={Bin Wang and Jianjun Gao},
  year={2026},
  language={English}
}
TY  - JOUR
TI  - Research Progress in the Detoxification and Resource Utilization of Chromium Slag: Recovery Technologies, Large-Scale Utilization, and Emerging Challenges—A Review
AU  - Bin Wang
AU  - Jianjun Gao
PY  - 2026
LA  - English
ER  -

Similar Items

Recycling of Printed Circuit Boards to Recover Critical Materials

Md Kaviul Islam, Anirudha Karati

The printed circuit board (PCB), a central component of most electronic devices, represents a significant fraction of the electronic product waste str

2026EnglishPDF

Waste Zinc–Carbon Battery Recycling: Focus on Total Material Recovery

Anatoliy Ranskiy, Olga Gordienko

Currently, less attention is paid to zinc–carbon batteries, although they are still widely used and are among the major types of batteries collected a

2024EnglishPDF

Summary of Pretreatment of Waste Lithium-Ion Batteries and Recycling of Valuable Metal Materials: A Review

Linye Li, Yuzhang Li

The recycling of used lithium-ion batteries has become a growing concern. As a large number of rare metal elements are present in waste lithium-ion ba

2024EnglishPDF

A Review of Lithium-Ion Battery Recycling: Technologies, Sustainability, and Open Issues

Alessandra Zanoletti, Eleonora Carena

Lithium-ion batteries (LIBs) are a widely used energy storage technology as they possess high energy density and are characterized by the reversible i

2024EnglishPDF

New Process for Efficient Separation and Comprehensive Recovery of Valuable Metals from Jarosite Residues

Qi Zhou, Jian Pan

Jarosite residue (JR), a hazardous solid waste generated in non-ferrous metallurgy, poses significant environmental challenges due to its large volume

2025EnglishPDF

Volume Stabilization of Steel Slag for Low-Carbon Construction Materials: Mechanisms, Treatment Technologies, and Engineering Application Pathways

Jiarui Gu, Zinuo Tian

Steel slag (SS), a major industrial solid waste generated during steelmaking, has considerable cementitious potential and high hardness for use in low

2025EnglishPDF