Present Situation and Research Progress of Comprehensive Utilization of Antimony Tailings and Smelting Slag

Author:

Yu Zeen1234,Wang Lei1234,Zheng Qi1234,Che Xiaokui1234,Cui Xinglan1234,Wei Shenyu1234,Li Hongxia1234,Shi Xinyue1234

Affiliation:

1. GRINM Resources and Environment Tech. Co., Ltd., Beijing 100088, China

2. General Research Institute for Nonferrous Metals, Beijing 100088, China

3. Beijing Engineering Research Center of Strategic Nonferrous Metals Green Manufacturing Technology, Beijing 100088, China

4. National Engineering Research Center for Environment-Friendly Metallurgy in Producing Premium Non-Ferrous Metals, GRINM Group Corporation Limited, Beijing 100088, China

Abstract

The production process of antimony produces a large amount of solid waste, such as waste rock in mining, tailings in the beneficiation, metallurgical slag in the smelting, and so on. At present, most of these solid wastes are currently in storage, and the storage of a large amount of solid wastes is not only harmful to the local ecological environment but also a waste of resources. In view of this situation, this paper will take antimony tailings and metallurgical slag as examples and summarize them according to their different treatment methods. The comprehensive utilization of antimony tailings is mainly recovering metals by beneficiation and metallurgy and using antimony tailings as building materials and underground filling materials, while the comprehensive utilization method of antimony metallurgical slag is mainly the recovery of valuable metals by pyrometallurgy or hydrometallurgy or the stabilization technology. This paper summarizes the advantages and disadvantages of different treatment methods and puts forward the prospect of future research directions for the treatment of different metallurgical slags and tailings.

Funder

National Key Research and Development Project

National Natural Science Foundation of China

Guangxi Scientic Research and Technology Development Plan

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction

Reference49 articles.

1. Anderson, C.G. (2019). Antimony Production and Commodities, Society for Mining, Metallurgy and Exploration.

2. Flotation of Antimony Ores with High Arsenic Content;Ozer;Physicochem. Probl. Miner. Process,2022

3. Schulz, K.J. (2017). Critical Mineral Resources of the United States: Economic and Environmental Geology and Prospects for Future Supply.

4. Summaries, M.C. (2022). Mineral Commodity Summaries 2022.

5. Deng, R.-J., Jin, C.-S., Ren, B.-Z., Hou, B.-L., and Hursthouse, A. (2017). The Potential for the Treatment of Antimony-Containing Wastewater by Iron-Based Adsorbents. Water, 9.

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