4.7 Article

Selective separation of chalcopyrite from pyrite with a novel non-hazardous biodegradable depressant

Journal

JOURNAL OF CLEANER PRODUCTION
Volume 232, Issue -, Pages 888-897

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.jclepro.2019.06.008

Keywords

Polyglutamic acid; PGA; Pyrite; Depressant; Flotation

Funding

  1. Natural Science Foundation of China [51634009]
  2. Innovation Driven Plan of Central South University [2015CX005]
  3. National 111 Project [B14034]
  4. Collaborative Innovation Centre for Clean and Efficient Utilization of Strategic Metal Mineral Resources
  5. Key Laboratory of Hunan Province for Clean and Efficient Utilization of Strategic Calcium-containing Mineral Resources [2018TP1002]
  6. Fundamental Research Funds for the Central Universities of Central South University [2018zzts227]

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Pyrite depression in copper ore flotation often requires large doses of inorganic depressants that lead to high toxicity, high costs, and low selectivity. Thus, this study offers a novel pyrite depressant, polyglutamic acid (PGA), in the selective flotation of chalcopyrite with xanthate as a collector. The flotation and adsorption mechanism on chalcopyrite and pyrite were systematically studied using a series of flotation tests, zeta potential measurements, adsorption analysis, infrared spectral (IR) analysis, and Xray photoelectron spectroscopy (XPS) analysis. The addition of PGA depressed the flotation of pyrite more strongly than chalcopyrite in the wide pH range of 8-12. In the presence of PGA, selective separation between the two minerals was achieved at pH 9, and the recovery of chalcopyrite was over 85% and that of pyrite was less than 20%. All of the surface analysis techniques indicated that PGA interacted differently with the two minerals and the surface of pyrite adsorbed a much greater amount of PGA than that of chalcopyrite. Prior addition of PGA significantly reduced the adsorption of the collector on the pyrite surface and thus depressed its flotation. However, the significant adsorption of the collector and its oxidation to dixanthogen on the chalcopyrite surface caused its improved flotation even in the presence of PGA. Therefore, PGA, which is a non-hazardous, biodegradable, and renewable reagent, could be used as an alternative pyrite depressant in Cu-Fe conventional flotation circuits. (C) 2019 Elsevier Ltd. All rights reserved.

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