4.7 Article

Exploring potential opportunities for the efficient development of the cobalt industry in China by quantitatively tracking cobalt flows during the entire life cycle from 2000 to 2021

Journal

JOURNAL OF ENVIRONMENTAL MANAGEMENT
Volume 318, Issue -, Pages -

Publisher

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jenvman.2022.115599

Keywords

Cobalt; Material flow analysis; Entire life cycle; Actual cobalt consumption; Cobalt loss; Utilization efficiency

Funding

  1. Start-up Fund Project for Scientific Research of Introducing High-level Talents in Inner Mongolia Normal University: Comprehensive Study of Cobalt Material Flow in China [2021YJRC013]
  2. Investigation and Evaluation of the Whole Industrial Chain of Core Minerals in Emerging Industries [DD20190676]
  3. National Natural Science Foundation of China [41971265]

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In this study, material flow analysis was used to track cobalt material flows in China. The research findings reveal China's challenges in cobalt trade and carbon emissions, emphasizing the need for adjusting trade structures and improving resource efficiency.
Owing to its key role in high-tech industry and clean energy technology, cobalt has been regarded as a critical material in many countries. In this paper, material flow analysis was used to quantitatively track cobalt material flows in China throughout the entire life cycle from 2000 to 2021. Based on data pertaining to cobalt commodity trade, cobalt loss during raw material processing, and recovered cobalt, we analysed the actual cobalt consumption in China. During the study period from 2000 to 2021, the main findings were as follows: (1) China's cobalt raw material imports accounted for 84.7% of the total raw materials acquired, while the export of cobaltcontaining end products amounted to 32.6% of the total production. (2) China's cumulative net import of all cobalt commodities reached 561 kt, and battery products accounted for 73.3% of the total cobalt consumption. (3) China recovered 77 kt of cobalt from end-of-life products, while 327 kt of cobalt was not recovered. (4) The cumulative cobalt loss during raw material processing reached 288 kt, with the highest loss occurring in refining (51.0%), followed by manufacturing and fabrication (26.5%), beneficiation (12.3%), and ore mining (10.2%). The overall utilization efficiency of cobalt was 73.8% throughout the entire life cycle. (5) China's actual cobalt consumption reached 497 kt, accounting for 51.9% of the apparent cobalt consumption. Moreover, 61.1% of the cobalt products produced in China was consumed domestically, while 38.9% was exported. The massive export of cobalt commodities resulted in China bearing a disproportionate responsibility for carbon emission reduction. The research results can provide a scientific reference for the reasonable adjustment of the trade structure of cobalt commodities and realization of the economic and efficient utilization of cobalt resources in China.

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