Striving Toward a Circular Economy for Phosphorus: The Role of Phosphate Rock Mining
Abstract
:1. Introduction
1.1. Circular Economy: Thoughts and Considerations
1.2. Innovation as the Vehicle to Attain a Circular Economy
1.3. Mining and Society
2. Research Method
- i.
- Connect the concept of a circular economy to mineral extraction and phosphate rock mining in particular.
- ii.
- Examine the idea of reducing losses by increasing resource efficiency and closing the loops along the value chain particularly in mining and beneficiation.
- iii.
- Provide innovative best-practice examples in PR mining that foster sustainable development and resilient mineral resource strategies.
3. Phosphate Rock Mining-Obstacles and Opportunities on the Journey Toward a P Circular Economy
3.1. The Geological Perspective (the Geosphere)
3.2. The Technological and Process Perspective (Technosphere)
3.3. The Economic Perspective (Valuesphere)
3.4. Striving Toward a Circular Economy of P
4. Cases
4.1. Case 1: Slurry Pipeline of OCP S.A.
4.2. Case 2: Improved Hard Process (IHP)
4.3. Case 3: Seabed Mining—Namibia and New Zealand
4.4. Case 4: Yara’s Paste Thickener
5. Discussion and Conclusion
5.1. Circular Economy, Sustainability, and Resource Efficiency Go Hand-in-Hand
5.2. A Few Initial Steps Toward a Circular Economcy Within the Industry
5.3. Even When Society as a Whole Wins, Somebody Loses
Author Contributions
Acknowledgments
Conflicts of Interest
References
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World | US | China | Morocco | Jordan | Russia | South Africa | Brazil | |
---|---|---|---|---|---|---|---|---|
PR-Ore | 17.5% | 11.8% | 21.6% | 26.4% | 25.5% | 10.1% | 7.0% | 11.1% |
PR-M | 30.1% | 29.2% | 28.1% | 31.5% | 29.7% | 38.7% | 37.3% | 35.4% |
Year | OCP Turnover | Morocco GDP | Exchange | Morocco GDP | OCP/Morocco |
---|---|---|---|---|---|
Bill MAD | Bill USD | MAD/USD | Bill MAD | % | |
2007 | 27.5 | 79.0 | 8.2 | 647.5 | 4.3 |
2008 | 60.0 | 92.5 | 7.7 | 715.9 | 8.4 |
2009 | 25.0 | 92.9 | 8.1 | 751.3 | 3.3 |
2010 | 43.0 | 93.2 | 8.4 | 785.0 | 5.5 |
2011 | 56.4 | 101.4 | 8.1 | 820.5 | 6.9 |
2012 | 59.4 | 98.3 | 8.6 | 848.5 | 7.0 |
2013 | 39.0 | 106.8 | 8.4 | 898.3 | 4.3 |
2014 | 41.4 | 109.9 | 8.4 | 924.0 | 4.5 |
2015 | 47.7 | 100.6 | 9.8 | 981.0 | 4.9 |
2016 | 42.5 | 103.6 | 9.6 | 994.7 | 4.3 |
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Geissler, B.; Hermann, L.; Mew, M.C.; Steiner, G. Striving Toward a Circular Economy for Phosphorus: The Role of Phosphate Rock Mining. Minerals 2018, 8, 395. https://doi.org/10.3390/min8090395
Geissler B, Hermann L, Mew MC, Steiner G. Striving Toward a Circular Economy for Phosphorus: The Role of Phosphate Rock Mining. Minerals. 2018; 8(9):395. https://doi.org/10.3390/min8090395
Chicago/Turabian StyleGeissler, Bernhard, Ludwig Hermann, Michael C. Mew, and Gerald Steiner. 2018. "Striving Toward a Circular Economy for Phosphorus: The Role of Phosphate Rock Mining" Minerals 8, no. 9: 395. https://doi.org/10.3390/min8090395
APA StyleGeissler, B., Hermann, L., Mew, M. C., & Steiner, G. (2018). Striving Toward a Circular Economy for Phosphorus: The Role of Phosphate Rock Mining. Minerals, 8(9), 395. https://doi.org/10.3390/min8090395