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Tailings: A wicked issue

Tailings: A wicked issue. Presentation to APEGA November 4, 2013 Environment and Sustainable Resource Development. Outline. Background Context Command and Control Managing Risk Evolving Management Innovation and Collaboration Adding it up. Bitumen. Oil Sands Ore is Mined.

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Tailings: A wicked issue

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  1. Tailings: A wickedissue Presentation to APEGA November 4, 2013 Environment and Sustainable Resource Development

  2. Outline • Background • Context • Command and Control • Managing Risk • Evolving Management • Innovation and Collaboration • Adding it up

  3. Bitumen Oil Sands Ore is Mined Tailings (Whole Tailings) Water extraction of bitumen Separation of Tailings Coarse Tailings (sand) Fluid Fine Tailings Reclaimed Tailings Fluid Tailings that are Ready forReclamation Various Tailings Treatment Technologies and Time Tailings Generation

  4. Tailings Scale • 976 million cubic metres of tailings • 184 square kilometres

  5. Context • Tailings are an integral part of the mining business • Oil sands, coal, etc. • A regulatory regime has been in place for decades • Construction, operation, closure • Water in tailings ponds has promoted significant recycling and re-use of water • Half of the oil sands opportunity does not generate tailings • But…

  6. Context • The settling of fines has not progressed as anticipated relative to: • Initial development plans • Other tailings experience • The amount of ‘space’ on the landscape has allowed industry to take time to figure it out • The magnitude of sector growth is now challenging this • Tailings events have lead to iconic shifts in the perceptions of oil sands

  7. The [Tailings] Policy Challenge

  8. Other Realities • Economic: • Tremendous initial outlay for oil sands operations • Plenty of technology options, but commercial economies of scale still ‘on the verge’ • Environmental: • In addition to settling challenges, final resting place in updland and wetland still needs to be demonstrated • Water quality, Greenhouse gas emissions • Safety • Social: • Implications for Treaty Rights • Growing local and public expectations about responsible development • Social media, Off oil campaigns

  9. Wicked Problems • Horst Rittel and Melvin Webber – 1973 • realm of social planning problems that cannot be successfully treated with traditional linear, analytical (systems-engineering-like) approaches. • If every drop of tailings was safely contained, what is the issue? • How much is too much tailings? • How much should companies spend on managing tailings? • How long is too long?

  10. Traditional Regulatory Model • Deal with tailings ponds as part of the regulatory process with consideration of the end in mind… • Utilize the authorization process to identify technical issues and engineering requirements • Annual compliance reporting to track how management is being done • Emphasis on the future

  11. Risk Management • Traditional model focused on having competence and capability to handle tailings • Geoscience/technical and engineering design sound • ‘Dam safety’ paradigm • Knowledge from experience [tied up] in the regulator and in the companies • Additional liability related to • Untreated tailings • Reclamation performance

  12. Land-use Framework • Blueprint for land-use, natural resource management, and decision-making to manage growth • Seven regions based on major provincial watersheds • Sustains growing economy while balancing social and environmental goals • Considers the cumulative effects of all activities • Legally enforceable • Subject to regular reviews • Incorporates significant public feedback gathered through extensive consultation

  13. ManagementFrameworks • Key approach to manage the long term cumulative effects of development on the environment at a regional level • Limits are clear boundaries in the system not to be exceeded, triggers are proactive warning signals Indicators, Triggers and Limits • Indicators are chosen • Triggers & limits are set • Ongoing monitoring and assessment of conditions relative to triggers & limits Monitoring and Modelling • Management actions taken as needed at triggers & limits • Results reported Management Response and Reporting

  14. Managing Outcomes • Directive 074 • Necessary shift on tailings management • Brought together ‘engineering’ of fines capture tailings deposits • (lack of) Policy guidance challenged flexibility intent • Focus on flow • Emphasis of a new policy framework on setting outcomes and intent • About managing the liability of tailings as part of a holistic management system • Focus on the role of industry in driving innovation; mobilizing response to achieve outcomes • Triggers and limits as backstops with focus first on managing liability • End of mine objectives and working back • Securities • Engineering focused on integrated mine plans and solutions • Transparency in expected performance and results • Focus on volume

  15. Innovation and Collaboration • Significant learnings and experience from ‘in-house’ management • Necessary shift to broaden the response effort across companies • Canadian Oil Sands Innovation Alliance • Collaborative planning models relating to: • Tailings and water treatment technology • Reclamation opportunities • Water management • Failure is an option – trying is not

  16. Tailings Pond Design

  17. Integrated Solutions

  18. Adding it up…Policy • Starting behind the 8-ball • Significant learnings still to be had • Collective shift in management needed that looks at the entire life cycle of the mining process • Government to set outcomes and backstops • Regulator to provide mechanisms for assurance • Liability managed through financial provisions • Encourage prudent risk • Consideration of competitiveness = Minimize Liability (P)

  19. Adding it up…Engineering • Multidisciplenary considerations relating to: • Optimized mine planning including infrastructure needs • Minimizing volume creation • Real-time flow management (active treatment) • End fate reclamation needs • Third-party expertise to support assurance of tailings profiles and performance • Application of new technologies at various scales • Water matching and water balance • Water treatment and release requirements = Minimize Liability (E)

  20. Problem solved?! Thank you! = Liability (E) Liability (P)

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