Sign In


Forgot Password?

Don't have account, Sign Up Here

Forgot Password

Lost your password? Please enter your email address. You will receive a link and will create a new password via email.


Have an account? Sign In Now

Sorry, you do not have permission to Add a Post, You must login to Add a Post.


Forgot Password?

Need An Account, Sign Up Here

Sorry, you do not have permission to add Article.


Forgot Password?

Need An Account, Sign Up Here

Please briefly explain why you feel this Post should be reported.

Please briefly explain why you feel this Comment should be reported.

Please briefly explain why you feel this user should be reported.

Mining Doc Logo Mining Doc Logo Mining Doc Logo
Sign InSign Up

Mining Doc

Mining Doc Navigation

  • Home
    • About
    • Contact us
  • Mining articles
  • Online Courses
Search
Sign up

Mobile menu

Close
join for free
  • Home
  • Online courses
  • Case study
  • Mining Community
  • Solutions listing
    • Lase Solutions
    • O-PitBlast Solutions
    • Continuous Mining
    • Longwall mining
    • Geosight Scanners
    • LoopX AI
    • Terafil solutions
    • Blasting solutions
    • Geotechnical
    • Submersible Pumps
    • Mine rescue system
    • Ore sorting
    • Whittle Consulting Solutions
  • Add Blog
  • Feed
  • User Profile
  • Posts
    • New Posts
    • Trending Posts
    • Must read Posts
    • Hot Posts
  • Polls
  • Badges
  • Home
    • About
    • Contact us
  • Mining articles
  • Online Courses

Mining Doc Latest Posts

Mining Doc
  • 0
  • 0
Mining DocEnlightened
Added: September 2, 20262026-09-02T05:33:15-04:00 2026-09-02T05:33:15-04:00In: Mining Engineering

How to apply Lane's algorithm correctly when cut-off grade must vary across multiple processing paths?

  • 0
  • 0

Delineation of the cut-off grade in terms of the boundary between ore and waste is important when strategizing open-pit mining projects. Cut-off grade refers to the minimum ore grade which can be economically extracted. Lane’s algorithm, on the other hand, forms the main dynamic optimization algorithm used in determining this grade (Goycoolea et al., 2021). Unlike break-even models which do not consider the time value of money, the Lane theory maximizes Net Present Value (NPV) by extracting higher ore grades earlier in the process.

The conventional Lane theory has to be understood when applying the algorithm. The theory considers a mining project as a system consisting of three major constraints: mining, milling/concentrating, and refining (Githiria, 2016). Through a careful analysis of the relationship between grade-tonnage curve and economic considerations, such as metal prices, cost of mining and processing, among others, cut-off grades are determined through a limiting and balancing exercise. The best cut-off grade at any point is chosen depending on the stage in order to avoid bottlenecks.

However, modern mining complexes do not generally use just one processing path. As a result, the optimization process becomes more complicated. If there are several processing paths in place, such as direct flotation, heap leaching, and stockpiling, the standard single-path Lane method cannot be used anymore. In this case, each destination has unique metallurgical recoveries, processing costs, and capacities (Cutler & Dimitrakopoulos, 2025). The key question in this case is to route the extracted material to the destination, which will generate the maximum marginal value taking into account the capacity of each processing path.

The application of Lane’s algorithm in environments where there are more than one routes of processing requires the objective function to be altered in order to make an estimation of the opportunity cost of each individual route that may be chosen. The algorithm needs to produce more than one cut-off grade rather than just one cut-off grade which differentiates ore from the waste (Ahmadi & Shahabi, 2018). Each extracted block needs to have its own profitability calculated for all destinations in order to send the material to the destination where it produces the most profit as long as the capacity of the destination has not been reached; otherwise, the algorithm will consider the feasibility of sending the low-quality blocks to the secondary heap leach pad or stockpile.

The application of complex mathematical modeling is common in advanced multi-destination routing solutions due to the increased complexity. Even though the original algorithm by Lane is rather efficient, current modifications are based on stochastic programming and mixed integer-linear programming in order to simultaneously optimize cut-off grades and production schedules (Cutler & Dimitrakopoulos, 2025). This allows incorporating both geological and market uncertainty in the algorithm, which ensures the robustness of the modified variable cut-off strategy. The process involves iterative adjustment of cut-off grades based on the residual capacity of all possible processing routes.

To sum up, the adaptation of Lane’s algorithm to support multi-destination routing transforms an optimization problem into a dynamic, value-based routing problem. It involves establishing unique cut-off grades for each of the available processing streams while taking into consideration their capacities and expenses. In this way, the profitability of mining activities can be significantly improved. With ore bodies becoming more complex, it becomes necessary to use such modified multi-stream cut-off grade approach in order to maximize NPV of mining assets through optimal processing of each ton of mined ore.

References

Ahmadi, M. R., & Shahabi, R. S. (2018). Cutoff grade optimization in open pit mines using genetic algorithm. Resources Policy, 55, 184–191. https://doi.org/10.1016/j.resourpol.2017.11.016

Cutler, J., & Dimitrakopoulos, R. (2025). Optimising multi-element cut-off grades for a strategic production plan under geological uncertainty. International Journal of Mining, Reclamation and Environment, 1–15. https://doi.org/10.1080/17480930.2025.2455567

Githiria, J. (2016). Development of a computer-aided application using Lane’s algorithm to optimize cut-off grade. Journal of the Southern African Institute of Mining and Metallurgy, 116, 1027–1035. https://doi.org/10.17159/2411-9717/2016/v116n11a4

Goycoolea, M., Lamas, P., Pagnoncelli, B. K., & Piazza, A. (2021). Lane’s Algorithm Revisited. Management Science, 67, 3087–3103. https://doi.org/10.1287/mnsc.2020.3685

How to apply Lane's algorithm correctly when cut-off grade must vary across multiple processing paths?
0
  • 0 0 Comments
  • 44 Views
  • 44 Reactions
  • 0 Followers
  • 0
    • Report
  • Share
    Share
    • Share on Facebook
    • Share on Twitter
    • Share on LinkedIn
    • Share on WhatsApp

Related Posts

  • What's the correct methodology for geotechnical span design in a room-and-pillar operation?
  • What strategies minimize costly organic solvent losses during copper extraction?
  • What's the correct workflow for integrating short-interval control into daily production scheduling?

You must login to add an Comment.


Forgot Password?

Need An Account, Sign Up Here
aalanaalan

Sidebar

Sponsored Ads

aalan
  • Recent
  • From Data to Decisions: Why Mining Intelligence Is the Next Competitive Advantage
    • On: September 1, 2026

    From Data to Decisions: Why Mining Intelligence Is the Next ...

  • How Thermal Imaging Security Cameras Are Improving Safety at Mine Sites
    • On: September 1, 2026

    How Thermal Imaging Security Cameras Are Improving Safety at Mine ...

  • Why Is a Professional Aggregate Crushing Solution More Important Than Purchasing a Single Piece of Equipment?
    • On: September 1, 2026

    Why Is a Professional Aggregate Crushing Solution More Important Than ...

  • Cobblestone Crusher in Mining: How Rock Hardness Affects Energy Consumption and Crusher Performance
    • On: August 31, 2026

    Cobblestone Crusher in Mining: How Rock Hardness Affects Energy Consumption ...

  • Protected: Non-Nuclear Process Measurement in Mineral Processing: Supporting Safer and More Efficient Operations
    • On: August 30, 2026

    Non-Nuclear Process Measurement in Mineral Processing: Supporting Safer and More ...

  • Why Peru Mining Contractors Need Flexible Concrete Supply for Scattered Work Areas
    • On: August 27, 2026

    Why Peru Mining Contractors Need Flexible Concrete Supply for Scattered ...

  • Concrete Batching Plant for Sale Australia for Haul Roads: How On-Site Concrete Production Supports Mine Development
    • On: August 27, 2026

    Concrete Batching Plant for Sale Australia for Haul Roads: How ...

Go to Home page to view more

Top Members

Olena Skyba

Olena Skyba

  • 150 Posts
  • 2 Comments
Pundit
Marcial

Marcial

  • 91 Posts
  • 0 Comments
Enlightened
Jean Marais (Sanodea Group)

Jean Marais (Sanodea Group)

  • 26 Posts
  • 0 Comments
Beginner
Trending on Mining Doc

Trending Communities

Fixed Plant General Information Geology Mining Case Studies Mining Doc Documentary Mining Engineering Mining Events Mining Finance and Economy Mining Human Resources Mining Industry Research Mining Operations Mining Software Solutions Mining Sustainability Mining Technology Solutions Mobile Plant Equipment

Explore

  • Home
  • Online courses
  • Case study
  • Mining Community
  • Solutions listing
    • Lase Solutions
    • O-PitBlast Solutions
    • Continuous Mining
    • Longwall mining
    • Geosight Scanners
    • LoopX AI
    • Terafil solutions
    • Blasting solutions
    • Geotechnical
    • Submersible Pumps
    • Mine rescue system
    • Ore sorting
    • Whittle Consulting Solutions
  • Add Blog
  • Feed
  • User Profile
  • Posts
    • New Posts
    • Trending Posts
    • Must read Posts
    • Hot Posts
  • Polls
  • Badges

Footer

Mining Doc

Join our community and connect with other people in the Mining industry for knowledge sharing.

Legal Stuff

  • Privacy Policy
  • Terms of Service

Help

  • Support
  • FAQs
  • How to add new content and how to promote a content
  • Compliance and guidelines
  • Subscribe to Mining Doc

Follow

© 2026 Mining Doc. All Rights Reserved