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Deposit Calculator

Deposit Value Estimator

Estimate contained material, recoverable material, payable material, and a rough gross reference value using deposit tonnage, grade, dilution, recovery, payable percentage, and a value per unit.

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Enter Deposit Data

Estimate Deposit Value

Enter the metal or mineral being evaluated.
Total quantity of ore, rock, or mineralized material.
Example: 0.8% copper, 2.5 g/t gold, or 1,200 ppm lithium.
%
Additional lower-grade or waste material assumed to reduce the effective grade.
%
Estimated percentage of contained material recovered.
%
Percentage of recovered material assumed to be payable.
$
Enter your own reference value. This is not a live commodity quote.
Estimated Results

Copper Deposit Estimate

Based on the figures entered into the estimator.

Effective Grade — After the entered dilution assumption.
Theoretical Contained Resource — Before recovery losses.
Estimated Recoverable Resource — Using the entered recovery assumption.
Estimated Payable Resource — After the entered payable percentage.
Gross Reference Value — Based on payable material and the reference value entered.
Gross Reference Value per Tonne of Ore — Reference value divided by the entered deposit quantity.
This is not a mine valuation. The result does not subtract mining, processing, transportation, capital, operating, financing, environmental, tax, royalty, permitting, infrastructure, marketing, or other project costs.
How It Works

The Calculation Behind the Estimator

The estimator adjusts the entered grade for dilution, calculates contained material, applies recovery and payable assumptions, and converts the final material quantity into the unit used for the entered reference value.

01

Effective Grade

Reported Grade ÷ (1 + Dilution %)

A simplified dilution adjustment reduces the reported grade when additional lower-grade or waste material is assumed.

02

Contained & Recoverable Resource

Deposit Quantity × Effective Grade × Recovery %

The calculator first estimates theoretical contained material, then applies the entered recovery assumption.

03

Payable Reference Value

Recoverable Quantity × Payable % × Reference Value

Payable material is converted into the selected pricing unit before the entered reference value is applied.

Deposit Assumptions

Why Each Input Changes the Result

Deposit estimates can change substantially when grade, dilution, recovery, or payable assumptions change.

Grade

Higher average grade means more target material is theoretically contained in each tonne of mineralized material.

Dilution

Additional waste or lower-grade material can reduce the effective grade of material delivered for processing.

Recovery

Not all contained metal or mineral can necessarily be recovered during processing.

Payable %

A saleable product may not receive payment for every unit of material it physically contains.

Worked Example

1 Million Tonnes of Ore at 0.8% Copper

Consider a hypothetical copper deposit containing one million metric tonnes of mineralized material at an average reported grade of 0.8%.

With 5% dilution, the simplified effective grade falls below the original 0.8%. A 90% recovery assumption then reduces the amount considered recoverable, and a 95% payable assumption reduces the quantity used for the final reference-value calculation.

The result is useful for understanding the mathematics behind a headline deposit number, but it is not an estimate of the economic value of the project.

Copper Deposit Example
Deposit quantity 1,000,000 metric tonnes
Reported grade 0.8% copper
Dilution 5%
Effective grade ≈ 0.7619%
Theoretical contained copper ≈ 7,619 t
Recovery 90%
Recoverable copper ≈ 6,857 t
Payable percentage 95%
Purpose Gross reference estimate only
Important Context

Deposit Value Is Only the Beginning

A large contained or gross reference value does not tell you whether the resource can become an economically viable mine.

01 Cutoff Grade

Not every tonne of mineralized material may qualify for inclusion in an economic mining plan.

02 Mining Recovery

Geological resource does not automatically translate into material delivered to the processing plant.

03 Metallurgy

Mineralogy and processing characteristics can substantially affect actual recoveries and product quality.

04 Capital Costs

Mines may require processing plants, roads, power, water systems, equipment, and other major infrastructure.

05 Operating Costs

Labor, energy, maintenance, processing, waste handling, and transportation affect project economics.

06 Taxes & Royalties

Government obligations, ownership arrangements, and royalties can reduce the amount ultimately retained by a project.

07 Permitting

Regulatory approvals, community considerations, land access, and environmental obligations can affect development.

08 Product Terms

Concentrate quality, impurities, refining charges, treatment charges, and product specifications can influence realized value.

09 Market Conditions

Actual realized prices can differ from the reference value entered into a simple calculator.

Use With Resource Profiles

Put the Deposit Estimate in Context

Resource profiles provide the geology, supply, processing, market structure, and real-world uses that a calculator alone cannot show.

Educational Use

This estimator provides simplified mathematical estimates from user-supplied inputs. Results should not be used as mineral reserve statements, feasibility studies, property valuations, securities analysis, investment advice, engineering conclusions, or financial projections.

Earth Value Index

Numbers Matter More When They Have Context

Use Earth Value Index resource profiles, tools, Resource Uses, country information, and market references together to understand what natural resources are worth and why they matter.