Water Desalination & Treatment

ARBOK-Beryllium

Beryllium costs more per kilogram than most metals on the critical list, and the standard treatment of beryllium-bearing process water is designed to bury it.

ARBOK-Beryllium

Technology brief

What this platform addresses

Beryllium costs more per kilogram than most metals on the critical list, and the standard treatment of beryllium-bearing process water is designed to bury it.

Public version — process detail withheld

The challenge

The problem this technology addresses

Beryllium-bearing process wastewater from ore processing, metal and alloy production and machining. Output: a dry beryllium-bearing concentrate, clean process water returned to the cycle, and other metals present in the stream as co-recovered fractions. End uses: aerospace, defence, nuclear and Be-Cu alloy supply chains.

ARBOK solution

How the ARBOK system creates value

Beryllium costs more per kilogram than most metals on the critical list, and the standard treatment of beryllium-bearing process water is designed to bury it. Lime and flocculant push more than 95% of the beryllium in the stream into a sludge, the sludge is classified as hazardous, and the hazardous sludge goes underground permanently. The plant pays for the reagent, pays for the disposal, and loses the metal in the same operation. ARBOK-Beryllium runs the same stream through deep-vacuum separation at ambient temperature: no lime, no flocculant, no sludge, and the beryllium leaves as a dry concentrate rather than as a liability.

Water evaporates at ambient temperature under deep vacuum — no heat is supplied, there is no heating circuit and no process setpoint — and condenses as clean water. Beryllium and the other non-volatile metals remain as a compact dry concentrate. Nothing is purchased to make the separation happen, no chemical precipitation occurs, and therefore no hazardous sludge forms.

Market and application

Commercial opportunity

Global refined beryllium output is roughly 220–260 t a year; the US is the largest producer and consumer at about 150–170 t a year, from a single domestic producer in Utah. Metal price is roughly $700–1,500/kg, and aerospace-grade components run higher. Every beryllium metallurgical site running lime-and-flocculant wastewater treatment is a candidate.

Eliminated reagent purchase, eliminated hazardous-sludge disposal at $300–600 per ton on the US hazmat range, plus the value of the recovered concentrate, against the module. Payback 5–7 years.

Use cases

Where the technology can be applied

Beryllium-bearing process wastewater from ore processing, metal and alloy production and machining. Output: a dry beryllium-bearing concentrate, clean process water returned to the cycle, and other metals present in the stream as co-recovered fractions. End uses: aerospace, defence, nuclear and Be-Cu alloy supply chains.

View preserved source description

Overview

Beryllium costs more per kilogram than most metals on the critical list, and the standard treatment of beryllium-bearing process water is designed to bury it. Lime and flocculant push more than 95% of the beryllium in the stream into a sludge, the sludge is classified as hazardous, and the hazardous sludge goes underground permanently. The plant pays for the reagent, pays for the disposal, and loses the metal in the same operation. ARBOK-Beryllium runs the same stream through deep-vacuum separation at ambient temperature: no lime, no flocculant, no sludge, and the beryllium leaves as a dry concentrate rather than as a liability.

Applications

Beryllium-bearing process wastewater from ore processing, metal and alloy production and machining. Output: a dry beryllium-bearing concentrate, clean process water returned to the cycle, and other metals present in the stream as co-recovered fractions. End uses: aerospace, defence, nuclear and Be-Cu alloy supply chains.

Operating Principle

Water evaporates at ambient temperature under deep vacuum — no heat is supplied, there is no heating circuit and no process setpoint — and condenses as clean water. Beryllium and the other non-volatile metals remain as a compact dry concentrate. Nothing is purchased to make the separation happen, no chemical precipitation occurs, and therefore no hazardous sludge forms.

Key Parameters

| Parameter | Value |

|---|---|

| Process temperature | ambient — no heat supplied, no setpoint |

| Reagents | none |

| Sludge | none formed |

| Output | dry beryllium-bearing concentrate + clean process water |

| Refining to metal grade | separate stage |

Advantages

Removes the reagent line and the hazardous-waste line at once, and converts what was a disposal cost into a recovered material. The water goes back to the process instead of to discharge.

Market Potential

Global refined beryllium output is roughly 220–260 t a year; the US is the largest producer and consumer at about 150–170 t a year, from a single domestic producer in Utah. Metal price is roughly $700–1,500/kg, and aerospace-grade components run higher. Every beryllium metallurgical site running lime-and-flocculant wastewater treatment is a candidate.

Related Technologies

ARBOK-ZWD · ARBOK-Finishing · ARBOK Critical-Materials Recovery

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Partnership pathway

Evaluate ARBOK-Beryllium for your application or pilot site.