1992•Engineering, Construction, and Operations in Space IIIRequires access

On the Beneficiation and Comminution of Lunar Regolith

Larry W. Mason

Open publisher page 2 citations

Abstract

A major concern in the area of planning for future lunar missions and for establishing a lunar base is the selection of a chemical process for liberation of oxygen from lunar regolith (Lunar Liquid Oxygen or LLOX), and for extraction of other useful materials. The processes currently being considered all require regolith feedstock in various stages of beneficiation. This paper addresses the applicability of terrestrial based comminution (particle grinding and sizing) and beneficiation (mineral/ore separation and concentration) equipment for use in the lunar environment. Classification techniques (screening; settling, cyclonic, and pneumatic), grinding operations (tumbling, fluid energy, impact, and ultrasonic mills), and beneficiation techniques (magnetic and electrostatic) are assesed for use on the lunar surface. The question of optimal source material (rock or regolith) is also addressed.

About this research paper

What this paper is about

A major concern in the area of planning for future lunar missions and for establishing a lunar base is the selection of a chemical process for liberation of oxygen from lunar regolith (Lunar Liquid Oxygen or LLOX), and for extraction of other useful materials. The processes currently being considered all require regolith feedstock in various stages of beneficiation. This paper addresses the applicability of terrestrial based comminution (particle grinding and sizing) and beneficiation (mineral/ore separation and concentration) equipment for use in the lunar environment. Classification techniques (screening; settling, cyclonic, and pneumatic), grinding operations (tumbling, fluid energy, impact, and ultrasonic mills), and beneficiation techniques (magnetic and electrostatic) are assesed for use on the lunar surface. The question of optimal source material (rock or regolith) is also addressed.

Why it matters

OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

A major concern in the area of planning for future lunar missions and for establishing a lunar base is the selection of a chemical process for liberation of oxygen from lunar regolith (Lunar Liquid Oxygen or LLOX), and for extraction of other useful materials. The processes currently being considered all require regolith feedstock in various stages of beneficiation. This paper addresses the applicability of terrestrial based comminution (particle grinding and sizing) and beneficiation (mineral/ore separation and concentration) equipment for use in the lunar environment. Classification techniques (screening; settling, cyclonic, and pneumatic), grinding operations (tumbling, fluid energy, impact, and ultrasonic mills), and beneficiation techniques (magnetic and electrostatic) are assesed for use on the lunar surface. The question of optimal source material (rock or regolith) is also addressed.

Key concepts: Beneficiation, Comminution, Regolith, Grinding, Mineral processing, Raw material, Environmental science, Sizing

Related papers

Back to paper searchBrowse research topicsOriginal source
On the Beneficiation and Comminution of Lunar Regolith — Research Paper | ScholarLens