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Ore Beneficiation Technology

Manganese Ore Gravity Separation Equipment for Indonesia Mine

Indonesia holds abundant manganese ore resources, distributed across Sulawesi, Papua, Kalimantan and Sumatra. Most local manganese deposits are oxide manganese ore with simple mineral association. Gravity separation becomes the preferred processing method for Indonesian small and medium mines due to low operation cost, zero chemical reagent consumption and environmentally friendly features. Selecting matched gravity separation equipment directly determines manganese concentrate grade and overall recovery rate.

Bethany
Editorial Team
· 2026-08-03 · 4 min read
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Manganese Ore Gravity Separation Equipment for Indonesia Mine

Published: 2026 | Industry: Manganese Processing, Gravity Concentration, Indonesia Mineral Mining

Indonesia manganese ore open pit mine

Introduction

Indonesia holds abundant manganese ore resources, distributed across Sulawesi, Papua, Kalimantan and Sumatra. Most local manganese deposits are oxide manganese ore with simple mineral association. Gravity separation becomes the preferred processing method for Indonesian small and medium mines due to low operation cost, zero chemical reagent consumption and environmentally friendly features. Selecting matched gravity separation equipment directly determines manganese concentrate grade and overall recovery rate.

Raw manganese lump and manganese ore fines

Features of Indonesian Manganese Ore

The majority of Indonesian manganese oxide ore exists in loose weathered layers, containing a large amount of clay slime. The ore particle size varies widely, including lump ore, granular ore and fine muddy manganese. Gangue mainly consists of silica, clay and iron oxide. Target concentrate requirement for local buyers is usually Mn grade above 35%. High clay content brings big challenges to washing and classification; mud removal is an essential pretreatment step before gravity separation.

Manganese ore washing and screening system

Core Gravity Separation Equipment for Indonesian Manganese Projects

1. Log Washer & Trommel Screen (Pretreatment)

Trommel screen with high-pressure water washing removes sticky clay from manganese surface. Log washer handles heavily muddy raw ore. Clean ore is divided into different particle fractions, because different sizes of manganese require different gravity separation machines. This pretreatment is irreplaceable for Indonesia weathered manganese ore.

2. Jig Separator for Coarse & Medium Manganese Ore

Jig machine is widely used for 2mm to 30mm manganese particles. It features large handling capacity, stable running and low power consumption. Most medium-scale manganese mines in Sulawesi adopt jig separators to upgrade lump manganese ore directly, ideal for rough concentration.

3. Shaking Table for Fine Manganese Ore

Shaking table suits 0.074mm – 2mm fine manganese material. It can produce high-grade manganese concentrate. Many operators combine jigs and shaking tables to recover coarse and fine manganese separately. The disadvantage is relatively small processing capacity, suitable for secondary concentration.

4. Spiral Chute for Micro Fine Manganese

Spiral concentrator works well for fine manganese below 1mm. It runs continuously without extra power. Mines with huge volume of fine manganese slime often deploy spiral chutes to recycle lost manganese resources and improve total recovery.

Complete manganese gravity separation flow layout

Two Typical Process Flows for Indonesia Manganese Mine

Scheme 1: Simple Washing + Jig Line (Small Investors)

Raw ore → Trommel Washing Screen → Jig Separator. Low investment, easy operation. Suitable for ore with high manganese lump content. The concentrate grade can reach 32%-38% Mn.

Scheme 2: Full Recovery Combined Process (Medium & Large Mines)

Raw Ore → Washing & Desliming → Classification → Jig for coarse ore + Spiral Chute & Shaking Table for fine ore. Maximizes recovery of both lump and fine manganese. Total manganese recovery can increase 10%~18% compared with simple jig flow.

Manganese processing site in Indonesia

Common Mistakes for Indonesian Manganese Miners

  • Skipping desliming process. Heavy clay will seriously reduce gravity separation efficiency and waste water resources.
  • Mixing all particle sizes into one separation machine, leading to low concentrate grade and high tailing loss.
  • Ignoring local water supply conditions. Gravity separation requires stable water volume; lack of water limits daily output.
  • Overlooking tailing stacking regulations. Indonesia enforces stricter environmental management on mineral washing projects.
FAQ manganese gravity separation Indonesia

Frequently Asked Questions

Q: Is gravity separation suitable for all Indonesian manganese ore?

Gravity separation works best for oxide manganese ore. If your ore is high-sulfur manganese carbonate ore, flotation may be needed as auxiliary process.

Q: Do I need to crush manganese ore before gravity separation?

Only when manganese is closely intergrown with gangue rock. Most weathered Indonesian manganese ore already dissociated, crushing may not be necessary.

Q: Can gravity separation avoid chemical pollution?

Yes. Gravity separation only uses water, no toxic chemicals. It satisfies most environmental requirements across Indonesia mining areas.

Conclusion

Gravity separation remains the most economical processing route for Indonesian oxide manganese mines. Rational equipment matching and complete desliming pretreatment are two key factors to boost profit. Contact us to get customized process layout and equipment quotation for your manganese mining project in Indonesia.

Written by

Bethany

WSHT Mining Editorial Team consists of senior mining engineers, metallurgical experts and industry analysts with 15+ years of on-site experience in crushing, screening, grinding and flotation circuits worldwide.

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