Alluvial Sticky Clay Trommel Gold Mining Rotary Drum Scrubber
The slurry material feeds into the drum where it is vigorously scrubbed, the soil matrix is broken up and the target mineral is released. The material is then screened through the rotating screen and waste is ejected. The screened material is then passed on to the concentrating modules for upgrading.
Features
Designed to break up alluvial gravels, clays and sand
High capacity and high power scrubbing
The long drum of the scrubber retains material for longer, more vigorous washing for complete separation
One high output electrical motor driving a gear system providing efficient torque
Adjustable rotary speed
The water with high pressure flushed the inwall of drum
Can accept material up to 230mm
Mechanical sealing of inlet chute - minimal spillage when over feeding
Drive loads absorbed within the drive frame and pivoting drive frame design - Foundations only have to support vertical load and are not critical for alignment ie minimal cost -Shell design less mass than conventional roller supported units-installation craneage requirement reduced
Descriptions
The rotary scrubber is an autogenous rotating drum scrubber, utilising pebbles and rocks within the feed source to fracture and disintegrate clays, agglomerates and soft oxides. Disintegrated material is homogeneously slurried within the drum, whilst the autogenous load is retained within the drum by reverse flights located at the drum discharge end. Slurry and washed oversize overflows the drum discharge throat to the concentric exit trommels.
The scrubber spins slowly, similar to a giant washing machine. It churns the fines and oversize and water together, vigorously breaking up the soil matrix as well as liberating the target mineral from tough clay, schist's and rock.
After the fine (soil) is separated, the material is moved into the screen. The rotating screen separates the oversize material from the fines (the fines are usually termed or categorized into less than 8mm). Most of the freely (gravity) recoverable gold and or other recoverable mineral is contained in the -8mm fines.
This material is then passed on to the downstream process equipment which can be in various forms such as centrifugal Concentrator, spirals, jigs etc.
Technical Specifications
Model |
Drum Size (m) |
Screen size (mm) |
Feeding size (mm) |
Water pressure (Mpa) |
Every ton of ore water required (M3/t) |
Capacity (T/h) |
Rotation speed (r/min) |
Power (Kw) |
Weight (T) |
RXT1030 |
Φ1.0×3.0 |
≥5 |
≤100 |
0.4~0.5 |
1.5~4 |
30~50 |
25~28 |
15 |
4800 |
RXT1230 |
Φ1.2×3.0 |
≥5 |
≤100 |
0.4~0.5 |
1.5~4 |
50~70 |
23~25 |
18.5 |
5800 |
RXT1530 |
Φ1.5×3.0 |
≥5 |
≤150 |
0.4~0.5 |
1.5~4 |
70~90 |
18~22 |
22 |
6200 |
RXT1545 |
Φ1.5×4.5 |
≥5 |
≤150 |
0.4~0.5 |
1.5~4 |
80~120 |
18~22 |
30 |
6900 |
RXT1560 |
Φ1.5×6.0 |
≥5 |
≤150 |
0.4~0.5 |
1.5~4 |
90~130 |
18~22 |
37 |
8300 |
RXT1845 |
Φ1.8×4.5 |
≥5 |
≤170 |
0.4~0.5 |
1.5~4 |
100~130 |
20~21 |
45 |
11800 |
RXT1860 |
Φ1.8×6.0 |
≥5 |
≤170 |
0.4~0.5 |
1.5~4 |
110~140 |
20~21 |
45 |
12800 |
RXT2060 |
Φ2.0×6.0 |
≥5 |
≤210 |
0.4~0.5 |
1.5~4 |
120~160 |
19~20 |
55 |
14800 |
RXT2265 |
Φ2.2×6.5 |
≥5 |
≤230 |
0.4~0.5 |
1.5~4 |
160~180 |
19~20 |
55*2 |
16500 |
RXT32100 |
Ø3.2x10 |
≥5 |
≤300 |
0.4~0.5 |
1.5~4 |
300~400 |
12 |
90*2 |
53000 |
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