Multimedia Sediment Filter


Technical requirements
●Min. pressure: 0.2Mpa
●Max. pressure:1.0Mpa
●Working temperature:<65℃
●Water in/out: 4 inch
●Power:220V/50Hz
The concept of multimedia filtration can be traced back to early sand filtration practices used for water treatment starting in the 1800s. Operators observed that pre-coating sand with other media improved clarification efficiency.
In the early 1900s, the first designed multimedia filters employed graded layers of materials like sand, gravel and charcoal to provide successive physical and chemical treatment. However, limited understanding of hydraulics led to mixing challenges.
Advancements in filtration theories and fluid dynamics during the 1920s revolutionized multimedia filtration modeling. Predicting flow distributions through different zones optimized media selections and arrangements.
Piloting various sand-anthracite-garnet combinations at treatment plants through the mid-20th century validated improved removal of turbidity, bacteria and other contaminants compared to single-media filters. This established multimedia filters as a core technology.


As analytical methods detected more compounds in water supplies from industrial and agricultural runoff post-World War II, incorporating activated carbon and greensand enhanced removal of organics, pesticides and heavy metals beyond the capabilities of simpler filters.
Computational fluid dynamic modeling in the 1980s-90s refined hydraulics between media layers, improving backwashing efficiency and contact time predictions. Customizable designs addressed diverse raw water qualities internationally.
Today's multimedia filters leverage a toolbox of engineered media paired through scientific hydraulics modeling and pilot testing. Advanced metering and controls optimize performance for potable water production and industrial applications on larger scales.
Ongoing R&D expands applicable chemistries to match water treatment needs, cementing multimedia filtration as a cornerstone technology responsible for public health worldwide.
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Model |
Sc05-300 |
Sc05-400 |
Sc05-500 |
Sc05-600 |
Sc05-700 |
Sc05-800 |
|
Scale |
Φ300×1600 |
Φ400×1600 |
Φ500×1650 |
Φ600×1700 |
Φ700×1600 |
Φ800×1600 |
|
Quantity of flow |
0.5~1m3/h |
1~1.5m3/h |
1.5~2m3/h |
2~4m3/h |
4~6m3/h |
6~8m3/h |
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|
||||||
|
Model |
Sc05-900 |
Sc05-1000 |
Sc05-1200 |
Sc05-1400 |
Sc05-1500 |
Sc05-1600 |
|
Scale |
Φ900×2400 |
Φ1000×2500 |
Φ1200×2700 |
Φ1400×2800 |
Φ1500×2900 |
Φ1600×2900 |
|
Quantity of flow |
7~9m3/h |
8~11m3/h |
10~14m3/h |
12~18m3/h |
14~22m3/h |
18~25m3/h |
|
|
||||||
|
Model |
Sc05-1800 |
Sc05-2000 |
Sc05-2200 |
Sc05-2400 |
Sc05-2500 |
Sc05-2600 |
|
Scale |
Φ1800×3200 |
Φ2000×3300 |
Φ2200×3500 |
Φ2400×3500 |
Φ2500×3600 |
Φ2600×3700 |
|
Quantity of flow |
24~32m3/h |
28~40m3/h |
35~45m3/h |
40~55m3/h |
45~60m3/h |
55~65m3/h |
|
|
||||||
|
Model |
Sc05-2700 |
Sc05-2800 |
Sc05-3000 |
Sc05-3200 |
Sc05-3400 |
Sc05-3500 |
|
Scale |
Φ2700×3750 |
Φ2800×3800 |
Φ3000×3850 |
Φ3200×3950 |
Φ3400×4100 |
Φ3500×4300 |
|
Quantity of flow |
60~72m3/h |
68~85m3/h |
75~95m3/h |
90~110m3/h |
100~125m3/h |
110~140m3/h |
|
Model |
Sc05-300 |
Sc05-400 |
Sc05-500 |
Sc05-600 |
Sc05-700 |
Sc05-800 |
|
Scale |
Φ300×1600 |
Φ400×1600 |
Φ500×1650 |
Φ600×1700 |
Φ700×1600 |
Φ800×1600 |
|
Quantity of flow |
0.5~1m3/h |
1~1.5m3/h |
1.5~2m3/h |
2~4m3/h |
4~6m3/h |
6~8m3/h |


Original Seal Standard Package

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Packed In Steel Bottles
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What we use in production

Drinking Water

Industrial Water Processing

Agricultural Irrigation

Logistics and Warehousing Industry

Company profile

active members
years experience
events & challenges
Professional designer


Our advantages

CERTIFICATES


Our Repeat customers




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