Aqua-Pure™AP100 Series, Liquid Filtration

Results:
8
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Series
Flow Rate
Diameter
Particle Size
Operating Temperature
Height
Pressure Range
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Aqua-Pure™AP100
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ImageProduct DetailPriceAvailabilityECAD ModelTypeApplicationsParticle SizeFlow RatePressure RangeInlet/Outlet SizeHeightDiameterOperating TemperatureSeries
5530002
THE AQUA-PURE WHOLE HOUSE WA
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Quantity
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PCB Symbol, Footprint & 3D Model
Housing
Industrial
-
-
125PSI
-
14.875" (377.83mm)
4.560" (115.82mm)
37.8°C - Max
Aqua-Pure™AP100
5530008
THE AQUA-PURE PLASTIC WHOLE
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Quantity
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PCB Symbol, Footprint & 3D Model
Housing
Residential
50µm (Nominal)
16GPM (60.6LPM)
125PSI
-
-
-
37.8°C - Max
Aqua-Pure™AP100
5541731
THE 3M AQUA-PURE WHOLE H
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Quantity
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PCB Symbol, Footprint & 3D Model
Housing
Residential
5µm (Nominal)
3GPM (11.4LPM)
-
-
-
-
-
Aqua-Pure™AP100
5566601
THE 3M AQUA-PURE WHOLE H
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Quantity
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PCB Symbol, Footprint & 3D Model
Housing
Industrial
1µm (Nominal)
8GPM (30.3LPM)
-
-
5.500" (139.70mm)
2.500" (63.50mm)
79.4°C - Max
Aqua-Pure™AP100
5560907
THE 3M AQUA-PURE WHOLE H
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Quantity
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PCB Symbol, Footprint & 3D Model
Housing
Residential
5µm (Nominal)
10GPM (37.9LPM)
-
-
-
-
76.7°C - Max
Aqua-Pure™AP100
5529902
THE AQUA-PURE PLASTIC WHOLE
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Quantity
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PCB Symbol, Footprint & 3D Model
Housing
Residential
50µm (Nominal)
5GPM (18.9LPM)
125PSI
-
-
-
37.8°C - Max
Aqua-Pure™AP100
5552820
3M AQUA-PURE WHOLE HOUSE
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Quantity
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PCB Symbol, Footprint & 3D Model
Housing
Industrial
5µm (Nominal)
2GPM (7.6LPM)
25PSI ~ 125PSI
-
9.800" (248.92mm)
2.750" (69.85mm)
76.7°C - Max
Aqua-Pure™AP100
5541733
THE 3M AQUA-PURE WHOLE H
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Quantity
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PCB Symbol, Footprint & 3D Model
Housing
Industrial
5µm (Nominal)
4.49GPM (17LPM)
-
-
9.800" (248.92mm)
3.000" (76.20mm)
76.7°C - Max
Aqua-Pure™AP100

Liquid Filtration

Liquid filtration is a crucial process that involves the removal of solid particles from a liquid stream using a filter medium. This filtration mechanism allows only the clean liquid to pass through while capturing and retaining the solid particles within the filter. The effectiveness and efficiency of liquid filtration are determined by various characteristics of the filters used, including their type, particle size capability, flow rate capacity, pressure range, and the size of their inlet and outlet connections. Filters used in liquid filtration are designed to cater to specific requirements based on the nature of the particles to be removed and the desired level of filtration. One important characteristic of filters is their particle size capability. Filters are available in different ratings, such as 0.1µm, 0.21µm, 0.3µm, 0.5µm (absolute or nominal), 0.7µm, 0.8µm, 1µm, 1.8µm, 3µm, 4µm, 5µm (absolute or nominal), or 20µm. These ratings indicate the size of particles that the filter can effectively capture and prevent from passing through. The flow rate capacity of a filter refers to the volume of liquid that can pass through it within a given time frame. Filters are designed to handle different flow rates, ensuring efficient filtration without causing excessive pressure drop or compromising the filtration performance. The pressure range indicates the maximum pressure that the filter can withstand without experiencing failure or damage. This specification is essential for selecting the appropriate filter for applications where high-pressure liquid streams are involved. The size of the inlet and outlet connections of a filter is also a critical consideration. It determines the compatibility of the filter with the existing piping or tubing systems, ensuring a proper and secure fit. Overall, liquid filtration relies on the careful selection of filters based on their type, particle size capability, flow rate capacity, pressure range, and inlet/outlet size. By choosing the right filters, industries can effectively remove solid particles from liquids, ensuring the purity and quality of their liquid streams for various applications, including water treatment, industrial processes, pharmaceutical production, food and beverage processing, and many others.