
0.01 micron 0.01ppm compressed air inline coalescence filter
Precision:1-20 micron
Product Details
Filters play an important role in the compressed air process. Depending on the end use, strict purity standards require a variety of contaminants to be removed, including oil aerosols, vapors and particulates. The filters fall into three categories: coalescing filters, vapor removal filters and the dry particulate filters.
Coalescing Filters: Coalescing filters are used for removing water and aerosols.
Vapor Removal Filters: Vapor removal filters are typically used to remove gaseous lubricants that will go through the coalescing filter.
Dry Particulate Filters: Dry particulate filters are usually employed to remove desiccant particles after an adsorption dryer.
Contaminants can enter the compressed air from a variety of sources. Intake air can introduce dust or pollen particulates, while corroded pipes can add harmful particulates from within the compressor system. Oil aerosols and vapors are often a byproduct of using oil-injected compressors and must be filtered out before end use.
Knowing the needs of your compressed air system can help you chose the right filter.
The filter rating selection
The filter selection
Note:* indicates the filter accuracy level, standard manual drain valve, working pressure 1.6Mpa, working temperature 1.5~80 c.
The flange type filter
Coalescing Filters: Coalescing filters are used for removing water and aerosols.
Vapor Removal Filters: Vapor removal filters are typically used to remove gaseous lubricants that will go through the coalescing filter.
Dry Particulate Filters: Dry particulate filters are usually employed to remove desiccant particles after an adsorption dryer.
Contaminants can enter the compressed air from a variety of sources. Intake air can introduce dust or pollen particulates, while corroded pipes can add harmful particulates from within the compressor system. Oil aerosols and vapors are often a byproduct of using oil-injected compressors and must be filtered out before end use.
Knowing the needs of your compressed air system can help you chose the right filter.
The filter rating selection
Filter rating | Filter type | Filter particles(water and oil mist) | Oil content |
Class C | Collision separation | 3 micron | 5 ppm |
Class T | Condensed | 1 micron | 1 ppm |
Class A | Condensed | 0.01 micron | 0.01 ppm |
Class F | Condensed | 0.01 micron | 0.001 ppm |
H grade(activated carbon | Oil vapor removal | 0.01 micron | 0.001 ppm |
The filter selection
Filter model | Connection size | Filter size | Flow | ||
C, T, A, F, H | Rc | W mm | H1 mm | H2 mm | N m3/min |
AP-*-001 | 1/2”, 3/4” | 98 | 213 | 236 | 1.2 |
AP-*-002 | 3/4”, 1” | 98 | 213 | 236 | 2.4 |
AP-*-003 | 1”, 1.5” | 117 | 253 | 286 | 3.8 |
AP-*-005 | 1.5” | 117 | 382 | 415 | 5.8 |
AP-*-008 | 1.5” | 117 | 382 | 415 | 8.5 |
AP-*-010 | 2” | 133 | 509 | 550 | 10.2 |
AP-*-013 | 2” | 133 | 509 | 550 | 13 |
AP-*-015 | 2”, 2.5” | 150 | 675 | 715 | 15 |
AP-*-018 | 2”, 2.5” | 150 | 782 | 830 | 20 |
AP-*-022 | 2”, 2.5” | 150 | 936 | 985 | 25 |
The flange type filter
Filter model | Flow | Connection size | Number of element | Filter size | |||
C, T, A, F, H | N m3/min | Rc | Pcs | W mm | H1 mm | H2 mm | D mm (inner diameter) |
AFP-*-020 | 20 | DN65 | 1 | 300 | 770 | 940 | 125 |
AFP-*-025 | 25 | DN80 | 1 | 336 | 943 | 1118 | 150 |
AFP-*-030 | 30 | DN100 | 2 | 500 | 1050 | 1250 | 207 |
AFP-*-040 | 40 | DN100 | 2 | 500 | 1050 | 1250 | 207 |
AFP-*-060 | 60 | DN100 | 3 | 500 | 1050 | 1250 | 259 |
AFP-*-080 | 80 | DN125 | 4 | 600 | 990 | 1250 | 350 |
AFP-*-100 | 100 | DN125 | 5 | 600 | 990 | 1250 | 350 |
AFP-*-120 | 120 | DN125 | 6 | 600 | 1070 | 1350 | 350 |
AFP-*-140 | 140 | DN150 | 7 | 630 | 1020 | 1350 | 400 |
AFP-*-160 | 160 | DN150 | 8 | 700 | 1020 | 1350 | 450 |
AFP-*-180 | 180 | DN150 | 9 | 780 | 1070 | 1400 | 500 |
AFP-*-200 | 200 | DN150 | 10 | 780 | 1070 | 1400 | 550 |
AFP-*-250 | 250 | DN200 | 13 | 780 | 1130 | 1460 |
550 |
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