V0.1 (PVDF 0.1um)

Specsheets

Membrane Specsheets

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vapSanitary Microfiltration Spiral-Wound Element
V0.1 MAX (PVDF 0.1μm)

Synder Filtration’s Microfiltration Elements offer an optimal combination of both flux and rejection in a comprehensive range of MWCO’s. Contact us today to learn more about our complete line of membrane products and services.



MAX SERIES BENEFITS

  • Conforms to 3-A, FDA, and USDA sanitary standards
  • Hot sanitization eliminates chlorine during CIP
  • High resistance to pH and temperature
  • High resistance to fouling
  • Customizable dimensions for unique housings

COMMON APPLICATIONS

  • Fat/Microbial removal
  • Protein fractionation

Element Specifications

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RECOMMENDED OPERATING PARAMETERS

Pressure PSI Bar
Max Inlet Pressure 120 8.3
Min Outlet Pressure 10 0.7
Max Differential Pressure per Element 18 1.2
Max Permeate Backpressure 5 0.3

Note: Soft start on boost pumps required to minimize pressure/flow shocks to elements.

 

Temperature Fahrenheit Celsius
Max. Operating 140° 60°
Max. CIP Temperature 185° 85°

 

pH Parameters pH
Operating
Parameters
At Max Temp. – 3-10
At Ambient Temp. – 2-10.5
Cleaning
Parameters
At Max Temp. – 2-11
At Ambient Temp. – 2-12

 

Chlorine Norm. ppm Max. ppm
Free Chlorine in DF Water or Product 0 < 0.1
Chlorine during CIP at:
pH 10.8-11.0 and 50°C (PES/PVDF)
pH 10.5 and 50°C (PAN)
150 180

Note: Maximum chlorine exposure for all elements is 30 minutes per day at pH and temperature conditions listed above.

 

DIMENSIONS & WEIGHT

Element Model No. Diameter (B) in (cm) Length (A) in (cm) PWT ID/OD in (cm) Weight (lb) Weight (kg)
1.8″ 1812F 1.8 12 0.63 1 0.5
2.5″ 2519
2540F
2540M*
2.5
2.5
2.5
19.25
40
38
0.63
0.63
0.75*
2
4
4
0.9
1.8
1.8
3.8” 3838
3838.75
3850
3938.75
3.8
3.8
3.8
4.0
38
38.75
50
38.75
0.83
0.83
0.83
0.63
10
10

13
10
4.5
4.5
5.9
4.5
4.3” 4333
4333
4335.5
4336
4338
4.3
4.3
4.3
4.3
4.3
33
35
35.5
36
38
0.83
0.83
0.83
0.83
0.83
11
11
11
11
12
5.0

5.2
5.2
5.2
5.4
5.8” 5838 5.8 38 1.14 15 7.0
6.3” 6338
6324
6.3
6.3
38
24
1.14
1.14
16
17
7.0
7.7
6.4” 6438
6424
6.4
6.4
38
24
1.14
1.14
29
18
13.2
8.2
7.8” 7838
7824
7.8
7.8
38
24
1.14
1.14
40
26
18.2
11.8
8” 8038
8040

8238
8240
8338
8340
8.0
8.0
8.2
8.2
8.3
8.3
38
40
38
40

38
40
1.14
1.14
1.14
1.14
1.14
1.14
38
39
38
40
40
40
17.2
17.7
17.2
18.0
18.0
18.0
9" 9838 9.8 38 1.14 42 19.1
10” 10338 10.3 38 1.14 50 22.7

 

Recommended Element Cross Flow Rate

Element Feed Spacer (in mils)

24 31 46 65 80
1.8″ m3/hr
gpm
1

4
1

5
1

6
2

7
2

7
2.5″ m3/hr
gpm
2

9
2

10
3

11
3

12
3

13
3.8” m3/hr
gpm
5

22
6

25
7

29
8

33
8

35
4.3” m3/hr
gpm
6

29
7
32
9
38
10
44
10

46
5.8” m3/hr
gpm
12
51
13
59
16
69
18
78
19
83
6.3” m3/hr
gpm
15
65
17
74
20
88
22
99
24
105
8” m3/hr
gpm
21
94
24
107
29
128
33
143
35
154
10” m3/hr
gpm
42
184
48
213
57
250
64
283
68
299

*Note: The recommended cross flow rate will be subject to differential pressure limitations and specific applications.



Membrane Area(SQ. FT.)

Element Model No. Feed Spacer (in mils)

24 31 46 65 80
1.8" 1812F 4.3 3.6 2.9 2.1 1.8
2.5” 2519
2540M
2540F
15
34
35
13
29
30
10
22
23
8
17
18
7
15
16
3.8” 3838
3838.75

3850
3938.75
85
86
100
102
72
74
84
89
58
59
70
69
46
47
52
53
38
39
46
47
4.3” 4333
4335
4335.5
4336
4338
99
105
107
108
115
86
91
93
94
100
66
71
72
73
77
53
56
57
58
62
44
47
48
49
52
5.8” 5838 210 184 147 114 96
6.3” 6324
6338
150
246
134
220
107
176
83
136
70
115
6.4” 6424
6438
157
258
140
230
112
184
83
136
74
122
7.8” 7824
7838
242
396
210
344
166
273
132
216
110
180
8” 8038
8040
8238
8240
8338
8340
414
414
441
441
450
450
368
368
384
384
400
400
287
287
302
302
311
311
225
225
238
238
245
245
189
189
201
201
207
207
9" 9838 N/A 564 440 351 296
10” 10338 N/A 620 492 386 326

 

TECHNICAL NOTES

For element sizes not listed, please call or email Synder Filtration for details. We can design an element to fit your exact needs – just specify the element outer diameter (OD) or vessel/housing inner diameter (ID), element inner diameter (ID), and length. Elements are available with or without a controlled bypass tail. Trials should be conducted to determine optimal application conditions.

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