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TriSep Flat Sheet Membrane, ACM4, PA, RO, CF016, 5/Pk

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1120975
TriSep
ACM4
Polyamide-TFC
CF016
5
5-7 days

Specifications

RO Flat-Sheet Performance Comparison by Manufacturer:

Go To: FilmTec | Veolia | Toray | TriSep

FilmTec™


Series

BW30XFRLE

BW30XFRLE

CR100

CR100

SEAMAXX

SEAMAXX

SW30HRLE

SW30HRLE

SW30XFR

SW30XFR

Feed Industrial/Wastewater Chemical/Petrochemical/Steel Seawater/Brackish Water Seawater Seawater
Type Low Energy Low Energy Low Energy/High Recovery High Rejection/Low Recovery Low Energy/High Recovery
pH Range (25°C) 1-13 1-13 1-13 1-13 1-13
Flux (gfd)/psi 28.8/150 28.8/225 38.6/600 18.1/800 18.5/800
Rejection 99.3% 99.7% NaCI 99.47% NaCI 99.75% NaCI 99.82% NaCI
Pore size/ MWCO N/A N/A N/A N/A N/A
Polymer Polyamide-TFC Polyamide-TFC Polyamide-TFC Polyamide-TFC Polyamide-TFC

 

Veolia


 

Series

AG

AP

AG

AG

AK

AK

SE

SE

Feed Brackish Water Brackish Water Brackish Water Industrial/Wastewater
Type Thin-film membrane (TFM*) Reactive Silica Removal Low Energy Chlorine Resistant, High Pressure
pH Range (25°C) Optimum rejection: 7.0-7.5, 
Continuous operation 2.0-11.0
1-11 1-11 1-11
Flux (gfd)/psi 10-20GFD 26/225 26/115 22/425
Rejection 95% 95.5% 99.0% 98.9%
Pore size/ MWCO N/A N/A N/A N/A
Polymer Polyamide-TFC Polyamide-TFC Polyamide-TFC Polyamide-TFC

 

Toray™


 

Series

73HA

73HA

73AC

73AC

73UAC

73UAC

82V

82V

Feed Brackish Water Brackish Water Brackish Water Seawater
Type Extra-Low Energy High Rejection, Low Energy, Cl Resistant High Rejection, Low Energy High Rejection, Low Energy
pH Range (25°C) 2-11 2-11 2-11 2-11
Flux (gfd)/psi 23.3/73 30.7/225 29-40/150 27/798
Rejection 99.0% 99.8% 99.5-99.7% 99.7%
Pore size/ MWCO N/A N/A N/A N/A
Polymer Polyamide-TFC Polyamide-TFC Polyamide-TFC Polyamide-TFC

 

TriSep™


 

Series

ACM1

ACM1

ACM2

ACM2

ACM3

ACM3

ACM4

ACM4

SB50

SB50

X201

X201

Feed Brackish Water Brackish Water Brackish Water Brackish Water Industrial/Wastewater Industrial/Wastewater
Type "Tight" Standard Low Pressure Low Pressure, High Flux Cl Resistant Fouling Resistant
pH Range (25°C) 2-11 2-11 2-11 2-11 4-7 2-11
Flux (gfd)/psi 25/225 30/225 35/225 30/150 30/420 30/225
Rejection Values 99.5% 99.5% 99.3% 99.2% 95.0% (99.0% MgSO4) 99.5%
Pore size/ MWCO N/A N/A N/A N/A N/A N/A
Polymer Polyamide-TFC Polyamide-TFC Polyamide-TFC Polyamide-TFC Cellulose Acetate Polyamide-urea-TFC

 

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Frequently Asked Questions

Yes—flat sheet membranes can be cut to fit your stirred cell. For best results, use the stirred cell support disk as a template to trace the correct size, then cut the membrane carefully to match.

Yes, we can supply the flat sheet membranes in the correct disk size for your stirred cell. Please contact us at [email protected] for pricing and availability.

Used flat sheet crossflow membranes must be stored wet at all times. If a membrane is allowed to dry out, it can irreversibly lose water permeability and performance.

For storage, place the membrane fully submerged in one of the following solutions:
0.5% formaldehyde solution (helps prevent microbial growth)
1.0% sodium metabisulfite (SMBS) solution -- Replace the SMBS solution monthly to maintain effectiveness

UPDI water (ultrapure deionized water)--Replace the water weekly to reduce contamination and biofouling

Yes, we are able to offer some of the flat sheet membranes as roll stock. Please contact us at [email protected] to inquire about pricing and availability.

Flow characteristics for a spiral element and flat sheet membrane are significantly different and are really only comparable on a qualitative basis. Variability in the membrane manufacturing process, differences in water composition, test procedures, and test equipment, used in a factory, laboratory, or elsewhere, will impact water flux results.

Reference: Understanding Variation of Experimental Flux and Rejection

We do not offer complimentary samples of the flat sheet crossflow membranes. However, most customers find the standard pack quantities to be quite reasonable for initial evaluations. For customers that want to evaluate several different membranes, we do offer custom variety packs. And, in some instances, we may be able to offer custom packs containing smaller sheet quantities. Please contact us to inquire about pricing and availability.

Sterlitech flat sheet crossflow membranes should be stored sealed in the original packaging in a climate-controlled environment, protected from direct light, heat, and temperature extremes. While we recommend using membranes as soon as practical after receipt, most flat sheet membranes can typically be stored for up to one (1) year without affecting performance when stored properly.

Some manufacturers supply their membrane in wet to prevent the membrane from going dry. There is always moisture in these sealed bags and it is not uncommon for some condensation (droplets) to form.
Rinsing the membrane on both sides with a stream of clean water is sufficient to remove the preservative solution. There is no need to pre-condition.
Yes, you need to pre-wet the membranes. The best procedure is to place them in a dry holder and allow them to wet from the inlet side first. It may be best to perform this operation with water or a buffer, then dispose of the first rinse, and introduce the process fluid. This prevents any wetting agents or preservatives from mixing with the process solution.
Yes, you may attempt to reuse flat sheet membranes. However, you may find it difficult to achieve a leak free seal. The cell body o-rings necessarily compress the membrane during installation and the physical action of separating the membrane from the o-rings during removal may cause damage. This damage can impede that ability to achieve a leak free seal when the membrane is reused.
Unfortunately, allowing a previously wetted crossflow membrane to dry usually results in permanent reduction of water permeability. Nevertheless, you can attempt to re-wet the membrane and use it. First, soak the membrane in a 50% alcohol solution for at least 15min (ethanol, methanol, or IPA would be acceptable). Next, install the membrane in the test cell and operate the cell with purified deionized water as though you were pre-conditioning the membrane. After about 30min, the permeate flux should stabilize to whatever rate the membrane is now capable of.
Determining which solution to use to clean a flat sheet membrane depends on the substance it is fouled with. As a general rule, you can use a caustic or oxidant solution for organic fouling and an acidic solution for inorganic causes. Please remember that different membranes polymers have different pH tolerances.
Yes, for flat sheet membranes that will be used with water or aqueous solutions, we recommend that you pre-condition the membranes prior to conducting your separation experiments. Pre-conditioning helps ensure that the membranes perform as expected. Also, pre-conditioning removes preservatives and other residuals from the membranes. Purified deionized water is used to pre-condition the membranes. For all flat sheet membranes except the forward osmosis (FO) membranes, install the membrane in the test cell and apply the purified deionized water feed at the normal operating rate and pressure for the membrane. Allow the system to operate with the purified deionized water feed until the permeate flux stabilizes at an expected value. You can now replace the purified deionized water feed with your feed solution and begin your experiments.
Most membrane manufacturers recommend CFVs of 5 to 35cm/s for their spiral wound membrane elements. The flat sheet membranes can be operated in this range to simulate use in such elements. Additionally, the flat sheet membranes may be operated outside of this range by users that want to examine the relationship between CVF and fouling and membrane performance in their applications.
Cross flow velocity (CFV) is the linear velocity of the feed flow tangential to the membrane surface and is typically reported in m/sec or ft/sec. It is calculated by dividing the volumetric flow rate through the feed channel by the cross-sectional area of the feed channel. Please refer to the CFV article at Tech Tips for more information.
The recommended TMP will depend on the type of flat sheet membrane and on the application. Typically, a reasonable TMP will be the same as that noted for the permeate flux specification of the membrane. The specifications for any of the flat sheet membranes can be easily found on our website by clicking the “application/specification” tab on the product web page and scrolling down as necessary. Please contact us at [email protected] if you need additional assistance.
These membrane sizes are intended for use in the bench-scale crossflow test cells offered by Sterlitech. Please see the list of flat sheet membranes we offer and their dimensions: HP4750 Stirred Cell: 47 mm (1.85") discs, CF016 cell: 58 x 75 mm (2.26 x 2.95") coupons, CF042 cell: 56 x 115 mm (2.20 x 4.53") coupons, Sepa CF cell: 140 x 190 mm (5.51 x 7.48") coupons, CF047 circular cell: 47 mm discs, CF090 circular cell: 90 mm discs

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