Sterlitech CF016P-FO Supplement

CF016P-FO CELL
ASSEMBLY & OPERATION
MANUAL


1. INTRODUCTION ........................................................................................ 1
2. CF016P-FO CELL COMPONENTS ........................................................ 1
3. CF016P-FO CELL ASSEMBLY ................................................................ 2
4. CF016P-FO CELL CONNECTIONS AND PARTS ................................4
5. OPERATION OF THE CF016P-FO CELL ............................................. 5
6. SUPPLEMENTARY OPERATING INFORMATION .............................. 6
7. ACCESSORY AND SPARE PART ORDERING INFORMATION...........7
8. RETURN MATERIAL AUTHORIZATION................................................ 8
9. WARRANTY .............................................................................................. 8
10. TECHNICAL ASSISTANCE.................................................................... 8
APPENDIX 1: CF016P-FO APPLICATIONS............................................... 9
APPENDIX 2: BENCH SCALE FILTRATION PRODUCTS......................10
CONTENTS

1. INTRODUCTION
The CF016P-FO Cell is a laboratory-scale filtration unit that is designed to evaluate a
variety of engineered osmosis processes, including Forward Osmosis (FO), and Pressure
Retarded Osmosis (PRO). It simulates the flow dynamics of larger, commercially available
membrane elements such as industrial spiral wound membrane elements. Users can vary
the operating conditions and fluid dynamics over broad ranges.
Table 1 outlines the operational parameters and technical specifications of the CF016P-FO
Cell. Prior to operating or servicing this device, this manual must be read and understood.
Table 1: CF016P-FO Features and Technical Specification
Parameter Description
Membrane Active Area 20.6 cm² (3.2-inch²)
Hold up Volume 13 ml (0.44 oz)
CF016P-FO PTFE
Maximum Pressure 27.6 bar (400 psig)
Maximum Temperature 260 °C (500 °F)
O-rings Viton* (Other materials available)
pH Range Membrane Dependent
Cross Flow Velocity Variable
Dimensions
Slot Depth 2.28 mm (0.09 inches)
Slot Width 39 mm (1.54 inches)
2. CF016P-FO CELL COMPONENTS
The cell body consists of the tightening screws, cell top, membrane filter, O-rings, and cell
bottom. Figure 1 (see page 2) illustrates a typical assembly of the CF016P-FO. The CF016P-
FO is also packaged with a length of permeate tubing and membrane cutting template.
Sterlitech Corporation | CF016P-FO Cell Manual
1
2.1 ADDITIONAL EQUIPMENT
The CF016P-FO cell also requires additional equipment to operate that are sold
separately:
• Feed Pump
• Feed Tank
• Draw Solution Pump
• Draw Solution Tank
• Filtration membrane packs

CF016P-FO Cell Manual | Sterlitech Corporation 2
Figure 1: CF016P-FO Cell Body Assembly
Legend:
1. Tightening Knobs
2. Top Plate
3. Cell Top
4. O-Rings
5. Cell Bottom
6. Bottom Plate
3
1
2
3. CF016P-FO CELL ASSEMBLY
4
5
6

Sterlitech Corporation | CF016P-FO Cell Manual
3
After verifying that all of the necessary components were shipped and present, you can
begin the assembly of the cell.
To assemble the CF016P-FO Cell:
1. Wet the O-rings with a small amount of water or the fluid to be processed and install
them into the grooves on the cell bottom.
Caution: Make sure that the O-rings lie flat in the grooves of the cell bottom. Leaking may
occur if the O-rings do not lie flat in the grooves. The O-rings will be cut or crushed when
the system is operating if the O-rings are not installed correctly.
2. Place a piece of pre-cut membrane on to the cell bottom using the two alignment pins
to hold the membrane in position. The membrane should be installed with the shiny
or active side down facing the feed solution (bottom) in an FO process and facing the
draw solution (top) in a PRO process.
Note: If you are cutting your own membranes, the membrane’s outer edge should fit
between the inner and outer O-rings in the cell body to prevent leakage.
3. Place the cell top plate by aligning the two pins on the sides of the cell.
4. Secure the cell top by inserting and tightening the provided tightening knobs into each
of the corner holes.
The CF016P-FO Cell is now assembled and ready to be connected to a feed pump for
operation.

CF016P-FO Cell Manual | Sterlitech Corporation 4
4. CF016P-FO CELL CONNECTIONS AND PARTS
Figure 2: Example CF016P-FO Flow Diagram
86
3
4
10
75
9
2
1
A
A
A
A
11
A
11
B
11
CF016P/ CF016D FO FLOW DIAGRAM
Item No.
Part Description
1
Feed Tank
2
Feed Pump
3
Draw Solution Tank
4
Draw Solution Pump
5
Concentrate Pressure Control Valve
6
Draw Solution Pressure Control Valve
7
Concentrate Pressure Gauge
8
Draw Solution Pressure Gauge
9
Concentrate Flow Meter
10
Draw Solution Flow Meter
11
CF016-FO Cell Assembly
A
3/8" Low Pressure Tubing

Sterlitech Corporation | CF016P-FO Cell Manual
5
Figure 2 shows typical plumbing connections that need to be made for the operation of
the CF016P-FO Cell; the configuration can change slightly depending on the objectives of
the user. In general, the connections to be made are:
1. Feed tank to the feed pump
2. Pump outlet to the feed inlet of the cell body
3. Feed outlet of the cell body to the concentrate collection tank/feed tank
4. Draw solution tank to the draw solution pump
5. Draw solution pump outlet to the draw solution inlet of the cell body
6. Draw solution outlet of the cell body to the draw solution collection/draw tank
Figure 2 also lists the additional components that are necessary to operate the CF016P-
FO cell. These components are sold separately and can be found in the Membrane/
Process Development section of the Sterlitech website (http://www.sterlitech.com/
membrane-processdevelopment.html). The final assembly of the forward osmosis system
will vary with the feed vessels, pumps, and tubing used.
5. OPERATION OF THE CF016P-FO CELL
Once the CF016P-FO Cell has been assembled and connected to a feed system, it can
be used in variety of applications that includes forward osmosis and pressure retarded
osmosis.
To operate the CF016P-FO Cell:
1. Open all of the valves in the system to relieve any pressure build-up before turning on
the feed pump.
2. Turn the feed and draw solution pump on.
3. Adjust the control valves (sold separately) to obtain the desired pressure and flow for
feed and draw solution.
Note: Experimentation enables you to determine the optimum settings for pressure, flow
rate, and shim/spacer combination to use on the chosen membrane and the fluid being
processed.
4. Once the experiment is complete, shut down the system by turning the feed and draw
solution pumps o and opening all of the valves to relieve any pressure build up.

CF016P-FO Cell Manual | Sterlitech Corporation 6
To replace a membrane filter:
1. Turn the feed and draw solution pump OFF.
2. Open all of the valves in the system to relieve any pressure build up.
3. Loosen the screws in the cell top.
4. Separate the cell body top from the cell bottom.
5. Remove the membrane.
6. Install the new membrane.
7. Reassemble the cell top and bottom.
8. Secure the cell top to the cell bottom using the tightening knobs.
9. Turn the feed and draw solution pump on.
6. SUPPLEMENTARY OPERATING INFORMATION
The membranes, feed spacer, permeate, O-rings, and cell body materials construction
dictate the maximum operating temperatures.
6.2 TEMPERATURE LIMITS
Table 2: Upper Temperature Limits
Component Maximum Temperature
CF016P-FO Cell 260 °C (500 °F)
Membrane Elements Variable
O-rings
Viton 200° C (400° F)
EPDM 150° C (300° F)
Buna-N 121° C (250° F)
6.1 MEMBRANE PERFORMANCE
Parameters such as viscosity, pressure, and suspended solids may also aect
performance/operation. Experimentation with the CF016P-FO Cell can help predict the
best operating parameters. If your pump is delivering too much flow, a portion of the flow
can be diverted back to the feed container before entering the feed inlet of the cell body.
This requires installation of an optional bypass valve and fitting on the pump outlet, which
is not supplied with the system.

Sterlitech Corporation | CF016P-FO Cell Manual
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7. ACCESSORY AND SPARE PART ORDERING INFORMATION
Accessories and spare parts for the CF016P-FO Cell can be ordered by calling Sterlitech
Corporation at 1-877-544-4420 or by visiting www.sterlitech.com.
Table 3: Accessory and Spare Part Ordering Information
Product Shipping Weight Ordering Number
CF016P-FO Cell,
for operation to 27.6 bar (400 psig) CF016P-FO
Feed Flow Pump Contact Sterlitech Contact Sterlitech
Draw Solution Pump Contact Sterlitech Contact Sterlitech
Accessories
Feed Spacer Assortment Pack 17, 31, 47,
and 65 mil10.5 kg (1 lb) 1142820
CF016 Steel Rule Die 1230116
Stainless Steel Stand 3.1 kg (6.8 lbs) 1230031
Modified Osmosis Insert21230038
Spare Parts
EPDM O-rings 28 g (1 oz) CF-EPDM016
Viton O-rings 28 g (1 oz) CF-Viton016
Buna O-rings 28 g (1 oz) CF-Buna016
Back Pressure Control Valve, 0-400 psi30.9 kg (2 lbs) 1149428
CF016 Filter Support (Sintered Metal) 1230119
Membrane Packs Contact Sterlitech Contact Sterlitech
1 Other sizes are available. Contact Sterlitech Corporation for more information.
2 Modified Osmosis Insert is an accessory (sold separately) that is designed for experiments where
a dierential pressure is applied to the membrane sides, such as in a pressure-retarded osmosis
(PRO) process or an assisted FO.
3Other pressure ranges available.

CF016P-FO Cell Manual | Sterlitech Corporation 8
8. RETURN MATERIAL AUTHORIZATION
9. WARRANTY
10. TECHNICAL ASSISTANCE
If materials are to be returned to Sterlitech for repair, evaluation, or warranty consideration,
a Return Material Authorization (RMA) number and form must be obtained from Sterlitech
prior to the return. Contact Sterlitech’s Customer Service Department for these forms.
The form must be completed and returned with the material. Be sure to include a
complete, detailed written reason for the return. Also, include serial numbers, installation
and removal dates, and any other pertinent information that is available. CF016P-FO Cells
have a serial number imprinted on the cell bottom.
Indicate the proposed disposition of the material, and reference the RMA number on all
packages or cartons. All material must be shipped to Sterlitech with freight prepared by
the customer.
The following is made in lieu of all other warranties expressed or implied. Sterlitech
Corporation guarantees equipment to be free from defects in material and workmanship
when operated in accordance with written instructions for a period of one year from
receipt. Parts not manufactured by Sterlitech are covered by their manufacturer’s
warranties, which are normally for one year.
Manufacturers and Seller’s only obligation shall be to issue credit against the purchase
or replacement of equipment proved to be defective in material or workmanship. Neither
manufacturer nor seller shall be liable for any injury, loss or damage, direct or indirect,
special or consequential, arising out of the use of, misuse, or the inability to use such
product.
The information contained herein is based on technical data and tests, which we believe
to be reliable, and is intended for use by persons having technical skill at their discretion
and risk. Since conditions of use are outside Sterlitech’s control, we can assume no
liability whatsoever for results obtained or damages incurred through the application of the
data presented.
This information is not intended as a license to operate under, or a recommendation to
infringe upon, any patent of Sterlitech or others covering any material or use.
The foregoing may not be altered except by a written agreement signed by ocers of the
manufacturer.
Please contact us if you have any questions or technical inquiries about our products by
calling Sterlitech Corporation at 1-877-544-4420 or by visiting www.sterlitech.com.

Sterlitech Corporation | CF016P-FO Cell Manual
9
APPLICATION STUDY CITATION
Forward Osmosis and Low
Pressure Reverse Osmosis
Yangali-Quintanilla, Victor, Zhenyu Li, et al. “Indirect desalination
of Red Sea water with forward osmosis and low pressure reverse
osmosis for water reuse.”Desalination. 280. (2011): 160-166.
Ultrafiltration
(Food Processing)
Post, Antonie, Hanna Sampels, et al. “A comparison of micellar
casein and β-casein as sources of basic peptides through
tryptic hydrolysis and their enrichment using two-stage
ultrafiltration.”International Journal of Dairy Technology. 65.4 (2012):
482-489.
Ultrafiltration and
Nanofiltration
(Protein Production)
Ranamukhaarachi, Sahan, Lena Meissner, et al. “Production of
antioxidant soy protein hydrolysates by sequential ultrafiltration and
nanofiltration.”Journal of Membrane Science. 429. (2013): 81-87.
Membrane Development Qadir, Ahmad. Development of new membranes for desalination
pre-treatment. MA thesis. University of Illinois at Urbana-
Champaign, 2011. Web. <https://www.ideals.illinois.edu/
handle/2142/26369>.
APPENDIX 1: CF016D-FO CELL APPLICATIONS
The following studies utilized the CF042 Cell in their method and are listed here to
illustrate the potential applications for the CF016-FO. These studies are good references
for understanding the operation of the CF016P-FO Cell.

CF016P-FO Cell Manual | Sterlitech Corporation 10
APPENDIX 2: STERLITECH BENCH SCALE FILTRATION PRODUCTS
Discoverer Innovator Explorer Developer Investigator
Filter Holder
HP4750(X) CF016 CF042 Sepa 1812
Membrane Active
Area
14.6 cm2(2.26 in2) 20.6 cm2(3.2 in2) 42 cm2(6.5 in2)140 cm2(24 in2)0.27-0.46 m2(3-5 ft2)
Typical Permeate
Flux
30-300 LMH
(17.6-176 GFD)
30-300 LMH
(17.6-176 GFD)
30-300 LMH
(17.6-176 GFD)
30-300 LMH
(17.6-176 GFD)
30-300 LMH
(17.6-176 GFD)
Typical Permeate
Flow Rate
(per Cell)
1.5-15 mL/min 1-10 mL/min 2-20 mL/min 7-70 mL/min 350-2,300 mL/min
System Capacity
0.7-7 L/day
(0.2-2 GPD)
1.5-15 L/day
(0.4-4 GPD)
3-30 L/day
(0.5-5 GPD)
10-100 L/day
(2.6-26 GPD)
194-1,940 L/day
(51-510 GPD)
Min. Batch Volume
(per Cell)
300 mL 3.7 L (1 gal) 3.7 L (1 gal) 3.7 L (1 gal) 15 L (4 gal)
Max. Pump
Capacity
N/A 6.8 LPM (76 bar)
1.8 GPM (1,100 psi)
6.8 LPM (76 bar)
1.8 GPM (1,100 psi)
6.8 LPM (76 bar)
1.8 GPM (1,100 psi)
6.8-38 LPM (76 bar)
1.8-10 GPM (1,100 psi
)
Cell Material
SS316, HastelloyTM PTFE, Delrin, Acrylic,
SS316, HastelloyTM
PTFE, Delrin, Acrylic,
SS316, HastelloyTM
Acrylic, SS316
HastelloyTM SS316
Max. Operating
Pressure
HP4750: 69 bar (1,000 psi)
HP4750X: 172 bar (2,500 psi)
PTFE/Acrylic: 27.6 bar (400 psi)
Delrin/SS316/HastelloyTM:
69 bar (1,000 psi)
PTFE/Acrylic: 27.6 bar (400 psi)
Delrin/SS316/HastelloyTM:
69 bar (1,000 psi)
Acrylic: 27.6 bar (400 psi)
SS316/HastelloyTM:69 bar
(1,000 psi)
41.4 bar (600 psi)
Filtration Mode(s)
Dead-End Stirred Cell Cross Flow, Forward Osmosis Cross Flow, Forward Osmosis Cross Flow, Forward Osmosis Cross Flow

NOTES:

Founded in 2001 in Kent, WA, Sterlitech Corporation manufactures and markets filtration-
focused laboratory products to a broad spectrum of scientific and industrial sectors. Its
line of flat sheet membranes and tangential flow cells deliver industry-leading performance
and reliable results. Configured for reverse osmosis, nanofiltration, ultrafiltration, and
microfiltration applications, Sterlitech’s bench scale test equipment provides the versatility
required to innovate.
Sterlitech’s comprehensive line of products is supported by the expertise of its technical
specialists who can assist with application-specific product selection, and provide
customized solutions where necessary. Unique problem-solving approaches, flexibility,
and consistent quality have made Sterlitech Corporation a renowned global provider of
filtration products and equipment.
General Corporate Information
Sterlitech Corporation
22027 70th Avenue S
Kent, WA 98032-1911 USA
Tel: 877-544-4420 or 1-253-437-0844
Fax: 1-253-437-0845
Sales Inquiries
Accounts Payable
Accounts Receivable
Press Inquiries

© 2018 Sterlitech Corporation
22027 70th Ave. S
Kent, WA 98032-1911 USA
Phone: (253) 437-0844
Fax: (253) 437-0845
Email: [email protected]
2018.V.1
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