Nothing Special   »   [go: up one dir, main page]

Amberlite™ Hpr2800 H Ion Exchange Resin: Product Data Sheet

Download as pdf or txt
Download as pdf or txt
You are on page 1of 4

Product Data Sheet

AmberLite™ HPR2800 H Ion Exchange Resin


Uniform Particle Size, Macroporous, Strong Acid Cation Exchange Resin for
Condensate Polishing for the Power Industry and Industrial Demineralization
Applications

Description AmberLite™ HPR2800 H Ion Exchange Resin is a high-quality


resin for use in condensate polishing beds at fossil-fired electric
generating stations, process condensate, and industrial
demineralization applications when a combination of exceptional
physical stability, simple and reliable operation, and long resin
life is required.

AmberLite™ HPR2800 H is compatible with all system


technologies and bed configurations. In mixed bed applications, the dark color of this
cation resin is designed to allow easy visual distinction from the light-colored anion resin
following backwash separation. For maximum resistance to surface fouling, this
macroporous cation resin should be paired with a macroporous anion resin such as
AmberLite™ HPR900 OH Ion Exchange Resin or AmberLite™ HPR9000 OH Ion
Exchange Resin.

AmberLite™ HPR8300 H Ion Exchange Resin is the weak acid cation resin best paired
with AmberLite™ HPR2800 H for optimal performance in new and retrofitted layered
beds.

AmberLite™ HPR2800 H is compliant with the China National Standard specifications


for fossil power condensate polishing applications, including the China Strong Osmotic
Ball Mill test.

Resin Pairings Recommended pairing in condensate polishing:


l AmberLite™ HPR900 OH Ion Exchange Resin (macroporous)

Recommended pairing in industrial demineralization applications:


l AmberLite™ HPR8300 H Ion Exchange Resin (macroporous) – for layered bed

l AmberLite™ HPR9000 OH Ion Exchange Resin (macroporous) – for mixed bed

l AmberLite™ HPR900 OH Ion Exchange Resin (macroporous) – for mixed bed

Additional options in condensate polishing:


l AmberLite™ HPR9000 OH Ion Exchange Resin (macroporous)

l AmberLite™ HPR9000 SO4 Ion Exchange Resin (macroporous)

l AmberLite™ HPR900 SO4 Ion Exchange Resin (macroporous)

Additional pairing in industrial demineralization applications:


l AmberLite™ HPR9200 Cl Ion Exchange Resin (macroporous) – for mixed bed

Page 1 of 4 Form No. 45-D01197-en, Rev. 1


December 2019
Applications l Systems requiring exceptionally high osmotic stability
l Condensate polishing
l Demineralization, ideally when treating water with:
– High oxidant level
– High temperature on the cation resin
l Mixed bed polishing

System Designs Compatible with all system technologies and bed configurations
l Co-current

l Counter-current / Hold-down

l Layered beds

l Packed beds

l Mixed beds

Historical AmberLite™ HPR2800 H Ion Exchange Resin has previously been sold as


Reference AMBERJET™ 2800 H Ion Exchange Resin.

Typical Properties Physical Properties


Copolymer Styrene-divinylbenzene
Matrix Macroporous
Type Strong acid cation
Functional Group Sulfonic acid
Physical Form Dark brown, opaque, spherical beads
Chemical Properties
Ionic Form as Shipped H+
Total Exchange Capacity ≥ 1.70 eq/L (H+ form)
Water Retention Capacity 52.0 – 58.0% (H+ form)
Ionic Conversion
H+ ≥ 99%
Particle Size §
Particle Diameter 800 ± 100 µm
Uniformity Coefficient ≤ 1.20
< 300 µm ≤ 0.2%
< 500 µm ≤ 1.0%
> 1180 µm ≤ 1.0%
Stability
Whole Uncracked Beads ≥ 95%
Strong Osmotic Ball Mill Test ≥ 90%
Swelling Na+ → H+ : 7%
Density
Particle Density 1.19 g/mL
Shipping Weight 755 g/L
§
For additional particle size information, please refer to the Particle Size Distribution Cross Reference Chart
(Form No. 45-D00954-en).

Page 2 of 4 Form No. 45-D01197-en, Rev. 1


December 2019
Suggested Temperature Range (H+ form) 5 – 150°C (41 – 302°F)
pH Range (Stable) 0 – 14
Operating
Conditions
For additional information regarding recommended minimum bed depth, operating
conditions, and regeneration conditions for mixed beds (Form No. 45-D01127-en) or
separate beds (Form No. 45-D01131-en) in water treatment, please refer to our Tech
Facts.

Hydraulic Estimated bed expansion of AmberLite™ HPR2800 H Ion Exchange Resin as a function


Characteristics of backwash flowrate and temperature is shown in Figure 1.

Estimated pressure drop for AmberLite™ HPR2800 H as a function of service flowrate


and temperature is shown in Figure 2. These pressure drop expectations are valid at the
start of the service run with clean water.

Figure 1: Backwash Expansion Figure 2: Pressure Drop


Temperature = 10 – 60°C (50 – 140°F) Temperature = 10 – 60°C (50 – 140°F)

Product DuPont has a fundamental concern for all who make, distribute, and use its products, and
Stewardship for the environment in which we live. This concern is the basis for our product stewardship
philosophy by which we assess the safety, health, and environmental information on our
products and then take appropriate steps to protect employee and public health and our
environment. The success of our product stewardship program rests with each and every
individual involved with DuPont products—from the initial concept and research, to
manufacture, use, sale, disposal, and recycle of each product.

Page 3 of 4 Form No. 45-D01197-en, Rev. 1


December 2019
Customer Notice DuPont strongly encourages its customers to review both their manufacturing processes
and their applications of DuPont products from the standpoint of human health and
environmental quality to ensure that DuPont products are not used in ways for which they
are not intended or tested. DuPont personnel are available to answer your questions and to
provide reasonable technical support. DuPont product literature, including safety data
sheets, should be consulted prior to use of DuPont products. Current safety data sheets are
available from DuPont.

Please be aware of the following:


l WARNING: Oxidizing agents such as nitric acid attack organic ion exchange resins

under certain conditions. This could lead to anything from slight resin degradation
to a violent exothermic reaction (explosion). Before using strong oxidizing agents,
consult sources knowledgeable in handling such materials.

Have a question? Contact us at: All information set forth herein is for informational purposes only. This information is general information and may differ from that based
on actual conditions. Customer is responsible for determining whether products and the information in this document are appropriate for
www.dupont.com/water/contact-us
Customer's use and for ensuring that Customer's workplace and disposal practices are in compliance with applicable laws and other
government enactments. The product shown in this literature may not be available for sale and/or available in all geographies where
DuPont is represented. The claims made may not have been approved for use in all countries. Please note that physical properties may
vary depending on certain conditions and while operating conditions stated in this document are intended to lengthen product lifespan
and/or improve product performance, it will ultimately depend on actual circumstances and is in no event a guarantee of achieving any
specific results. DuPont assumes no obligation or liability for the information in this document. References to “DuPont” or the “Company”
mean the DuPont legal entity selling the products to Customer unless otherwise expressly noted. NO WARRANTIES ARE GIVEN; ALL
IMPLIED WARRANTIES OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE ARE EXPRESSLY EXCLUDED. No
freedom from infringement of any patent or trademark owned by DuPont or others is to be inferred.

© 2019 DuPont. DuPont™, the DuPont Oval Logo, and all trademarks and service marks denoted with ™, ℠ or ® are owned by
affiliates of DuPont de Nemours Inc., unless otherwise noted.

Page 4 of 4 Form No. 45-D01197-en, Rev. 1


December 2019

You might also like