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IonPac TCC-LP1, TCC-ULP1, and TCC-XLP1 
Product Manual 

Page 4 of 17 

 

 

 

 

 

 

Doc. No. 034973-06 

©2005 DIONEX 

September 2005 

 

 

1.

 

INTRODUCTION 

The IonPac® Trace Cation Concentrator Low Pressure (TCC-LP1, P/N 046027), Ultra Low Pressure (TCC-ULP1, P/N 
063783), and Extremely Low Pressure (TCC-XLP1, P/N 063889) Columns are designed primarily for high purity water 
analysis. The function of the columns is to strip ions from a measured volume of a relatively clean aqueous sample matrix. 
This process “concentrates” the desired analyte species onto the columns leading to a lowering of detection limits by 2-5 
orders of magnitude. The unique advantage of the columns to the analytical chemist is the capability of performing routine 
Low Pressure, Ultra Low Pressure, and Extremely Low Pressure Trace analyses of sample matrix ions at µg/L levels without 
extensive and laborious sample pretreatment. 
 
The TCC-LP1, TCC-ULP1, and TCC-XLP1 columns are packed with a 20 µm styrene/divinylbenzene copolymer that is 
grafted to yield a resin with carboxylate functional groups. Due to its highly cross-linked structure, the resin is solvent 
compatible. The capacity of the TCC-LP1, TCC-ULP1, and TCC-XLP1 is 260 µeq/column with a void volume of 
approximately 250 µL. The physical rigidity of this resin allows the TCC-LP1, TCC-ULP1, and TCC-XLP1 to be used at 
pressures up to 3,000 psi (20.68 MPa). The TCC-LP1, TCC-ULP1, and TCC-XLP1 can be readily converted between the 
acid and the salt form without significant changes in the operating pressure.  
 
The recommended maximum flow rate is 5 mL/min. The back pressure generated by the TCC-LP1 is less than 70 psi (0.48 
MPa) at 1 mL/min, the TCC-ULP1 is less than 45 psi (0.31 MPa) at 1 mL/min, and the TCC-XLP1 is less than 30 psi (0.21 
MPa) at 1 mL/min. The large resin particle size (20 µm) in the TCC-LP1, TCC-ULP1, and TCC-XLP1 makes it possible to 
do manual injections onto the concentrator. Syringes with up to 3 mL capacities can be used to manually push samples 
through the TCC-LP1. It takes approximately 1 minute to manually push 3 mL of sample through the TCC-LP1, TCC-ULP1, 
and TCC-XLP1 columns.  
 
The TCC-LP1, TCC-ULP1, and TCC-XLP1 columns can be used with methanesulfonic acid, sulfuric acid, and hydrochloric 
acid eluents, with or without solvent, to concentrate samples on 5-mm, 4-mm, 3-mm, or 2-mm analytical systems. 
 
This manual assumes that you are familiar with the installation and operation of the DIONEX Ion Chromatograph (IC) and 
the suppressor. If you do not understand the operation of the system, take the time to familiarize yourself with the various 
system components before beginning an analysis. The TCC-LP1, TCC-ULP1, and TCC-XLP1 have 10-32 threaded PEEK 
end fittings for use with ferrule/bolt liquid line fittings. If you find it necessary to install a component with 1/4-28 ports and 
therefore need to obtain or make one or more transition lines between 10-32 and 1/4-28 threaded ThermoFlare ports, 
DIONEX recommends the use of Tefzel® liquid lines with a PEEK ferrule/bolt fitting on one end and a 1/4-28 ThermoFlare 
fitting on the other end. See, “DIONEX Liquid Line Fittings,” for detailed instructions on purchasing or making these lines. 
 
 
 
 
 
 
 
 
 
 

Assistance is available for any problem during the shipment or operation of Dionex instrumentation, columns, and 
consumables through the Dionex North America Technical Call Center at 1-800-DIONEX-0 (1-800-346-6390) or 
through any of the Dionex Offices listed in “Dionex Worldwide Offices” on the Dionex Reference Library CD-ROM. 
 

Содержание IonPac TCC Series

Страница 1: ...IonPac TCC...

Страница 2: ...ptember 2005 PRODUCT MANUAL FOR TRACE CATION CONCENTRATOR TCC TCC LP1 Column Low Pressure 4 x 35 mm P N 063079 TCC ULP1 Column Ultra Low Pressure 5 x 23 mm P N 063783 TCC XLP1 Column Extremely Low Pre...

Страница 3: ...acity 10 4 EXAMPLE APPLICATIONS 13 4 1 Concentration in the Manual Mode 13 4 2 Concentration in the Manual Mode 14 5 TROUBLESHOOTING GUIDE 15 5 1 High Backpressure from a Contaminated Inlet Bed Suppor...

Страница 4: ...throughout this document to emphasize important points The symbols are shown below along with the purpose of the information SAFETY Safety information can help prevent bodily harm WARNING Warning inf...

Страница 5: ...CC ULP1 is less than 45 psi 0 31 MPa at 1 mL min and the TCC XLP1 is less than 30 psi 0 21 MPa at 1 mL min The large resin particle size 20 m in the TCC LP1 TCC ULP1 and TCC XLP1 makes it possible to...

Страница 6: ...ional Group Hydro phobicity TCC LP1 4 mm 20 55 260 eq col Carboxylic Acid Very low TCC ULP1 5 mm 20 55 260 eq col Carboxylic Acid Very low TCC XLP1 6 mm 20 55 260 eq col Carboxylic Acid Very low TABLE...

Страница 7: ...Column Description The IonPac Trace Cation Concentrator Low Pressure TCC LP1 4x35 mm and IonPac Trace Cation Concentrator Ultra Low Pressure TCC ULP1 5x23 mm columns consist of the following component...

Страница 8: ...ugh to ensure good quantification WARNING The flow direction during the concentration step is critical In order to ensure optimal system performance it is recommended that concentration always be perf...

Страница 9: ...IONEX September 2005 Figure 3 shows the configuration for sample loading using a Rheodyne valve FIGURE 3 Configuration for Determining Trace Levels of Cations Figure 4 shows the configuration for samp...

Страница 10: ...o 8 days Recommended storage vessels are Corning tissue culture flasks The following procedure should be used for storage of g L level samples A Rinse the polystyrene container and cap twice with deio...

Страница 11: ...he analytes on the ion exchange sites and result in their elution to waste during the loading process B Conversely qualitative analysis of ions with higher affinities for the resin in the presence of...

Страница 12: ...e rate at which the sample is loaded C The pH of the sample D The ionic strength of the sample E The amount and capacity of resin in the column The breakthrough volume is determined as follows A Prepa...

Страница 13: ...2005 DIONEX September 2005 FIGURE 6 Linearity Determinations for Concentrator Injection Time min that the simulated sample is pumped through the TCC LP1 TCC ULP1 or TCC XLP1 after the single ion injec...

Страница 14: ...thanesulfonic acid Eluent Flow Rate 1 0 mL min Injection Volume 1 0 mL Temperature 35 C SRS Suppressor Cation Self Regenerating Suppressor CSRS ULTRA AutoSuppression Recycle Mode MMS Regenerant 100 mN...

Страница 15: ...n Eluent 10 mM Methanesulfonic acid Eluent Flow Rate 1 0 mL min Injection Volume 1 0 mL SRS Suppressor Cation Self Regenerating Suppressor CSRS ULTRA AutoSuppression Recycle Mode or AES Suppressor Cat...

Страница 16: ...back on to the column Follow the instructions below to change the bed support assembly using one of the two spare bed support assemblies included in the ship kit provided with the column A Disconnect...

Страница 17: ...D Be sure that the eluents are made from chemicals with the recommended purity see Section 3 Operation E Be sure that the deionized water used to prepare the reagents has a specific resistance of 18...

Страница 18: ...he gradient pump Direct the effluent from the TCC LP1 TCC ULP1 or TCC XLP1 directly to a waste container C Set the flow rate to 1 mL min D Pump the 1 M HCl 0 1 M KCl solution through the column for 15...

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