Original: $100.00
-65%$100.00
$35.00The Story
Ion Chromatograph – Quali-IC™ 100 (New)
The Quali-IC™ 100 is a compact, reliable ion chromatograph designed for precise qualitative and quantitative analysis of inorganic anions and cations in aqueous samples. Featuring a high-performance dual-piston pumping system and metal-free flow paths, it provides stable baselines, excellent reproducibility, and dependable analytical performance for routine laboratory testing.
Built for practical use, the Quali-IC™ 100 includes intelligent temperature control, automated post-flushing, and high-sensitivity conductivity detection. Its compact design and straightforward operation make it ideal for environmental, industrial, academic, and quality control laboratories that require consistent, accurate ion analysis without added complexity.
Ion Chromatograph – Quali-IC™ 100 (New) Applications
The Ion Chromatograph – Quali-IC™ 100 is widely used in the following applications:
Environmental Analysis
Measurement of anions and cations in drinking water, wastewater, and surface water for monitoring and compliance purposes.
Industrial Process Monitoring
Analysis of boiler water, cooling water, and chemical production streams to support process control and quality assurance.
Food and Beverage Testing
Determination of ionic content for quality control in food and beverage products.
Pharmaceutical and Chemical Laboratories
Support for raw material testing and formulation verification to ensure product consistency and safety.
Academic and Research Institutions
Routine ion chromatography for educational purposes and applied research projects.
Standards for Ion Chromatography (IC)
The following standards provide validated methods for ion chromatography across water, environmental, food, pharmaceutical, and electronics applications, ensuring accurate, repeatable, and regulatory-compliant analysis.
- ASTM D2036: Standard methods for analyzing anions such as chloride, sulfate, and nitrate in water.
- ASTM D5794: IC determination of inorganic anions in atmospheric deposition samples.
- ASTM D6832: Analysis of anions and cations in water used for power generation and industrial processes.
- ASTM D6919: IC methods for determining anions in water and wastewater.
- ASTM D7359: Trace anion measurement in water using suppressed conductivity IC detection.
- ASTM D7994: Determination of inorganic anions in water using modern IC techniques.
- US EPA 300.0 / 300.1: Measurement of fluoride, chloride, nitrate, nitrite, and sulfate in drinking water and wastewater.
- US EPA 302.0: Determination of perchlorate in environmental water samples.
- US EPA 314.0: Low-level perchlorate detection in drinking water.
- US EPA 321.8: Determination of bromate, bromide, chlorite, and chlorate in drinking water.
- US EPA 332.0: Analysis of perchlorate in drinking water using suppressed conductivity IC.
- US EPA 9056 / 9058: Methods for analyzing inorganic anions in solid waste, soils, and aqueous extracts.
- US EPA 1636: Procedures for measuring inorganic anions in aqueous samples for environmental monitoring.
- US EPA 6860: Determination of inorganic anions and organic acids in water.
- DIN 38409-59: IC procedures for measuring inorganic anions in water and wastewater (European standard).
- EN 17813: IC determination of anions in water for environmental compliance in Europe.
- AOAC 2001.02: Nitrate and nitrite determination in foods using IC.
- AOAC 2012.20: Measurement of inorganic anions in infant formula and nutritional products.
- AOAC 995.13: Determination of chloride, nitrate, and sulfate in foods.
- AOAC 996.04: Analysis of organic acids and inorganic ions in beverages and food products.
- AOAC 997.08: Detection of bromide and bromate in food and beverage matrices.
- AOAC 2000.11: Determination of anions in dairy and processed food products.
- ASTM D8247: Analysis of halogens, sulfur, and fluorine in materials using combustion IC.
- UOP 991: Combustion IC methods for total halogens and sulfur in petroleum products.
- US EPA 1621: Procedures for total organic fluorine, chlorine, and bromine using combustion IC.
- IEC 62321: Analytical methods, including IC, for halogen determination in electrical and electronic materials (RoHS compliance).
- IPC-TM-650 2.3.28: IC methods for measuring ionic contamination on printed circuit boards (PCBs).
Ion Chromatograph – Quali-IC™ 100 (New) Key Features
- High-Performance Dual-Piston Pump: Delivers high-pressure, low-pulsation flow for consistent chromatographic performance.
- Wide Flow Rate Range: Adjustable from 0.001 to 12 mL/min, providing flexibility for different column sizes and analytical methods.
- Metal-Free PEEK Flow Path: Chemically inert design compatible with eluents across pH 0–14, minimizing contamination risk.
- Built-In Peristaltic Pump: Enables automatic post-analysis flushing to maintain system cleanliness and long-term stability.
- 3D Circulating Constant Temperature Control: Achieves thermal stability in under 30 minutes, enhancing baseline stability and analytical accuracy.
- Gas–Liquid Separator: Removes bubbles from the flow path, ensuring a stable detector baseline.
- Intelligent Integrated Workstation: Centralized platform for startup, shutdown, maintenance, and multi-instrument management.
- Self-Regenerating Suppressor Technology: Electrolytic micro-membrane suppressor increases sensitivity while reducing maintenance needs.
Ion Chromatograph – Quali-IC™ 100 (New) Technical Specifications
| Parameter | Specification |
|---|---|
| Model | Quali-IC™ 100 |
| Instrument Type | Ion Chromatograph |
| Flow Path Material | Metal-free PEEK |
| Eluent Compatibility | pH 0–14, aqueous and compatible solvents |
| Pump Type | High-pressure, low-pulse dual-piston tandem pump |
| Maximum Pressure (Pump) | 42 MPa |
| Flow Rate Range | 0.001 – 12 mL/min |
| Flow Stability | ≤ 0.1% |
| Pressure Ripple | ≤ 0.5% |
| Column Heater Temperature Range | Ambient +5 °C to 60 °C |
| Temperature Control Accuracy (Column) | ±0.1 °C |
| Suppressor Type | Self-regenerating electrolytic micro-membrane |
| Suppressor Max Pressure | 6.0 MPa |
| Detection Method | Conductivity detection |
| Detector Cell Volume | ≤ 0.4 μL |
| Detection Range | 0 – 50,000 μS/cm |
| Baseline Noise | ≤ 0.0003 µS/cm |
| Baseline Drift | ≤ 0.001 µS |
| Minimum Detection Limit | Cl⁻ ≤ 0.0001 µg/mL; Li⁺ ≤ 0.0001 µg/mL |
| Linearity | ≥ 0.999 |
| Quantitative Repeatability | ≤ 0.25% |
| Qualitative Repeatability | ≤ 0.1% |
| Power Consumption | 150 W |
| Dimensions (W × D × H) | 310 × 400 × 530 mm |
| Weight | 22 kg |
Description
Ion Chromatograph – Quali-IC™ 100 (New)
The Quali-IC™ 100 is a compact, reliable ion chromatograph designed for precise qualitative and quantitative analysis of inorganic anions and cations in aqueous samples. Featuring a high-performance dual-piston pumping system and metal-free flow paths, it provides stable baselines, excellent reproducibility, and dependable analytical performance for routine laboratory testing.
Built for practical use, the Quali-IC™ 100 includes intelligent temperature control, automated post-flushing, and high-sensitivity conductivity detection. Its compact design and straightforward operation make it ideal for environmental, industrial, academic, and quality control laboratories that require consistent, accurate ion analysis without added complexity.
Ion Chromatograph – Quali-IC™ 100 (New) Applications
The Ion Chromatograph – Quali-IC™ 100 is widely used in the following applications:
Environmental Analysis
Measurement of anions and cations in drinking water, wastewater, and surface water for monitoring and compliance purposes.
Industrial Process Monitoring
Analysis of boiler water, cooling water, and chemical production streams to support process control and quality assurance.
Food and Beverage Testing
Determination of ionic content for quality control in food and beverage products.
Pharmaceutical and Chemical Laboratories
Support for raw material testing and formulation verification to ensure product consistency and safety.
Academic and Research Institutions
Routine ion chromatography for educational purposes and applied research projects.
Standards for Ion Chromatography (IC)
The following standards provide validated methods for ion chromatography across water, environmental, food, pharmaceutical, and electronics applications, ensuring accurate, repeatable, and regulatory-compliant analysis.
- ASTM D2036: Standard methods for analyzing anions such as chloride, sulfate, and nitrate in water.
- ASTM D5794: IC determination of inorganic anions in atmospheric deposition samples.
- ASTM D6832: Analysis of anions and cations in water used for power generation and industrial processes.
- ASTM D6919: IC methods for determining anions in water and wastewater.
- ASTM D7359: Trace anion measurement in water using suppressed conductivity IC detection.
- ASTM D7994: Determination of inorganic anions in water using modern IC techniques.
- US EPA 300.0 / 300.1: Measurement of fluoride, chloride, nitrate, nitrite, and sulfate in drinking water and wastewater.
- US EPA 302.0: Determination of perchlorate in environmental water samples.
- US EPA 314.0: Low-level perchlorate detection in drinking water.
- US EPA 321.8: Determination of bromate, bromide, chlorite, and chlorate in drinking water.
- US EPA 332.0: Analysis of perchlorate in drinking water using suppressed conductivity IC.
- US EPA 9056 / 9058: Methods for analyzing inorganic anions in solid waste, soils, and aqueous extracts.
- US EPA 1636: Procedures for measuring inorganic anions in aqueous samples for environmental monitoring.
- US EPA 6860: Determination of inorganic anions and organic acids in water.
- DIN 38409-59: IC procedures for measuring inorganic anions in water and wastewater (European standard).
- EN 17813: IC determination of anions in water for environmental compliance in Europe.
- AOAC 2001.02: Nitrate and nitrite determination in foods using IC.
- AOAC 2012.20: Measurement of inorganic anions in infant formula and nutritional products.
- AOAC 995.13: Determination of chloride, nitrate, and sulfate in foods.
- AOAC 996.04: Analysis of organic acids and inorganic ions in beverages and food products.
- AOAC 997.08: Detection of bromide and bromate in food and beverage matrices.
- AOAC 2000.11: Determination of anions in dairy and processed food products.
- ASTM D8247: Analysis of halogens, sulfur, and fluorine in materials using combustion IC.
- UOP 991: Combustion IC methods for total halogens and sulfur in petroleum products.
- US EPA 1621: Procedures for total organic fluorine, chlorine, and bromine using combustion IC.
- IEC 62321: Analytical methods, including IC, for halogen determination in electrical and electronic materials (RoHS compliance).
- IPC-TM-650 2.3.28: IC methods for measuring ionic contamination on printed circuit boards (PCBs).
Ion Chromatograph – Quali-IC™ 100 (New) Key Features
- High-Performance Dual-Piston Pump: Delivers high-pressure, low-pulsation flow for consistent chromatographic performance.
- Wide Flow Rate Range: Adjustable from 0.001 to 12 mL/min, providing flexibility for different column sizes and analytical methods.
- Metal-Free PEEK Flow Path: Chemically inert design compatible with eluents across pH 0–14, minimizing contamination risk.
- Built-In Peristaltic Pump: Enables automatic post-analysis flushing to maintain system cleanliness and long-term stability.
- 3D Circulating Constant Temperature Control: Achieves thermal stability in under 30 minutes, enhancing baseline stability and analytical accuracy.
- Gas–Liquid Separator: Removes bubbles from the flow path, ensuring a stable detector baseline.
- Intelligent Integrated Workstation: Centralized platform for startup, shutdown, maintenance, and multi-instrument management.
- Self-Regenerating Suppressor Technology: Electrolytic micro-membrane suppressor increases sensitivity while reducing maintenance needs.
Ion Chromatograph – Quali-IC™ 100 (New) Technical Specifications
| Parameter | Specification |
|---|---|
| Model | Quali-IC™ 100 |
| Instrument Type | Ion Chromatograph |
| Flow Path Material | Metal-free PEEK |
| Eluent Compatibility | pH 0–14, aqueous and compatible solvents |
| Pump Type | High-pressure, low-pulse dual-piston tandem pump |
| Maximum Pressure (Pump) | 42 MPa |
| Flow Rate Range | 0.001 – 12 mL/min |
| Flow Stability | ≤ 0.1% |
| Pressure Ripple | ≤ 0.5% |
| Column Heater Temperature Range | Ambient +5 °C to 60 °C |
| Temperature Control Accuracy (Column) | ±0.1 °C |
| Suppressor Type | Self-regenerating electrolytic micro-membrane |
| Suppressor Max Pressure | 6.0 MPa |
| Detection Method | Conductivity detection |
| Detector Cell Volume | ≤ 0.4 μL |
| Detection Range | 0 – 50,000 μS/cm |
| Baseline Noise | ≤ 0.0003 µS/cm |
| Baseline Drift | ≤ 0.001 µS |
| Minimum Detection Limit | Cl⁻ ≤ 0.0001 µg/mL; Li⁺ ≤ 0.0001 µg/mL |
| Linearity | ≥ 0.999 |
| Quantitative Repeatability | ≤ 0.25% |
| Qualitative Repeatability | ≤ 0.1% |
| Power Consumption | 150 W |
| Dimensions (W × D × H) | 310 × 400 × 530 mm |
| Weight | 22 kg |












