Flame Photometer ADFP-505
Flame Photometer ADFP-505
Flame Photometer ADFP-505
Flame Photometer ADFP-505

Flame Photometer ADFP-505

Flame Photometer ADFP-505 achieves detection limits as low as 0.156 ppm for potassium and 0.184 ppm for sodium. It analyzes 2 elements simultaneously with dual-channel operation. Automatic calibration ensures reproducibility and linear consistency. This system delivers quick performance with results available in ≤8 seconds. Powered by LPG and an external air compressor for stable flame function. Ideal for applications in clinical diagnostics, food quality, agriculture, and petrochemical testing.


Testing Elements K, Na, Li
Channels 3
Display Value Concentration / Flame Intensity
Measuring Range K: 0.15 – 100 ppm
Na: 0.18 – 100 ppm
Li: 0.10 – 30 ppm
Detection Limit K: ≤0.156 ppm
Na: ≤0.184 ppm
Li: ≤0.10 ppm
Linearity Error K: ≤0.195 ppm
Na: ≤0.69 ppm
Li: ≤0.1449 ppm
Display Digital LCD
Response Time ≤ 8 s
Aspiration Rate < 3 mL/min
Stability ≤3% (15 s), ≤5% (6 min)
Reproducibility ≤2%
Calibration Curve Automatic Linear Calibration
Fuel Supply LPG + External Air Compressor
Output USB / Printer Interface
Power Supply AC 220 V ±10%, 50 Hz ±1 Hz, 30 W
Dimensions (L×B×H) 570 × 530 × 400 mm
Net Weight 18 kg
Gross Weight 20 kg
  • Dual channel
  • High precision
  • Ultra sensitivity
  • Rapid response
  • Data stability

The Flame Photometer ADFP-505 is ideal for the precise quantification of sodium and potassium in liquids. It is extensively used in clinical, agricultural, petrochemical, and food quality laboratories.

Flame Photometer ADFP-505
Flame Photometer ADFP-505

Frequently Asked Questions of Flame Photometer ADFP-505

1. What elements can Flame Photometer ADFP-505 measure?

Flame Photometer ADFP-505 is designed for the determination of potassium and sodium. It uses two independent channels for reliable dual-element detection. This allows fast and efficient testing of essential alkali metals. Each channel provides precise readings with ppm-level sensitivity. It is suitable for both research and routine quality control.

2. How sensitive is Flame Photometer ADFP-505?

The detection limits are ?0.156 ppm for potassium and ?0.184 ppm for sodium. This ensures accurate quantification of trace levels in samples. Such high sensitivity benefits food quality and clinical testing. The system provides linear accuracy across its entire range. This makes it suitable for advanced and regulated applications.

3. How fast does Flame Photometer ADFP-505 deliver results?

Flame Photometer ADFP-505 provides results in ?8 seconds after sample aspiration. Its aspiration rate is <3 mL/min for efficient sample handling. This rapid response increases laboratory productivity. It is highly effective for urgent diagnostic and QC testing. Despite speed, reproducibility remains ?2%.

4. What utilities are needed for Flame Photometer ADFP-505 operation?

Flame Photometer ADFP-505 runs on LPG fuel with an external air compressor. This setup guarantees a stable and consistent flame. It requires AC 220 V ±10%, 50 Hz ±1 Hz power input. Optional connectivity includes USB and external printer. This makes installation and integration very convenient.

5. What are the major application areas of Flame Photometer ADFP-505?

Flame Photometer ADFP-505 is widely applied in clinical electrolyte testing. Food labs use it to monitor sodium and potassium levels. It serves agricultural labs for soil and fertilizer studies. Petrochemical labs employ it for alkali metal analysis. Environmental labs benefit from water and wastewater testing.

6. What are the typical applications of a flame photometers?

Flame photometers are commonly used in clinical laboratories to analyze blood serum for electrolyte levels. They are also widely applied in agriculture for soil and fertilizer analysis. In the food industry, they help assess mineral content in products. Environmental monitoring labs use them to check water and waste samples for contamination. Their ease of use and quick results make them ideal for routine elemental analysis.

7. How should samples be prepared for flame photometers?

Samples must be in a liquid form, typically aqueous solutions, and free from particulates or organic solvents that might interfere with the flame. If the sample contains solids, it should be filtered or centrifuged. For accurate measurements, samples are usually diluted to fall within the linear calibration range. Calibration standards with known element concentrations are prepared similarly.

8. What are the limitations of a flame photometer?

Flame photometers have limited elemental detection capabilities, primarily restricted to a few metals. They cannot detect non-metallic elements or transition metals effectively. Interferences from other ions, emission overlap, or matrix effects can affect accuracy. The method requires careful calibration and flame stability for precise results. Also, they are less sensitive compared to techniques like ICP-OES or AAS.

9. Which elements can be measured using a flame photometers?

Flame photometers primarily measure alkali and alkaline earth metals, including sodium (Na), potassium (K), calcium (Ca), and lithium (Li). Some models can also measure barium (Ba) and rubidium (Rb) with proper filters. These elements emit characteristic light when introduced into a flame. The photometer detects this light to determine their concentration.

10. What is a flame photometers and how does it work?

flame photometers are analytical instruments used to detect and measure the concentration of certain metal ions, mainly sodium, potassium, lithium, and calcium, in a solution. It operates on the principle of flame emission spectrometry, where a sample is aspirated into a flame and the emitted light intensity is measured. The emitted light is specific to each element and correlates with its concentration.

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