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Graphite Furnace Atomic Absorption Spectroscopy Machine In Lithium Ore Analysis

Graphite Furnace Atomic Absorption Spectroscopy Machine In Lithium Ore Analysis

220V Atomic Absorption Spectroscopy Machine

Graphite Furnace Atomic Absorption Spectrophotometer

Wayeal Atomic Absorption Spectroscopy Machine

Place of Origin:

Anhui, China

Brand Name:

Wayeal

Certification:

ISO

Model Number:

AA2300

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Product Details
Product Name:
Atomic Absorption Spectroscopy Machine
Models:
AA2300
Wavelength Range(nm):
185-900nm
Wavelength Indication Error(mm):
±0.15nm
Wavelength Repeatability:
≤0.05nm
Linearity:
>0.999
Highlight:

220V Atomic Absorption Spectroscopy Machine

,

Graphite Furnace Atomic Absorption Spectrophotometer

,

Wayeal Atomic Absorption Spectroscopy Machine

Payment & Shipping Terms
Minimum Order Quantity
1
Price
Negotiation
Packaging Details
Wooden Case
Delivery Time
30 days
Supply Ability
30 Pieces Per Month
Product Description

Wayeal 220V Graphite Furnace AAS Laboratory Atomic Absorption Spectroscopy Machine in Lithium Ore Analysis
 
Introduction of Atomic Absorption Spectrophotometer
Atomic absorption spectroscopy, or AAS, is a technique for measuring the concentrations of metallic elements in different materials. As an analytical technique, it uses electromagnetic wavelengths, coming from a light source. Distinct elements will absorb these wavelengths differently. It gives a picture of what concentrations of a specific element there is in whatever material, or liquid, is being tested.

Technical Parameters of Atomic Absorption Spectrophotometer AA2300

185-910nm AAS-Atomic Absorption Spectrometer for Precise Measurements

Technical Parameters

Value

Atomization Source Flame, Graphite Furnace, Electrothermal
Injection Position 108 positions
Wavelength Range 185-910nm
Power Supply AC220V, 50Hz
Background Correction D2 Background Correction
Name Atomic Absorption Spectrophotometer
Weight 280kgs
Spectral Bandwidth 0.1, 0.2, 0.4, 1.0, 2.0nm
Data Storage USB, PC
Light Source Halogens, Deuterium, Tungsten
Optical System  
Wavelength Error ±0.15nm
Wavelength Repeatability ≤0.05nm
Flame Atomizer  
Detection Limit (LOD) Cu by flame method:≤0.002ug/mL
Repeatability RSD≤0.25%
Burning Head Full titanium
Graphite Furnace Atomizer  
Detection Limit (Cd) ≤0.3pg
Repeatability RSD≤1.5%
Autosampler  
Linearity >0.999
Injection Volume 1~200μL
Injection Volume Repeatability ≤0.1%
Repeatability of Results ≤1.5%

 
Features of Atomic Absorption Spectrophotometer AA2300

1. Spectral bandwidth: Five spectral bandwidths of 0.1, 0.2, 0.4, 1.0, and 2.0nm are automatically selectable
2. Photometer: High luminous flux total reflection dual-beam spectroscopic system, single beam/double beam automatic switching at will
3. Turning lamp holder: Automatic switching lamp holder with eight lamp positions, automatic alignment, and eight lamps can be preheated and lit at the same time.
4. Spray chamber: explosion-proof and corrosion-resistant material spray chamber.

 
Applications of Atomic Absorption Spectrophotometer

Mining and Geology – The elemental composition of minerals and rocks provide valuable information on the commercial feasibility of conducting mining activities in areas explored. After mining, the ores and minerals need to be tested for composition for the efficiency of refining operations. Similarly, trace metal analysis is of great value in prospecting for oil and water deposits.

Environmental Monitoring – Environmental monitoring for trace metal contamination of industrial effluents, oceans, rivers and lakes is important for establishing the safety of water for drinking and commercial use. It is important to establish if such samples are within the safety limits set by regulatory bodies. Environmental monitoring also plays a significant role in the evaluation and feasibility of the site for setting up commercial projects.

Materials Development – Common properties of materials such as hardness, brittleness, grain size, crystallinity and amorphous nature are significantly influenced by composition and trace metals. Trace metal analysis can provide useful information on the performance properties of such materials.

Pharmaceuticals – Trace metal analysis plays an important role in formulation development, catalyst efficiency and dosage limits. Most elements have a beneficial role up to certain prescribed limits but beyond such limits the effects are harmful.

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