Spectroscopy

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Laboratory water systems must deliver consistent water quality over long periods of use. However, water quality can be affected by feed water condition, consumable life, storage tank design, distribution loop condition, microbial growth, atmospheric contamination, operating practices and maintenance frequency.

This section helps laboratories understand common water quality problems, their possible causes and practical steps that can help maintain reliable purified and ultrapure water system performance.

ICP-OES - High-Purity Water for Inductively Coupled Plasma–Optical Emission Spectroscopy

ICP-OES is widely used for multi-element analysis in pharmaceutical, environmental, chemical, food, mining and industrial laboratories.

The technique measures light emitted by excited atoms and ions in a plasma. Water used for standards, blanks and sample preparation should therefore contribute minimal ionic and metallic contamination.

High-Purity Water for Accurate Elemental Analysis

Poor Water Quality May Cause

  • High blank readings
  • Increased background signal
  • Unexpected elemental contamination
  • Poor detection limits
  • Unstable calibration
  • Inconsistent quality-control results
  • Reduced reproducibility
  • Contamination of standards and samples

 

Recommended Water Quality

Freshly dispensed Type I ultrapure water is generally recommended for:

  • Calibration standards
  • Analytical blanks
  • Sample dilution
  • Acid and reagent dilution
  • Quality-control samples
  • Trace-element analysis
  • Rinsing suitable laboratory ware

The required water quality depends on the elements being analysed and the required detection limits.

Best Practices

Use freshly dispensed water and clean containers suitable for elemental analysis. Avoid storing ultrapure water for long periods, as it may absorb contaminants from the atmosphere or storage vessel.

Water quality should be checked together with the purity of acids, reagents, standards, tubing and laboratory ware. High contamination in a blank may originate from any part of the preparation procedure.

Explore Water Solutions for ICP-OES

ICP-MS - Ultrapure Water for Ultra-Trace Elemental Analysis

Water is not the only cause of chromatography problems, but it should be checked early because it is used in mobile phases, blanks, dilution, rinsing and sample preparation.

Related Products

ICP-MS is one of the most sensitive techniques used for elemental and isotopic analysis. It is capable of detecting many elements at very low concentrations.

Because of this sensitivity, even trace quantities of metals, ions or organic contaminants in water may affect analytical results.

Poor Water Quality May Cause

  • High elemental blanks
  • Increased background signal
  • Poor detection limits
  • Spectral or non-spectral interference
  • Contaminated calibration standards
  • Unidentified trace contamination
  • Signal instability
  • Poor reproducibility
  • Incorrect quantification at low concentrations

 

Recommended Water Quality

Freshly dispensed Type I ultrapure water with very low ionic and trace-metal contamination is recommended for:

  • Calibration standards
  • Method blanks
  • Reagent blanks
  • Sample dilution
  • Acid dilution
  • Digestion blanks
  • Quality-control samples
  • Trace and ultra-trace analytical work

Low and consistent background contamination is particularly important when measuring elements at parts-per-billion or parts-per-trillion levels.

Best Practices

Use water immediately after dispensing and collect it in containers suitable for trace-element analysis.

Avoid unnecessary contact with metallic fittings, unsuitable tubing or general-purpose laboratory containers after the final purification stage.

Water resistivity is an important indicator of ionic purity, but a high resistivity value alone does not confirm the absence of every trace metal. Analytical blanks should therefore be used to verify suitability for the required method.

The quality of acids, standards, containers, gloves, laboratory air and sample-preparation procedures should be controlled along with the water.

Explore Water Solutions for ICP-MS

Atomic Absorption Spectroscopy - High-Purity Water for Reliable AAS Measurements

Trace-element methods are highly sensitive to ionic and metallic contamination. Water, containers, reagents and laboratory handling must all be controlled.

Atomic Absorption Spectroscopy is used for quantitative determination of metals in pharmaceutical, environmental, food, chemical, clinical and industrial samples.

Water is used extensively during calibration, dilution, blank preparation and laboratory-ware rinsing. Contaminated water may contribute directly to the measured concentration of the target element.

Poor Water Quality May Cause

  • Elevated blank values
  • Background contamination
  • Poor calibration accuracy
  • Reduced sensitivity
  • Inconsistent sample results
  • Poor reproducibility
  • Contamination of standards and reagents
  • Difficulty measuring low concentrations

 

Recommended Water Quality

Freshly dispensed Type I ultrapure water is generally recommended for:

  • Preparation of calibration standards
  • Blank preparation
  • Sample dilution
  • Reagent and acid dilution
  • Preparation of quality-control samples
  • Trace-metal analysis
  • Final rinsing of suitable laboratory ware

For routine measurements at higher concentrations, the laboratory should still ensure that water contamination remains insignificant compared with the analytical concentration.

Best Practices

Use clean containers and laboratory ware that do not release the elements being analysed.

Prepare blanks and standards using water from the same verified source. Flush the dispensing outlet before collecting water after long periods of non-use.

If blank contamination is detected, separately investigate:

  • Water
  • Acid and reagents
  • Standards
  • Sample containers
  • Pipette tips
  • Digestion vessels
  • Laboratory ware
  • Instrument sample-introduction components

Water Quality Considerations for Spectroscopy

Water-quality parameter

Importance in elemental analysis

Resistivity and conductivity

Indicate the overall level of ionic contamination

Trace-metal contamination

May directly increase blanks or create false-positive results

TOC

May contribute to contamination or affect sensitive analytical procedures

Particles

May contaminate samples or affect sample-introduction components

Microbial contamination

Can produce particles, organics and variable water quality

Consistency

Supports reliable standards, blanks and reproducible results

Common Sources of Contamination

Contamination in spectroscopy does not always originate from the water purification system. The complete analytical preparation process should be reviewed.

Common contamination sources include:

  • Exhausted polishing cartridges
  • Poor RO or EDI performance
  • Contaminated storage tanks
  • Stagnant dispensing lines
  • Metallic tubing or fittings
  • Unsuitable sample containers
  • Contaminated acids or reagents
  • Impure calibration standards
  • Improperly cleaned laboratory ware
  • Laboratory dust and airborne contamination
  • Incorrect sample-handling practices

A systematic blank study can help identify whether the contamination originates from water, reagents, containers or the complete analytical method.

 

Best Practices for Spectroscopy Laboratories

Use Freshly Dispensed Water

Ultrapure water should preferably be collected close to the time of use. Long storage may allow absorption of carbon dioxide, airborne contaminants or substances released from the container.

Use Suitable Containers

Containers should be selected according to the analytical method and elements being measured. General-purpose glassware or previously used containers may not be suitable for trace analysis.

Flush Stagnant Outlets

After a long idle period, flush the point-of-use line before collecting water for blanks, standards or critical samples.

Monitor Water Quality

Monitor resistivity, conductivity and system alarms. TOC and microbial quality may also be relevant depending on the application.

Maintain the Complete Purification Path

Good final water quality depends on:

  • Feed-water condition
  • Pretreatment
  • RO performance
  • EDI or deionization performance
  • Storage-tank protection
  • Tank vent filtration
  • Polishing-cartridge condition
  • Final filtration
  • Distribution and dispensing practices

Replace Consumables at the Correct Time

Delayed replacement of pretreatment filters, polishing cartridges, UV lamps, final filters or tank vent filters may affect water quality and shorten the life of downstream components.

Selecting a Water Purification System for Spectroscopy

The appropriate system should be selected based on:

  • Analytical technique
  • Target elements
  • Required detection limits
  • Number of instruments
  • Daily water consumption
  • Peak water demand
  • Feed-water quality
  • Required resistivity
  • Trace-metal sensitivity
  • Storage and distribution requirements
  • Need for Type I, Type II or both water grades
  • Documentation and data-integrity requirements

ICP-MS laboratories generally require the most stringent control of trace-metal and ionic contamination. ICP-OES and AAS requirements depend on the elements, concentration range and sensitivity of the analytical method.

For laboratories operating several instruments, a centralized water system may provide purified and ultrapure water through a common generation, storage and distribution arrangement.

Need Help Selecting a System?

Share the following details with TKA:

  • Spectroscopic technique
  • Elements being analysed
  • Expected concentration range
  • Required detection limits
  • Number of instruments
  • Daily water requirement
  • Feed-water source
  • Existing water-quality problems

TKA can help evaluate the appropriate purification technology, production capacity, polishing configuration, storage system and dispensing arrangement for your laboratory.

TKA Ultrapure Water Technologies India Pvt. Ltd.
Unit 311, Globe Business Park,
Kalyan – Badlapur Road, Laxmi Nagar, Ambarnath (W) 421501
Thane, Maharashtra, India
Phone: +91-9987174888 / +91-9867964888
Email: info@tkaindia.com

© 2026 TKA India | All Rights Reserved.

TKA Ultrapure Water Technologies India Pvt. Ltd. is an Indian company focused on the design, manufacture and support of laboratory water purification systems… Read More

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