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Deionized Water[2]

Updated: 2026-09-18

Overview

Deionized water is produced by removing ions, such as sodium, calcium, and chloride, through processes like ion exchange or reverse osmosis. This results in water with minimal electrical conductivity, making it essential for applications requiring ultra-pure water. Unlike distilled water, which removes contaminants via boiling and condensation, deionization specifically targets ionic impurities. It is classified by purity levels (Type I, II, or III) based on resistivity and total organic carbon (TOC) content.

Physical and Chemical Properties

Deionized water has a neutral pH (~7) and extremely low conductivity (<1 µS/cm), as it lacks dissolved salts. Its high purity makes it aggressive toward materials, as it readily dissolves ions from surfaces to regain equilibrium. Despite sharing H₂O’s molecular formula with regular water, its lack of impurities gives it distinct properties. For example, it freezes and boils at slightly different temperatures due to the absence of nucleation sites.

Main Applications

In laboratories, DI water is used for preparing reagents, calibrating equipment, and rinsing glassware to avoid contamination. The electronics industry relies on it for wafer cleaning and circuit manufacturing, where even trace ions can disrupt processes. Pharmaceuticals use it as an excipient or solvent, adhering to strict purity standards (e.g., USP or EP grades). Industrial cooling systems and boilers also utilize DI water to prevent scale buildup and corrosion.

Safety and Storage

While non-toxic, DI water can absorb CO₂ from air, lowering its pH over time. Store it in chemically inert containers (e.g., polyethylene or glass) to prevent leaching of contaminants. Avoid prolonged exposure to air or unsanitary conditions, as microbial growth may occur. For high-purity applications, use freshly produced DI water or nitrogen-purged storage to maintain quality.

B2B Procurement Guide

When sourcing DI water, specify purity requirements (e.g., ASTM Type I for sensitive applications). Bulk suppliers often provide certifications like ISO 9001 or USP compliance. Consider on-site generation systems (e.g., deionization tanks) for large-scale needs. Evaluate packaging options—drums, IBCs, or pipelines—based on volume and contamination risks. Pricing depends on purity, volume, and delivery logistics.

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