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Nitrous acid

Updated: 2026-07-25

Overview

Nitrous acid (HNO2) is a weak, unstable inorganic acid that exists primarily in aqueous solutions or as reactive intermediates in chemical processes. It plays a critical role in organic synthesis, particularly in diazotization reactions where it converts primary aromatic amines into diazonium salts. Unlike its stable counterpart nitric acid, nitrous acid readily decomposes at room temperature, making it challenging to isolate in pure form. In industrial settings, it is typically generated as needed from sodium nitrite and a strong acid like hydrochloric acid.

Physical and Chemical Properties

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Nitrous acid exhibits distinctive pale blue coloration in cold, dilute aqueous solutions but rapidly decomposes into nitric oxide (NO), nitrogen dioxide (NO2), and water when heated or concentrated. Its decomposition is accelerated by light exposure. As a weak acid (pKa ≈ 3.3 at 18°C), it demonstrates both oxidizing and reducing properties depending on reaction conditions. The acid forms nitrite salts (e.g., sodium nitrite) when neutralized, which are more stable and commonly used as commercial sources of the nitrite anion.

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Main Applications

The primary industrial use of nitrous acid lies in diazotization reactions for producing diazonium compounds, essential intermediates in azo dye manufacturing and pharmaceutical synthesis. These colorful azo compounds account for over 60% of commercial dyes. Additional applications include its use as a corrosion inhibitor in coolant systems and as a nitrosating agent for producing caprolactam (nylon precursor). In laboratories, it serves as a selective oxidizing agent for converting thiols to disulfides and hydroxylamines to nitrosamines.

Safety and Storage

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Due to its instability, nitrous acid requires careful handling with appropriate PPE including acid-resistant gloves, goggles, and fume hoods. Decomposition releases toxic nitrogen oxides (NOx), necessitating proper ventilation. Commercial procurement typically involves stabilized precursors like sodium nitrite rather than pre-formed acid. Storage should be in amber glass or HDPE containers at 2-8°C, separated from reducing agents and strong acids to prevent uncontrolled decomposition. Shelf life of prepared solutions rarely exceeds 24 hours.

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B2B Procurement Guide

Industrial buyers typically source sodium nitrite (CAS 7632-00-0) as the preferred precursor, available in technical (95-97%) or reagent grades (≥99%). Key specifications include chloride content (<0.1%) and heavy metal limits for sensitive applications. Major producers include BASF, UBE Industries, and domestic Chinese manufacturers. Pricing fluctuates with energy costs due to the energy-intensive Ostwald process for nitrite production. Spot prices for technical grade sodium nitrite commonly range $800-$1,200/ton depending on region and order volume.

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