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Sodium Sulfite vs Sodium Nitrate: which is worse?

Quick answer: Both score equally on our risk model. Sodium Sulfite is in the EU and in the US; Sodium Nitrate is in the EU and in the US.

PropertySodium SulfiteSodium Nitrate
EU status
US status
Risk level
Banned in
Restricted inUnited States (banned from fresh produce and salad bars per FDA 1986 action), European Union (ADI 0.7 mg/kg body weight as sulfur dioxide equivalent), Australia (mandatory labeling if above 10 ppm)European Union (maximum permitted levels), United Kingdom, Australia
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Where it hides

What is Sodium Sulfite?

Sodium sulfite is an inorganic sulfite salt used as a food preservative and antioxidant. It releases sulfur dioxide when it contacts water or acid, which acts as the active antimicrobial and antioxidant agent. Part of the broader sulfite family of food additives (including sulfur dioxide E220, sodium bisulfite E222, and others).

What is Sodium Nitrate?

Sodium nitrate (NaNO3) is a naturally occurring salt found in soil and some plants, and also synthetically produced for use as a food preservative and curing agent. It is converted to sodium nitrite by bacterial action in foods or in the body, where it exerts its preservative and curing effects. Sometimes called 'Chile saltpeter' after its natural South American ore source.

Documented risks

Sodium Sulfite: Sulfites are among the more significant food allergy/intolerance triggers. An estimated 1 in 100 people, and up to 5% of asthmatics, are sulfite-sensitive. Reactions can include urticaria, angioedema, bronchospasm, and in severe cases anaphylaxis. Sulfite-induced asthma can be severe; several deaths attributable to sulfite-triggered anaphylaxis have been documented. The FDA banned sulfites from fresh produce and restaurant salad bars in 1986 after several deaths and severe reactions were linked to sulfite-treated salads. FDA mandates that sulfite content above 10 ppm be declared on US food labels. All forms of sulfites (E220-E228) share these sensitization concerns.

Sodium Nitrate: Sodium nitrate shares the same health concerns as sodium nitrite: conversion to nitrosamines is the primary mechanism of concern. Sodium nitrate is converted to nitrite by bacterial reduction in foods and by nitrate-reducing bacteria in saliva before reaching the stomach. The subsequent conversion of nitrite to nitrosamines carries the same carcinogenicity concerns described for sodium nitrite. IARC's 2015 classification of processed meat as Group 1 human carcinogen applies to all nitrite/nitrate-cured processed meats. EFSA's 2017 re-evaluation established acceptable daily intakes (ADIs) for nitrate (3.7 mg/kg body weight/day) and nitrite (0.07 mg/kg body weight/day) based on risk assessment. A notable paradox in nitrate nutrition: dietary nitrate from vegetables (particularly leafy greens like spinach, arugula, and lettuce, and root vegetables like beets) is associated with cardioprotective effects through the nitrate-nitrite-NO pathway, where nitric oxide from dietary nitrate improves vascular function and reduces blood pressure. This beneficial effect of vegetable nitrate contrasts with the potential harm from processed meat nitrate/nitrite, suggesting that the food matrix and associated compounds (antioxidants in vegetables vs. amines in meat protein) significantly influence whether nitrite produces beneficial or harmful effects. Infant exposure to high nitrate levels — particularly from well water — can cause methemoglobinemia ('blue baby syndrome'). The EU and WHO set strict nitrate limits for infant water and food for this reason.

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