The Spice Lab · Experiment 15

Does washing rice actually reduce arsenic?

Rice takes up more arsenic from soil and water than most crops. Does rinsing, or the way you cook it, genuinely lower it? A quietly important one for a rice-heavy diet.

Evidence: Strong Reviewed by the nutrition desk Last reviewed: July 2026 · 6 min read
up to 50%

less inorganic arsenic, cooked right

How you cook rice matters more than most people realise: rinsing well and cooking it in plenty of water you then drain can remove a large share of its inorganic arsenic.1

It is not a comfortable fact about a food half the world lives on, but it is a manageable one. Rice carries more arsenic than other grains, and how you rinse and cook it changes how much ends up on your plate.

Why rice has arsenic

Grown in flooded paddies, rice takes up inorganic arsenic, a naturally occurring and partly pollution-derived contaminant, far more readily than other cereals. High, long-term intake is a genuine concern, and matters most for infants and for diets where rice is nearly every meal.

What washing does

Rinsing rice until the water runs clear removes some surface arsenic, a modest help. But the bigger lever is not the rinse, it is the cooking method.

The method that works

Cooking rice in plenty of water and draining it, like pasta (roughly six parts water to one of rice), removes far more inorganic arsenic than the usual absorption method, where all the water is soaked up. Pre-soaking and draining first helps further.1 The trade-off: draining loses some water-soluble B-vitamins, a fair exchange for a very rice-heavy diet.

Perspective, not panic

For most adults eating a varied diet, this is a minor risk, not a reason to fear rice. It matters more if rice is truly every meal, and for infants (do not rely on rice cereal alone). The simplest insurance is variety: rotate in millets and wheat.

Inorganic arsenic remaining, by method

relative, illustrative
Absorption method, no rinsebaseline
Rinsed, absorption method~85%
Excess water, drained~50%
Pre-soaked + drained~40%

Draining excess cooking water removes the most; rinsing helps modestly. Bar widths illustrative of measured trends.1

What this means in your kitchen

A rice-heavy diet is fine, cooked with a little care. Five simple habits.

  1. 1

    Rinse until the water runs clear

    Removes surface starch and a little arsenic.

  2. 2

    Cook in plenty of water and drain

    The pasta method (about 6:1, then drained) cuts arsenic the most.

  3. 3

    Pre-soak for extra

    Soaking and draining before cooking removes a little more.

  4. 4

    Vary your grains

    Rotate in millets and wheat so rice is not literally every meal.

  5. 5

    Take extra care for infants

    Do not rely on rice cereal as a baby staple.

The myth

"Rinsing rice is just to wash off the starch and stop it clumping."

The fact

It also removes some arsenic, and cooking rice in excess water you then drain removes far more. For a rice-heavy diet, the method genuinely matters.

How strong is the evidence?

We rate each claim separately, because they are not equally proven.

Rice accumulates inorganic arsenic (Strong)

Well established; more than other grains.

Cooking in excess water and draining reduces it substantially (Strong)

Repeatedly measured; the most effective method.

Rinsing has a modest effect (Strong)

Real but smaller than the draining method.

"Rice is dangerous, avoid it" (Not supported)

It is about method and variety, not avoidance.

This is educational content, not medical advice.

In one minute

  • Rice carries more inorganic arsenic than other grains.
  • Cooking in excess water and draining can cut it by around half.
  • No panic, rinse, drain, and vary your grains, especially for infants.

Sources

  1. Gray PJ, et al. Cooking rice in excess water reduces inorganic arsenic. J Agric Food Chem / related FSA studies.
  2. Carey M, et al. Rice cooking methods affect inorganic arsenic content. Sci Total Environ. 2015.
  3. EFSA Panel. Dietary exposure to inorganic arsenic in the European population. EFSA J. 2014.
More experiments in the Spice Lab