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Rice snacks and crackers — rice cakes, wafers — HMTc Standard

Standard

The Heavy Metal Tested & Certified standard for rice snacks and crackers — rice cakes and rice wafers — stated as sold. These are the EU-enumerated rice products carrying the 300 ppb inorganic-arsenic maximum; every limit is the strictest maximum level any credible government sets for the product.

How limits are set

The standard for each analyte is the strictest maximum level set by any credible government regulator — among them the European Union, Codex Alimentarius, the US FDA, Australia/New Zealand, the Gulf states (GSO), and the national authorities of every jurisdiction that regulates the product — converted into Rice snacks and crackers — rice cakes, wafers’s own as-sold basis. It is a lookup of sovereign law, carrying at most one disclosed basis conversion where the law is written in another basis, and an explicit read-across where no government regulates the exact product. A certified product sits at or below every applicable sovereign limit at once.

Where no government regulates the exact product for an analyte, the standard does not go blank or invent a number: the limit is read across from the nearest government value for an analogous product, so a certified product still sits at or below a real sovereign limit. The ratchet tightens these after publication as surveillance warrants.

Master Limit Table

All values in ppb (µg/kg), as-sold basis. 9 of 11 analytes carry a firm ceiling; the remaining 2 are toxic species bounded by their parent totals (species ≤ total, measured on every lot), so every analyte carries an enforceable ceiling. A brand meeting every value on a like-for-like basis qualifies for the mark.

AnalyteHMTc limitBinding basis
Lead (Pb)200strictest government ML (Paraguay)
Inorganic arsenic (iAs)300strictest government ML (EU)
Total arsenic (tAs)300strictest government ML (Paraguay)
Mercury, total (tHg)20strictest government ML (Hong Kong)
Methylmercury (MeHg)bounded≤ total tHg, measured every lot (see note)
Cadmium (Cd)100strictest government ML (AU/NZ)
Total chromium (Cr)1000strictest government ML (China)
Hexavalent chromium (Cr-VI)bounded≤ total Cr, measured every lot (see note)
Nickel (Ni)1500strictest government ML (EU)
Tin (Sn)250000government read-across (Singapore)
Aluminium (Al)100000government read-across (China)

Every claim analyte is equal at the gate. A product is certified only when every analyte is at or below 100% of its published government floor or disclosed read-across; above the limit, on any metal, it is not certified and carries no mark. Inorganic arsenic (iAs) is the arsenic species that binds on rice: rice hyperaccumulates arsenic, and every government that regulates it does so by product form (milled 150, parboiled/husked/rice-flour 250, rice products 300, rice drinks 30). Non-rice cereals do not hyperaccumulate arsenic, so iAs is not-material there and total arsenic (tAs) carries the government cereal ceiling instead. Mercury is limited as total mercury (tHg); methylmercury (MeHg), which no government regulates in grain, is bounded by the total-mercury ceiling. Hexavalent chromium (Cr-VI) is controlled by reflex speciation on total chromium, not an invented number. Tin (Sn) is material only for canned product, which routes to the canned-goods category. Aluminium (Al) has no government grain maximum in any jurisdiction.

Derivation

The full derivation for Rice snacks and crackers — rice cakes, wafers. Each row lists every government maximum level in force worldwide, converted to the as-sold basis; the HMTc limit is the strictest of them, and the last column names which sovereign law binds. A blank cell means that government sets no limit for this analyte in this product.

AnalyteEUAU/NZGSOChinaIndiaMercosurIsraelMoroccoParaguayVietnamHong KongCOHMTcBinds
Lead (Pb)—————200——200———200Paraguay
Inorganic arsenic (iAs)300—300———300300————300EU
Total arsenic (tAs)—————3001000—300———300Paraguay
Mercury, total (tHg)——————————20—20Hong Kong
Methylmercury (MeHg)————————————bounded&sup5;species ≤ tHg
Cadmium (Cd)150100400—400400200—400400100200100AU/NZ
Total chromium (Cr)———1000————————1000China
Hexavalent chromium (Cr-VI)————————————bounded&sup5;species ≤ Cr
Nickel (Ni)1500———————————1500EU
Tin (Sn)————————————250000²read-across
Aluminium (Al)————————————100000²read-across

All values µg/kg (ppb), as-sold basis. ² no government regulates this analyte for this exact product form: the value is a disclosed read-across from the nearest applicable government maximum, and the derivation names the instrument it comes from. It is never taken from occurrence data. After publication the standards ratchet may tighten it, using certified-lot results only. ³ not material in this matrix: measured but with no standalone number, controlled by packaging control or by the total-metal screen, not an invented value. &sup5; a toxic species governed by and bounded by its parent total (for example inorganic arsenic ≤ total arsenic): the species can never exceed the total, so the total ceiling is the species ceiling. The total metal is measured on every lot and the species is established at baseline; no separate species ceiling is published. On ongoing lots the species is speciated whenever the total exceeds its limit.

Occurrence and derivation rationale

For each analyte on the panel: what the peer-reviewed and survey literature measured in this category, cited one way to the Heavy Metal Index, and the Method v2.0 reasoning behind the certification limit — including, where no government sets a number, why the program sets one anyway. Occurrence figures are literature findings; the derivation is the certifier's.

2 studies in the corpus measured lead in Rice snacks/crackers (734 samples reported across those studies): ANSES 2026, Guo 2017.

2 studies · 734 samples in the corpus

HMTc sets 200 ppb (regulatory-alignment): the strictest applicable government maximum level for this product form, adopted under Method v2.0 as the default certification standard. Why lead is limited →

Inorganic arsenic

5 studies in the corpus measured inorganic arsenic in Rice snacks/crackers (493 samples reported across those studies): Noh 2023, Wehmeier 2023, Gu 2020, Carey 2018, Signes-Pastor 2017.

5 studies · 493 samples in the corpus

HMTc sets 300 ppb (regulatory-alignment): the strictest applicable government maximum level for this product form, adopted under Method v2.0 as the default certification standard. Why inorganic arsenic is limited →

Total arsenic

6 studies in the corpus measured total arsenic in Rice snacks/crackers (2678 samples reported across those studies): EFSA 2024, Noh 2023, Wehmeier 2023, Gu 2020, Carey 2018, Guo 2017.

6 studies · 2678 samples in the corpus

HMTc sets 300 ppb (regulatory-alignment): the strictest applicable government maximum level for this product form, adopted under Method v2.0 as the default certification standard. Why total arsenic is limited →

2 studies in the corpus measured cadmium in Rice snacks/crackers (734 samples reported across those studies): ANSES 2026, Guo 2017.

2 studies · 734 samples in the corpus

HMTc sets 100 ppb (regulatory-alignment): the strictest applicable government maximum level for this product form, adopted under Method v2.0 as the default certification standard. Why cadmium is limited →

Risk Flag

On the published occurrence literature to date, Rice snacks and crackers — rice cakes, wafers shows no systematic gap between typical market levels and the limit — the limit being the strictest government maximum for the product (Method v2.0). Certification is decided on a product’s own tested result, not on a distribution; an individual lot or supplier can still exceed a limit.

See the cross-category summary of the ingredients that most often struggle.

Cite this standard

Pendergrass, K. (2026). Rice snacks and crackers — rice cakes, wafers: HMTc standard (Standard No. 10.83138/hmtc.std.3.rice-snacks-crackers). Institute of Contaminant Standards. https://doi.org/10.83138/hmtc.std.3.rice-snacks-crackers

© 2026 Institute of Contaminant Standards / Heavy Metal Certified. All rights reserved.

The literature baseline for every analyte is maintained independently at the Heavy Metal Index. This certification standard applies those findings; the two are kept editorially separate by design.