Kidney-friendlyFrozen novelties scores Kidney-friendly across all three minerals - Phosphorus leads at 13% of its limit, far from any caution threshold.
Phosphorus / Sodium / Potassium (rating basis)
Phosphorus131 mg13%
Low
Sodium95 mg5%
Low
Potassium211 mg11%
Low
About this food
How to think about Snacks & Sweets: Frozen novelties is worth a closer look - Snacks and sweets are mostly processed foods that often contain inorganic phosphorus additives (the most absorbable kind) and added sugar, making them a high-caution category in CKD.
Nutrient insight
Frozen novelties's phosphorus is the top contributor (13% of its limit). Source matters: animal phosphorus absorbs at 60-80%, additive phosphorus near 100% - the same number can mean very different real loads.
Other nutrients
Protein4.3 gNot part of rating
Fiber0.3 gBeneficial for CKD (core plant-based nutrient)
Sugar (total)20.7 gMay contain added sugar
Alcohol0 gAlcohol-free
PurineNo dataNot rated · reference for those with high uric acid
OxalateNo dataNot rated · reference for those with kidney stones
Frozen novelties is rated Kidney-friendly: Phosphorus is 13% of the CKD stage 3-4 limit, the highest item. Individual needs should be discussed with your healthcare team.
Why is Frozen novelties rated Kidney-friendly?
Frozen novelties's Phosphorus content (131 mg) equals 13% of the limit, sitting in the <15% band - that is why it rates Kidney-friendly.
How much Phosphorus is in Frozen novelties?
Per 100 g, Frozen novelties contains Phosphorus 131 mg, which is 13% of the CKD stage 3-4 daily limit (1,000 mg).
Is Frozen novelties safe on a low-potassium diet?
On a low-potassium diet, Frozen novelties falls below the 300 mg per 100 g reference point, providing 211 mg of Potassium. Treat this as a reference - your stage and labs decide the real target.
How does Frozen novelties compare to other snacks & sweets foods?
Compared with the typical Snacks & Sweets food, Frozen novelties has less Phosphorus - 131 mg per 100 g on record. Ratings on this site always use the food's own measured values.