NO RUG

Acid PHWater Based

Rust Stain Remover for Granite, Porcelain, Quartz, and all Acid Resistant Materials.

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Description

NO RUG is a rust stain remover formulated for all acid-resistant surfaces. The product is highly effective against salt efflorescences and oxidation. Its formula allows the product to penetrate deeply into the material allowing the removal of deep stains.

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Areas of Application

Resin-Quartz Agglomerates

Sandstone

Klinker

Cotto

Granite

Bricks

Porphyry

Quartzite

Terracotta

Tuff

Before & After

Before ImageAfter Image

FAQs

What is NO RUG used for?

NO RUG is a rust stain remover formulated for all acid-resistant materials, including granite, porcelain, quartz, and other non-porous surfaces.


NO RUG deeply penetrates the material to remove rust stains caused by salt efflorescences and oxidation, restoring the original surface appearance.


NO RUG is specifically designed for acid-resistant materials and is effective at removing deep rust stains from surfaces like granite, quartz, and porcelain.


Yes, NO RUG is highly effective against rust stains, even deep, stubborn marks caused by salt efflorescences and other oxidation-related issues.


Apply No Rug undiluted to a dry, clean surface using a brush or spatula to spread an even layer. Allow it to penetrate and act for 5–15 minutes (up to 30 minutes on very deep rust stains), then gently agitate or scrape off the softened residue. Finally, rinse or wipe the area clean and let it air-dry.


Yes. Its solvent-enhanced, rust-removing formula works equally well on interior and exterior acid-resistant surface , granite, porcelain, quartz, brick, etc. Indoors, ensure adequate ventilation; outdoors, protect nearby vegetation and finishes during application.


No, provided your stone is acid-resistant (e.g., granite, quartzite, porcelain). No Rug is specifically formulated to penetrate and remove rust without etching or discoloring these substrates. Do not use it on acid-sensitive stones (marble, limestone, travertine) as it may harm their surface.