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Corrosion Inhibitor

Protect your metal surfaces from corrosion with the right inhibitors raw materials. Check all the chemical products you need for corrosion inhibitors with CAS NO., property information, and SDS. Shop corrosion inhibitor raw chemical materials from certified suppliers with detailed product information.

Tris(hydroxymethyl)aminomethane

(77-86-1)
In synth of surface-active agents, vulcanization accelerators, pharmaceuticals: titrimetric standard, as emulsifying agent for cosmetic creams & lotions, mineral oil & paraffin wax emulsions, leather dressings, emulsifying agent for textile specialties, polishes, cleaning compd, so-called sol oils.

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Ferrous sulfate heptahydrate

(7782-63-0)
Used as an analytical reagent and raw material for ferrite; as an iron enhancer for feed additives. In agriculture, it can be used as a pesticide to prevent wheat smut, scab of apples and pears, and rot of fruit trees; it can also be used as a fertilizer to remove moss and lichen from tree trunks. It is a raw material for manufacturing magnetic iron oxide, iron oxide red and iron blue inorganic pigments, iron catalysts and polyferric sulfate. Used in medicine as a local astringent and blood toni

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(1-Hydroxyethylidene)-1,1-diphosphonic acid

(2809-21-4)
HEDP is an organic phosphonic acid scale and corrosion inhibitor. It can form stable complexes with various metal ions such as iron, copper, and zinc, and can dissolve oxides on the metal surface. It can still play a good role in corrosion and scale inhibition at 250 ℃, it is still stable at high pH, ​​not easy to hydrolyze, and it is not easy to decompose under general light and heat conditions. It has better acid and alkali resistance and chlorine oxidation resistance than other organic phosph

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1-Hydroxybenzotriazole

(2592-95-2)
additive for oligonucleotide couplings and in racemization-free peptide couplings

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1-Hydroxybenzotriazole

(2592-95-2)
additive for oligonucleotide couplings and in racemization-free peptide couplings

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Poly(acrylic acid)

(9003-01-4)
Poly(acrylic acid) (PAA or Carbomer) is generic name for synthetic high molecular weight polymers of acrylic acid. They may be homopolymers of acrylic acid, crosslinked with an allyl ether pentaerythritol, allyl ether of sucrose or allyl ether of propylene. In a water solution at neutral pH, PAA is an anionic polymer, i.e. many of the side chains of PAA will lose their protons and acquire a negative charge. This makes PAAs polyelectrolytes, with the ability to absorb and retain water and swell t

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Carbohydrazide

(497-18-7)
Carbonyl hydrazide is a derivative of hydrazine with strong reducibility. It can be used as an intermediate for the manufacture of energetic materials, and it can also be used directly as a component of rocket explosives and propellants. It is used as the deoxidizer for boiler water in the world. It is the most advanced material used for deoxidizing boiler water in the world. It has low toxicity, high melting point, and deoxidation efficiency much greater than the materials currently used. It is

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Nitrilotris(methylenephosphonic acid)

(6419-19-8)
ATMP or aminotris(methylenephosphonic acid) is a phosphonic acid with chemical formula N(CH2PO3H2)3. It has chelating properties. It can be synthesized from the Mannich-type reaction of ammonia, formaldehyde, and phosphorous acid.

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Sodium benzoate

(532-32-1)
1. Vasodilator
2. A benzene compound used as a synthetic reagent.

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Sodium sulfate

(7757-82-6)
It can be mainly used as the filler of synthetic detergent. Paper industry applies it for the cooking agent during the manufacture of sulfate pulp. Glass industry uses it as substitute of soda. Chemical industry applies it as the raw material for the manufacturing of sodium sulfide, sodium silicate and other chemical products. Textile industry applies it for the formulation of Vinylon spinning coagulation bath. The pharmaceutical industry applies it as laxatives. It can also be used in non-ferro

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Corrosion inhibitors are substances that reduce or prevent corrosion by forming a protective layer on metal surfaces. According to the mechanism of action, corrosion inhibitors can be divided into passivation type, film-forming type and adsorption type. Each corrosion inhibitor has different corrosion protection properties. Corrosion inhibitors vary based on their chemical composition and include organic compounds such as amines, phosphates and silicates, and inorganic compounds such as chromates and molybdates. According to the part where the corrosion inhibitor controls electrochemical corrosion, it is divided into anodic type, cathodic type and mixed type. The "Corrosion Inhibitor" on ECHEMl mainly supplies raw materials for water treatment corrosion inhibitors.

More Information

Corrosion inhibitors find widespread application in various industries where metal structures or components are exposed to corrosive agents. Corrosion inhibitors function by forming a protective barrier on the metal surface, which prevents corrosive substances from coming into contact with the metal substrate.


The mechanism of corrosion inhibition can be categorized into several types, including passivation, barrier protection, and adsorption. Passivation inhibitors work by promoting the formation of a stable oxide layer on the metal surface, which acts as a barrier against further corrosion. Barrier protection inhibitors create a physical barrier between the metal and the corrosive environment, while adsorption inhibitors attach themselves to the metal surface, forming a protective film.


Commonly used corrosion inhibitors:
•organic compounds, such as amines, phosphates
•inorganic compounds like , chromates and molybdates

Frequently Asked Questions

What is a corrosion inhibitor and how does it work?

A corrosion inhibitor is a chemical compound added to liquids or gases to reduce the rate of corrosion on metals. It works by forming a protective film on the metal surface, neutralizing corrosive elements, or altering electrochemical reactions that cause rust and degradation. Corrosion inhibitors are widely used in industries such as oil and gas, water treatment, automotive, and manufacturing to extend equipment life and maintain system integrity.

What are the common types of corrosion inhibitors?

Common types of corrosion inhibitors include anodic inhibitors (e.g., nitrites, phosphates), cathodic inhibitors (e.g., zinc salts), mixed inhibitors (e.g., silicates, organic amines), and volatile corrosion inhibitors (VCIs). Each type functions differently based on the corrosion mechanism and environment—such as acidic, alkaline, or saline conditions—and is selected according to the specific application and material being protected.

How do I choose the right corrosion inhibitor for my application?

Selecting the right corrosion inhibitor depends on several factors:1. The type of metal involved (e.g., steel, copper, aluminum).2. The operating environment (e.g., pH, temperature, presence of chlorides or oxygen).3. Compatibility with other chemicals in the system.4. Regulatory and environmental requirements.5. Cost-effectiveness and ease of application.Consulting technical data sheets and working with qualified suppliers ensures optimal performance and compliance.

Are corrosion inhibitors safe for the environment?

The environmental safety of corrosion inhibitors varies by formulation. Traditional inhibitors like chromates are highly effective but toxic and restricted under regulations like REACH and EPA guidelines. Modern alternatives—such as biodegradable organic inhibitors or green corrosion inhibitors derived from plant extracts—are increasingly used to meet sustainability standards. Always verify eco-certifications and disposal guidelines before use.

Where are corrosion inhibitors commonly used?

Corrosion inhibitors are essential in multiple industries:• Oil and gas: protecting pipelines, storage tanks, and downhole equipment.• Cooling water systems: preventing scale and rust in industrial chillers.• Automotive: in antifreeze and brake fluids to shield engine components.• Concrete construction: added to rebar coatings or admixtures.• Marine applications: safeguarding ship hulls and offshore platforms.Their use minimizes maintenance costs, prevents leaks, and enhances operational safety.

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