Tris Hydroxyethyl Triazine CAS 4719-04-4: Uses, Specifications, and Supplier Selection Guide

29, Sep. 2026

 

Tris Hydroxyethyl Triazine CAS 4719-04-4: Uses, Specifications, and Supplier Selection Guide

I use Tris Hydroxyethyl Triazine CAS 4719-04-4 as the product identity for a triazine-based industrial preservative and microbiological control chemical. It is commonly evaluated for water-based formulations where bacterial and fungal contamination can affect storage stability, odor, viscosity, or product performance. Before purchasing, I recommend confirming the exact chemical name, active content, physical form, formaldehyde-release profile, SDS, COA, and regulatory requirements with the supplier.

You can find more information on our web, so please take a look.

This guide explains where the material may fit, which specifications matter, how I compare suppliers, and what information buyers should provide before requesting a quotation. Because commercial grades can differ in concentration and formulation, I do not treat one published specification as universal for every manufacturer or market.

Who This Guide Is For

I prepared this guide for procurement teams, formulators, technical managers, distributors, and industrial users sourcing Tris Hydroxyethyl Triazine for water-based products. It is especially relevant when the buyer needs a preservative or microbiological control ingredient for applications such as metalworking fluids, coatings, adhesives, polymer emulsions, or other aqueous industrial systems.

The guide is also useful for buyers comparing suppliers from different countries. A low unit price alone does not establish suitability, because concentration, packaging, documentation, transport classification, batch consistency, and local compliance can materially affect total purchasing risk.

Basic Chemical Context

Identity and Functional Characteristics

Tris Hydroxyethyl Triazine CAS 4719-04-4 is generally described as a hydroxyethyl-substituted triazine compound used in industrial preservation and microbial-control systems. The chemical identity is commonly associated with the molecular formula C9H21N3O3 and a molecular weight of approximately 219.28 g/mol. I still recommend checking the supplier’s current technical documentation because naming conventions and commercial formulations may vary.

Its value comes from its compatibility with certain water-containing industrial formulations and its ability to contribute to microbial control under suitable conditions. Performance depends on the product matrix, organism challenge, pH, temperature, storage time, contamination level, and dosage. For that reason, I consider laboratory compatibility and preservative testing essential before full-scale adoption.

Uses and Application Matching

Metalworking Fluids

In water-based metalworking fluids, microbial growth can contribute to unpleasant odor, emulsion instability, corrosion concerns, and changes in fluid performance. Tris Hydroxyethyl Triazine may be evaluated as part of a preservation program for soluble oils, semi-synthetic fluids, or synthetic systems. I would not select it solely from a product name; I would first review compatibility with the coolant package, operating pH, water hardness, and expected service conditions.

Coatings, Adhesives, and Polymer Dispersions

Water-based coatings, sealants, and adhesives can require protection during storage and use because they contain water and organic nutrients. A triazine-based preservative may be considered when the formulation needs control against bacterial contamination. I recommend checking whether the additive affects viscosity, color, odor, film formation, drying behavior, or compatibility with surfactants and other preservatives.

Industrial Cleaning and Process Formulations

Some aqueous cleaners and process chemicals may also require microbiological control, particularly when they are stored for extended periods or repeatedly exposed to the environment. Suitability depends on the complete formulation rather than on the active ingredient alone. I advise buyers to conduct a controlled screening test and to confirm that the intended use complies with local chemical and biocidal regulations.

Specification Overview: What I Check First

When I review a supplier specification, I separate identity data from commercial-grade performance data. Identity data should include the CAS number, chemical name, molecular formula, and molecular weight, while commercial data should describe appearance, assay, water content, pH, density, stability, packaging, and storage conditions.

Specification Area What I Request Why It Matters
Identity CAS 4719-04-4, chemical name, formula, and molecular weight of approximately 219.28 g/mol Confirms that the quoted material matches the intended chemical
Composition Assay or active content reported in % w/w Allows meaningful comparison between different grades and solutions
Physical properties Appearance, density in g/mL, viscosity where relevant, and pH at a stated temperature Supports handling, dosing, and formulation calculations
Quality documents Batch COA, SDS, technical data sheet, and packaging information Provides traceability and supports internal approval

I pay particular attention to the test conditions. A pH value without a measurement temperature, a density value without a reference method, or an assay result without a defined basis can be difficult to compare. For example, I ask whether pH is measured at 25°C, whether assay is reported on an as-supplied or active basis, and whether the COA applies to the actual shipment batch.

You will get efficient and thoughtful service from Huadingcheng.

Types and Commercial Material Options

The main purchasing distinction is often not a different chemical identity but the commercial form and concentration. A supplier may offer a neat material, an aqueous solution, or a grade adjusted for a particular handling and dosing requirement. Since concentration influences active-ingredient cost, shipping weight, storage behavior, and formulation calculations, I always request the exact composition before comparing quotations.

Packaging can also affect the buying decision. Smaller containers may support laboratory evaluation, while drums, IBCs, or other bulk formats may be more suitable for regular industrial consumption. I do not assume that a package size, concentration, or shelf life is standard; these details must be confirmed for the specific Huadingcheng offer and destination market.

My Supplier Selection Framework

1. Confirm the Technical Fit

I begin with the intended application, formulation pH, storage temperature, expected shelf life, and known contamination problem. I also identify whether the buyer needs in-can preservation, process-fluid protection, or another type of microbial-control function. This prevents a technically unsuitable product from being selected simply because it carries the correct CAS number.

2. Compare Effective Cost, Not Only Price per Kilogram

I compare the cost of active content rather than comparing only the price of the supplied product. If two grades have different concentrations, the lower price per kilogram may not represent the lower cost per kilogram of active ingredient. I also include packaging, freight, import duties, testing, waste, and any required reformulation work in the sourcing calculation.

3. Review Documentation and Traceability

I request an SDS, technical data sheet, and batch-specific COA before approving a supplier. I also check manufacturing information, lot identification, recommended storage, shelf-life statement, and whether the supplier can provide consistent documentation for repeat orders. Where formaldehyde release or occupational exposure is relevant, I ask for the applicable hazard information rather than relying on informal product descriptions.

4. Test a Representative Sample

I use a representative sample to assess compatibility, appearance, odor, viscosity, pH stability, and preservative performance in the actual formulation. A screening test can identify precipitation, separation, color change, or unexpected interaction with other ingredients before commercial production. Any dosage recommendation should be validated by the buyer’s technical team and aligned with applicable regulations.

Pricing, MOQ, and Lead-Time Questions

Pricing for Tris Hydroxyethyl Triazine CAS 4719-04-4 is influenced by concentration, order quantity, packaging, destination, payment terms, and transportation conditions. I therefore provide suppliers with the target annual volume, trial quantity, preferred package, destination port or city, and required delivery window. This produces a more useful quotation than requesting a generic price.

For an initial inquiry, I ask Huadingcheng to confirm the minimum order quantity, sample availability, standard package, production lead time, dispatch location, and validity period of the quotation. I also ask whether the quoted material is available from stock or produced against order. These questions help separate a laboratory purchase from a recurring supply program.

Supplier Evaluation Checklist

  • Does the supplier clearly identify the product as CAS 4719-04-4?
  • Is the offered concentration stated as % w/w or another clearly defined basis?
  • Are appearance, density, pH, storage, and shelf-life details available?
  • Can the supplier provide a current SDS, TDS, and batch COA?
  • Can the supplier support sample testing before a bulk order?
  • Are packaging, MOQ, lead time, and export documents clearly explained?
  • Can the supplier discuss application compatibility without making unsupported performance guarantees?

As Huadingcheng, I can support buyers by organizing product specifications, document review, sample coordination, packaging discussions, and export quotation details for Tris Hydroxyethyl Triazine. I present technical information according to the available batch and market requirements, while leaving final formulation approval and regulatory assessment to the buyer’s qualified team.

Key Takeaways

  • Tris Hydroxyethyl Triazine CAS 4719-04-4 is a triazine-based industrial preservative candidate for selected water-based formulations.
  • The approximate molecular weight is 219.28 g/mol, but commercial concentration and physical form must be confirmed for each offer.
  • Application performance depends on pH, formulation chemistry, storage conditions, contamination pressure, and validated dosage.
  • The best supplier decision combines technical fit, active-content cost, documentation, sample testing, packaging, and delivery reliability.

Conclusion and Next Steps

My direct recommendation is to select Tris Hydroxyethyl Triazine CAS 4719-04-4 only after confirming chemical identity, commercial concentration, documentation, and compatibility with the target formulation. I would not approve a bulk purchase from a price quotation alone, because grade differences and application conditions can change the practical value of the material.

For the next step, prepare your intended application, required quantity, concentration preference, package size, destination, and documentation requirements. Send these details to Huadingcheng for a product specification review, sample or COA discussion, and a project-specific quotation. This process helps me determine whether the offered grade is appropriate for your technical and supply objectives.

If you want to learn more, please visit our website Tris Hydroxyethyl Triazine CAS 4719-04-4.