Chemical analysis for complex formulations, raw materials and industrial products.
Anysis supports chemical manufacturers, formulators, material suppliers, R&D teams and quality departments with compositional analysis, deformulation, impurity investigation, material identification, failure analysis and materials characterization.
Multi-technique analysis helps connect composition, structure, impurities and performance differences.
Chemical products are rarely defined by one component alone.
Industrial chemical performance can depend on the interaction of base materials, solvents, surfactants, additives, fillers, catalysts, stabilizers, pigments, contaminants and processing history. Even small compositional or structural differences may affect viscosity, color, odor, stability, adhesion, compatibility or end-use performance.
Anysis develops analytical workflows around the client’s actual question. Projects may focus on identifying an unknown material, understanding a formulation, comparing suppliers, investigating contamination, explaining product failure or characterizing how processing has changed a material.
Materials, products and sub-industries we analyze.
The analytical plan is tailored to the sample type and project objective rather than applying the same test package to every product.
Agrochemicals & Pesticides
Formulations, active-related questions, solvents, surfactants, carriers, additives, residues and impurities.
Basic & Industrial Chemicals
Raw materials, intermediates, specialty chemicals, process chemicals, inorganic materials and unknown samples.
Dyes & Detergents
Dyes, pigments, surfactants, cleaning formulations, builders, specialty additives and formulation differences.
Lubricants & Greases
Base oils, additive packages, thickeners, oxidation products, wear debris, deposits and contamination.
Petrochemicals
Hydrocarbon mixtures, solvents, intermediates, refinery chemicals, oilfield products and process residues.
Polymers & Plastics
Resins, compounds, masterbatches, fillers, additives, films, coatings, fibers and molded components.
Start with what you need to understand.
You do not need to choose an instrument first. Share the sample background, what changed, and the decision you need the data to support.
What is in this formulation?
Identify major components, additives, fillers, solvents, surfactants or functional ingredients.
Why do two products perform differently?
Compare chemistry, additives, morphology, thermal behavior or other relevant characteristics.
What is this unknown material?
Identify particles, residues, deposits, coatings, fragments or unknown raw materials.
Where did the impurity come from?
Investigate trace contaminants, foreign matter, residuals and possible process-related sources.
Why did the product change during storage or processing?
Evaluate chemical, thermal, structural or surface changes associated with aging and processing.
Is the supplier material equivalent?
Compare reference and supplier samples using a targeted multi-technique analytical plan.
Chemical Industry Analytical Services
Answers to common project-planning questions. Final scope depends on the actual sample, target information and agreed methods.
Can you analyze a chemical product if we do not know the formulation?
Yes. The project can begin with the sample type, application, and the specific information you need. A staged deformulation or compositional-analysis plan can then be proposed.
Can you compare our product with a competitor or supplier sample?
Yes. Comparative projects can focus on composition, additives, fillers, trace elements, thermal behavior, morphology, surfaces or other relevant differences.
Can you identify an unknown contaminant in a chemical product?
Depending on the contaminant form and amount, microscopy, spectroscopy, elemental analysis, chromatography or surface analysis may be combined.
Do you provide exact complete formulations?
Deformulation can identify and estimate many components, but results depend on matrix complexity, ingredient detectability, reference standards and analytical limitations. The deliverable should be defined around realistic analytical goals.
What sample quantity is required?
It depends on the number of methods, sample form, preparation needs and replicate requirements. Sample quantity is confirmed during technical review.
How long does a chemical analysis project take?
Lead time depends on scope, number of techniques, sample preparation and whether standards or additional follow-up work are required.