What Should I Use to Densify a Concrete Floor?
If you want to densify concrete, the first choice is not a brand—it is the correct concrete-specific reactive silicate chemistry for the slab. Lithium silicate is widely used, but blended silicates, other reactive silicates and cure-and-densify products can also be suitable. This guide explains what to use on old concrete, new concrete, polished floors, dusty slabs and high-traffic industrial floors.
DUSH DENSI-MAX ULTRACurrent documented use: marble & natural stoneImportant Product-Fit Note Before Using DUSH DENSI-MAX ULTRA to Densify Concrete
The product name “densifier” can create confusion because densification chemistry is used in both natural-stone treatment and concrete-floor treatment. The substrate, reaction, preparation and specification are not automatically interchangeable.
DUSH’s current DENSI-MAX ULTRA product page describes the product as an intensive penetrating treatment for highly porous white marble, Makrana marble and sandstone. DUSH’s current all-products catalogue lists DENSI-MAX ULTRA as an “Ultra-Premium Marble Densifier” for premium marble, Italian marble and natural stone. The public catalogue does not presently list a DUSH surface densifier whose stated use is industrial concrete flooring.
This distinction matters because the word “densifier” is used for both stone treatment and concrete treatment, but the substrate chemistry and application requirements are not automatically interchangeable. A product used to harden concrete should have a current TDS that explicitly names concrete, explains the reactive chemistry or hardening mechanism, gives surface preparation and application instructions, and states coverage, excess-removal and traffic requirements.
What Is a Concrete Densifier?
A concrete densifier is a penetrating reactive treatment used to make the cement-paste structure near the surface harder and tighter. Most professional systems use silicate chemistry. When the treatment reaches reactive calcium-bearing compounds in concrete, it forms additional hard mineral structure inside the pores. This is different from applying a paint-like film on top of the floor.
PROSOCO describes the densification reaction as the conversion of weaker calcium hydroxide within concrete into additional calcium silicate hydrate, often abbreviated as CSH. Euclid Chemical similarly describes lithium-silicate densifiers as penetrating concrete and reacting within the surface to form hard, dense CSH in the pores. These manufacturer explanations are consistent on the central point: a densifier works inside the concrete surface matrix, not by creating a thick resin coating.
That internal reaction is why densified concrete can be a good fit for warehouses, distribution centres, factories, parking structures, retail back-of-house areas and other sites that want to retain the appearance and serviceability of concrete rather than cover it with epoxy or polyurethane.
Surface hardening
The objective is to improve the quality of the cement-paste surface so it resists wear and powdering better than untreated weak paste.
Dust reduction
Concrete-specific densifiers are commonly selected when owners want to reduce surface dust while keeping an exposed concrete finish.
Polish support
In polished-concrete systems, densification helps create a tighter matrix that can retain the mechanical finish more effectively.
What Does It Mean to Densify a Concrete Floor?
Concrete densification is a chemical surface treatment. A reactive silicate penetrates into suitable concrete and reacts with compounds in the cement paste to form additional hard, insoluble material within the pore structure. The goal is to make the surface denser, harder, less dusty and more resistant to everyday abrasion.
A densifier is different from paint, epoxy or a topical acrylic sealer. It is also different from a repair mortar. A densifier works within the concrete surface rather than building a thick protective coating on top.
| What you want to achieve | Is a densifier appropriate? | What to evaluate |
|---|---|---|
| Reduce surface dusting | Often yes, if the slab is sound | Porosity, laitance, traffic and contamination |
| Increase surface hardness | Yes, on suitable concrete | Concrete-specific reactive chemistry and correct application |
| Prepare for polished concrete | Commonly yes | Grinding stage, densifier timing and polishing sequence |
| Stop oil staining | Not by itself | Add a compatible guard or choose another system |
| Repair broken concrete | No | Repair mortar, joint repair or overlay may be required first |
| Create a coloured seamless finish | No | Epoxy, PU or another resin system may be more appropriate |
Step 1: Check the Concrete Before Choosing a Densifier
A densifier needs access to suitable concrete. Before choosing lithium, sodium, potassium or a blended formulation, inspect the slab for anything that could block penetration or indicate deeper failure.
Old coatings, curing compounds, oil, grease, polish, heavy dirt, laitance and previous sealers can interfere with absorption. Deeply weak paste, scaling, delamination and broken joint edges may need mechanical removal or repair before chemical treatment.
What Should You Use on an Existing Concrete Floor?
For a sound existing slab, the first product category to evaluate is a penetrating reactive silicate hardener/densifier designed specifically for concrete. These products are commonly supplied as lithium silicate, sodium silicate, potassium silicate or blends.
PROSOCO’s current concrete-flooring range includes lithium-silicate densifiers as well as a Blended Densifier for a wide range of concrete surfaces. Its LS product is described as a premium concrete sealer, hardener and densifier for new or old concrete, while LS/CS is documented as a reactive silicate hardener, densifier and dustproofer.
Euclid Chemical likewise publishes a dedicated liquid-densifier range for concrete, including UltraSil Li+, UltraSil 7, UltraSil DC9, Eucosil, Surfhard and EUCO Diamond Hard. That breadth shows why “densifier” is a category rather than one universal formula.
Lithium Silicate vs Blended Silicate: Which Should You Use?
Lithium-silicate densifiers are widely used on polished and exposed concrete because they are designed to penetrate and react within the surface while being relatively straightforward to apply when the floor is properly prepared. Euclid’s UltraSil Li+ is a clear example: it is currently documented as a water-based lithium-silicate solution used to densify, seal and dustproof concrete.
Blended-silicate products combine more than one silicate chemistry. PROSOCO currently markets its Blended Densifier as a high-performance blend intended to deliver strong results across a wide range of concrete surfaces.
| Option | Why buyers choose it | What still needs checking |
|---|---|---|
| Lithium silicate | Common polished-concrete choice, modern application, concrete-specific options widely available | Coverage, wet time, residue handling, slab porosity and finish |
| Blended silicate | Can suit varied concrete conditions and combine different reactive silicates | Exact formulation and manufacturer guidance |
| Sodium / potassium silicate | Long-established concrete densifier chemistries | Application technique, residue and compatibility with finishing process |
| Densifier + guard system | Useful where hardness plus stain management is needed | Guard compatibility, cleaning method and reapplication needs |
Do not choose only by the silicate name. A well-formulated product that matches the slab and is installed correctly is more important than selecting “lithium” simply because the word sounds more advanced.
What Should You Use on New or Freshly Trowelled Concrete?
Not every densifier should be applied at the same age. If you want to densify new concrete early, choose a product whose current instructions explicitly permit application to green or freshly trowelled concrete.
Euclid UltraSil 7 is currently documented for freshly trowelled or “green” concrete as well as older floors. UltraSil DC9 is also documented for freshly placed or existing concrete. PROSOCO LS/CS is marketed for freshly trowelled concrete or existing floors of any age.
These examples show why timing should come from the exact product TDS. The contractor must also coordinate densification with curing methods, later coatings, polishing and any floor-flatness or burnishing requirements.
What Should You Use for a Polished Concrete Floor?
A concrete-specific densifier is commonly used as one stage of a polished-concrete system. The floor is mechanically ground, the densifier is applied at the approved stage, and later honing and polishing refine the surface.
Lithium-silicate systems are common in this application. PROSOCO LS and Euclid UltraSil Li+ are both positioned for concrete densification, while Euclid also publishes EUCO Diamond Hard, a silicate/siliconate blend designed to increase surface density, durability and abrasion resistance.
The densifier itself does not create the final polished gloss. Mechanical polishing creates the visual finish. A compatible guard may then be added where stain resistance or easier maintenance is required.
How Much Concrete Densifier Do You Need?
Coverage depends heavily on concrete porosity. An open, porous floor can absorb much more material than a dense power-trowelled slab. Grinding also changes absorption because it opens the surface and exposes different paste and aggregate.
Do not calculate a large project only from a headline coverage number. Ask the supplier for the current consumption range, then test a representative area. Watch how quickly the surface absorbs the product and whether excess liquid remains after the required wet time.
For large industrial floors, convert the trial result into litres per square metre and include realistic waste. This gives a more reliable purchase quantity than assuming every square metre of the slab behaves identically.
Surface Preparation: The Step That Determines Whether Densification Works
A densifier cannot react properly if it sits on oil, dirt, curing compound or an old sealer. The surface must be clean and open enough for the treatment to penetrate.
Depending on the floor, preparation may involve industrial scrubbing, degreasing, grinding or removal of a weak laitance layer. Polished-concrete systems normally include mechanical grinding as part of the finishing process.
Before full application, test water absorption. If water beads strongly on the floor, there may be a barrier that needs to be removed before using a penetrating product.
When You Should Not Use a Densifier as the Main Solution
A densifier is not a cure for every concrete-floor problem. If the floor is deeply damaged, chemically attacked, badly uneven or structurally weak, another system may be necessary.
Deep spalling
Remove unsound concrete and rebuild the damaged section before final surface treatment.
Broken joints
Repair joint edges and understand the movement or impact causing the failure.
Heavy chemical exposure
Use a suitable chemical-resistant coating or lining if the process requires a protective barrier.
Severe oil contamination
Oil can block penetration. Degreasing and a trial are essential before densification.
Need for colour
If the project requires a coloured seamless finish, a resin coating may be more appropriate.
Major unevenness
An overlay or levelling system may be required before a final surface treatment.
Concrete Densifier Options Compared
| Product category | Best fit | Key benefit | Main caution |
|---|---|---|---|
| Lithium-silicate densifier | Existing exposed and polished concrete | Widely used concrete-specific reactive chemistry | Must match preparation, porosity and finish |
| Blended-silicate densifier | Varied concrete surfaces | Designed to combine silicate performance across floor conditions | Compare exact manufacturer formulation and TDS |
| Cure-and-densify silicate | New or freshly placed concrete where approved | Can combine early concrete treatment with densification | Application timing is product-specific |
| Densifier + stain guard | Polished or exposed floors needing easier stain maintenance | Separates internal densification from topical stain management | A guard is a separate maintenance component |
| Dry-shake hardener | New heavy-duty industrial slab | Installed into the fresh concrete wearing surface | Not a retrofit liquid densifier |
| Epoxy / PU floor | Chemical, colour, hygiene or seamless-floor needs | Creates a distinct protective layer | Different function from concrete densification |
Best Concrete Dust-Control Options Compared
| Method | Best use | Main strength | Main limitation |
|---|---|---|---|
| Reactive concrete densifier | Sound porous or dusty concrete | Chemically hardens within the surface and supports long-term dust reduction | Does not repair deep defects or create a thick chemical barrier |
| Grinding + densifier | Weak laitance, old treatments or polished concrete | Removes weak/blocked surface and treats sounder concrete beneath | More labour, dust-control equipment and downtime |
| Concrete overlay / resurfacing | More severely worn or uneven concrete | Rebuilds a usable surface | Greater preparation, cost and curing time |
| Epoxy / resin coating | Dust control plus colour, hygiene or chemical protection | Creates a separate protective wearing surface | Needs proper preparation and moisture/substrate control |
| Cleaning only | Removing loose dust temporarily | Immediate housekeeping improvement | Does not strengthen a weak dust-producing concrete surface |
How to Choose the Right Product to Densify a Concrete Floor
The right densifier is the one that matches the slab age, porosity, surface condition, polishing plan, traffic and exposure. Use the following sequence.
Diagnose the slab
Check strength, laitance, dusting, contamination, coatings, joints, cracks, moisture and previous treatments.
Define the finish
Decide whether the goal is basic dustproofing, polished concrete, burnished concrete or a base for another protective system.
Match the TDS
Choose a product that explicitly covers concrete, slab age, preparation and your intended polishing or traffic conditions.
Run a trial
Confirm absorption, application rate, residue, appearance and polishing response before full-floor rollout.
1. Start with slab condition
A dense, well-finished industrial slab may absorb differently from an older porous warehouse floor. A surface contaminated by oil or curing compounds may reject a penetrating treatment. A weak laitance layer may need grinding first. These differences directly affect coverage and reaction.
2. Decide whether you need hardening, staining protection or chemical resistance
Concrete densification is not the same as stain guarding. PROSOCO notes that densified concrete is still porous and may need a guard where staining is a concern. Industrial buyers should define the operational exposure before choosing one bottle to solve multiple problems.
3. Check technical data, not only marketing copy
A credible concrete-densifier TDS should identify the approved substrate, active chemistry, coverage range, preparation, application method, wet time, excess removal, temperature limits, traffic time and compatibility with polishing or other treatments.
4. Evaluate total installed cost
Container price is only one part of cost. Coverage, number of passes, labour, cleaning of residue, grinding steps, shutdown time, guards, burnishing and maintenance all affect the final rupees per square metre.
Concrete Densifier vs Epoxy Coating vs Dry-Shake Floor Hardener
Industrial buyers often compare these systems as if they are substitutes, but they work at different stages and solve different problems. A penetrating densifier reacts within an existing concrete surface. An epoxy coating forms a resin layer on top of prepared concrete. A dry-shake hardener is normally applied while fresh concrete is still being finished, adding a hard-wearing cementitious topping at construction stage.
| System | How it works | Best fit | Main limitation |
|---|---|---|---|
| Reactive concrete densifier | Penetrates and reacts within cement paste | Dust reduction, exposed concrete, polished concrete, surface hardening | Does not create a thick chemical-resistant barrier |
| Epoxy / resin coating | Forms a bonded polymer layer above concrete | Colour, chemical resistance, hygiene zones, defined coating performance | Requires preparation; coating can wear, peel or delaminate if system/design is wrong |
| Dry-shake hardener | Worked into fresh concrete during finishing | New industrial floors needing enhanced wearing surface from day one | Not a retrofit solution for a finished old slab |
| Repair overlay / screed | Adds new cementitious or resin-modified material | Uneven, damaged or worn floors needing section rebuild | More preparation, thickness and curing considerations |
If your factory floor is already sound and the main complaint is dusting or difficulty holding a polished finish, a concrete densifier can be a logical route. If acids, solvents, oils, hygiene regulations or colour zoning are the main issue, a resin system may be more appropriate. If the slab is badly worn or out of level, repair or overlay work may have to happen before any densifier is considered.
This system-level decision is important because densifiers are often marketed as “heavy-duty industrial” products even when the actual problem is not surface hardness. The correct specification starts with failure mode, expected traffic, chemical exposure, cleaning regime, downtime, slip requirements, aesthetics and total lifecycle maintenance.
Why forklift areas need more than a hardness claim
Forklift routes concentrate wheel loads at joints, turning zones and rack aisles. Surface densification may help a suitable slab resist abrasion and powdering, but the floor still depends on joint design, edge condition, slab flatness and concrete quality. If joint arrises are breaking, densifier alone will not rebuild them. If tyres are leaving black marks, cleaning and protective treatments may be separate considerations.
Why food, pharma and chemical plants need a separate decision
Where strong acids, aggressive process chemicals, hot washdown, thermal shock or strict hygiene requirements are present, exposed densified concrete may not provide the barrier the operation needs. In those areas, the consultant should evaluate a chemical-resistant resin, polyurethane-cement system or another specialised floor build-up. A densifier can still be useful in adjacent dry logistics or warehouse zones, but it should not be stretched beyond its role.
Why old concrete needs diagnosis before densification
Older industrial slabs may contain oil deep in the pores, curing compounds, previous sealers, densifiers, paint or weak laitance. Any of these can change penetration. A small water-absorption observation, grinding trial and representative densifier mock-up can reveal more than a generic coverage estimate. If one area absorbs immediately and another beads water, the floor may need different preparation before a uniform result is possible.
What a Concrete Densifier Does Not Do
Concrete-floor problems are often misdiagnosed because “hardener” sounds like a universal repair. A densifier does not rebuild missing concrete, bridge active cracks or correct a failed joint. It does not turn poor structural concrete into high-strength concrete and it does not create the chemical barrier of an epoxy or polyurethane coating.
This is also why a stone densifier should not be re-labelled as a concrete densifier without product-specific evidence. The correct chemistry may be related, but the substrate specification and application requirements must still be documented.
Typical Concrete Floor Densification Workflow
The exact method must follow the selected product TDS, but a professional workflow normally includes the following decisions.
- Inspect and test the slab. Record cracks, joints, contamination, curing compound, coatings, moisture and areas of weak concrete.
- Complete necessary repairs. Repair broken joints, spalls and other defects with systems compatible with the final finish.
- Prepare the surface. Remove contamination and any barrier that prevents penetration. In polished concrete, complete the specified grinding stages first.
- Apply the densifier evenly. Use the manufacturer-approved sprayer, applicator or microfibre method. Avoid puddles and untreated dry zones.
- Maintain the required wet time. Different products have different instructions. Do not invent one universal dwell time.
- Remove or redistribute excess as required. Some modern products are designed for no flushing; others require specific cleanup.
- Continue polishing or guarding. If the floor is being polished, follow the agreed grit sequence and compatible guard/burnishing procedure.
- Open to traffic only as permitted. Follow the current technical sheet for traffic time and final performance development.
Concrete Densifier Procurement Checklist
| Question to ask supplier | Why it matters |
|---|---|
| Does the current TDS explicitly list concrete? | Prevents extending stone or masonry claims to industrial concrete. |
| Is it approved for new concrete, old concrete or both? | Age and hydration stage affect application. |
| What is the active chemistry? | Helps compare lithium, sodium, potassium, blends and other systems. |
| What preparation is required? | Penetrating products fail when coatings or contamination block absorption. |
| What is the coverage range on polished vs porous concrete? | Coverage can change dramatically with absorption. |
| Does excess product need flushing or removal? | Directly affects labour, residue risk and downtime. |
| Can it be used within our polishing sequence? | Timing affects grinding, colour and finish. |
| Do we need a separate stain guard? | Densification alone may not be enough for oil or food exposure. |
| What is the documented traffic time? | Critical for warehouses and live factories. |
| Can the supplier support a site trial? | The densifier should be proven on the actual slab before the full area is treated. |
Can DUSH DENSI-MAX ULTRA Be Used to Densify a Concrete Floor?

DUSH DENSI-MAX ULTRA
DUSH currently positions DENSI-MAX ULTRA as an ultra-premium densifier for high-end Italian marble and premium natural stone. The current DUSH product page also describes intensive treatment for porous white marble, Makrana marble and sandstone.
Based on DUSH’s current public documentation, DENSI-MAX ULTRA should be treated as a marble and natural-stone densifier, not automatically as a concrete-floor densifier. The current DUSH page describes highly porous white marble, Makrana marble and sandstone rather than concrete. If DUSH has a newer concrete-specific TDS, test report or written approval that explicitly lists concrete, use that document as the controlling specification. Until then, choose a product whose current technical sheet explicitly covers concrete densification.
Frequently Asked Questions
These questions are written for architects, factory owners, warehouse managers, flooring contractors, consultants and procurement teams evaluating densifiers in India.
What is a concrete densifier?
A concrete densifier is a reactive treatment, usually based on silicate chemistry, that penetrates the concrete surface and reacts with calcium-bearing compounds in the cement paste. The reaction forms additional hard mineral structure within the pores, helping create a tighter, harder and less dusty surface.
What should I use to densify an existing concrete floor?
For a sound existing concrete floor, use a concrete-specific reactive silicate densifier whose current TDS matches the slab and finish. Lithium-silicate and proven blended-silicate systems are common professional choices. Deeply damaged or structurally weak concrete may require repair or resurfacing first.
Is DUSH DENSI-MAX ULTRA a concrete densifier?
Based on DUSH current public product page and catalogue reviewed in August 2026, DENSI-MAX ULTRA is documented as a densifier for premium marble, Italian marble and natural stone. The public product information does not currently establish it as an industrial concrete-floor densifier.
Can I use DUSH DENSI-MAX ULTRA on an industrial concrete floor?
Do not specify it for industrial concrete solely from the current public marketing page. Use it on concrete only if DUSH provides a current product TDS or written technical approval that explicitly lists concrete and gives the required preparation, coverage, application and curing instructions.
Why does a densifier reduce concrete dusting?
Reactive silicate densifiers can tighten and harden the weak, porous cement-paste structure near the surface. A denser surface is less prone to powdering under traffic, although severe dusting caused by weak concrete, overwatering, poor finishing or contamination may require more than a densifier.
Does a densifier make concrete waterproof?
No. Densification can reduce open pore volume, but it does not automatically make concrete waterproof or fully stain-proof. Separate guards, sealers, membranes or waterproofing systems may be required depending on exposure.
Does a densifier repair cracks?
No. A densifier is not a structural crack-repair material, joint filler or patching mortar. Moving cracks, broken joints and damaged concrete should be diagnosed and repaired with an appropriate system before or alongside floor treatment.
Does a densifier replace epoxy flooring?
No. A densifier and an epoxy coating solve different problems. Densifiers react within concrete and keep the concrete appearance; epoxy forms a resinous coating that can provide colour, chemical resistance and a different wearing surface.
Is lithium silicate always better than sodium silicate?
Not automatically. Lithium systems are widely used because they can be fast, convenient and low in problematic residue, but product design, solids, substrate condition and application quality matter. Sodium, potassium, blended silicate and colloidal-silica systems can also be appropriate when properly specified.
When should a densifier be applied during polishing?
The correct stage depends on the system and slab. Some polished-concrete workflows apply densifier after initial grinding and before later polishing steps. Always follow the densifier manufacturer current instructions and the polishing contractor approved method.
Can densifier be used on old concrete?
Many concrete-specific densifiers are intended for existing as well as newer concrete. Old slabs still need evaluation for oil contamination, curing compounds, sealers, weak laitance, moisture, repairs and previous coatings that could block penetration.
Can densifier be used on new concrete?
Some concrete-specific products are designed for green or newly placed concrete, while others are intended for cured floors or polishing systems. The product TDS must explicitly support the age and condition of the concrete.
Does concrete need grinding before densifier?
Not in every system. Polished-concrete projects typically grind as part of the finishing sequence, while dustproofing of a sound industrial slab may use a different preparation method. Surface contamination, laitance and coatings must be addressed so the treatment can penetrate.
How much densifier is required per square metre?
Coverage varies significantly with porosity, finish and product chemistry. Do not estimate quantity from another brand coverage rate. Use the selected product current TDS, carry out a representative trial and include additional material for highly absorptive areas.
Will densifier make an industrial floor shiny?
A densifier itself is primarily a chemical hardening treatment. Higher gloss usually comes from mechanical honing, polishing and burnishing. Some systems can improve appearance or polish retention, but a densifier should not be sold as a substitute for the polishing process.
Can a densifier protect against forklift traffic?
A properly specified densifier can improve the concrete surface resistance to abrasion and dusting, but it cannot compensate for a weak slab, failed joints, impact damage or inadequate structural design. Forklift routes should be evaluated as part of the complete floor system.
Is a densifier suitable for warehouses?
Concrete-specific densifiers are commonly used in warehouse and distribution-floor systems where a hard, dust-reduced concrete surface is desired. Product suitability still depends on the slab and whether chemical, oil, tyre or stain exposure requires an additional protective treatment.
Should I use lithium silicate to densify concrete?
Lithium silicate is a common professional choice for densifying concrete, especially exposed and polished floors. It is not automatically the best option for every slab; blended and other reactive silicates can also be suitable when their technical data and application requirements match the project.
What should I check in a concrete densifier TDS?
Check the approved substrate, active chemistry, surface preparation, application rate, wet time, number of coats, removal of excess, cure or traffic time, temperature limits, compatibility with polishing and guards, VOC data, safety information and stated limitations.
Why is a site trial important?
Concrete varies from slab to slab and even within the same floor. A trial helps confirm absorption, appearance, residue, application rate, polishing response and whether the chosen treatment is addressing the actual problem.
What if my industrial floor is already badly damaged?
If the floor has deep spalling, severe dusting, moving cracks, failed joints, oil saturation or delamination, start with diagnosis and repairs. Densification works best when the underlying concrete is suitable for treatment.
How should an Indian buyer compare concrete densifiers?
Compare the current TDS, concrete-specific use, chemistry, coverage on your slab, application labour, compatibility with polishing, dustproofing objective, need for stain protection, technical support, repeat supply and total installed cost rather than only container price.
Should I choose DUSH DENSI-MAX ULTRA for concrete today?
Not from the current public documentation alone. DUSH DENSI-MAX ULTRA is currently presented for premium marble and natural stone. For an industrial concrete floor, request written concrete-specific technical approval or select a product whose current TDS explicitly covers concrete densification.
Technical References Used for This Guide
This article distinguishes manufacturer-published information from independent proof. The sources below are official manufacturer pages used to understand each product current documented substrate and chemistry.
- DUSH DENSI-MAX ULTRA official product page — current public use is premium marble / white marble / sandstone / natural stone.
- DUSH All Products Catalogue — lists DENSI-MAX ULTRA as an ultra-premium marble densifier and does not currently list a DUSH surface densifier specifically for industrial concrete.
- PROSOCO Consolideck LS and LS/CS official technical pages — examples of concrete-specific reactive silicate densifier documentation.
- PROSOCO concrete densification technical guide — manufacturer explanation of silicate reaction and CSH formation in concrete.
- Euclid Chemical UltraSil Li+, UltraSil 7 and EUCO Diamond Hard official pages — examples of concrete-specific lithium-silicate and reactive densifier products.
Product pages and technical documentation can change. Re-check the latest TDS before specification, pricing, procurement or application.
Need the Correct DUSH System for Your Floor?
If the substrate is marble, natural stone or concrete, send the project details to DUSH and request the exact current TDS before ordering. For industrial concrete, ask specifically for a product that is documented for concrete densification.
Ask DUSH About Your Floor
Share the substrate, floor age, traffic, current condition and the result you need.