01
Initial build
Bottleneck-oriented means optimizing where the largest losses occur today: repairs, rebuilds, and recurring replacement cycles. Key question: what limits long-term technical and economic performance?

Bottleneck-oriented concrete strategy
Conventional concrete drives high follow-up costs and avoidable emissions. EVERBETON targets the limiting factor: durability and service life.
Rule of thumb: if service life increases to >2x, long-horizon models often show ~50% CO2 and ~70-80% total cost reduction.
What is Everbeton
EVERBETON is an additive system for watertight, long-life concrete structures. The approach is bottleneck-oriented: not first cost, but service life as the limiting technical and economic factor.
Target outcome: fewer rebuilds, more stable asset performance, lower life-cycle cost, and avoidable CO2 emissions.
Technical focus on impermeability and durability instead of late damage compensation.
Economic focus on the multi-decade cost path, not only initial build cost.
Climate focus through fewer rebuild cycles and less material demand across the life cycle.
~1 t
CO2 per t concrete
Rough estimate for quick scenario checks.
50 years
Typical service life
Conventional rebuild cycle in many assets.
>2x
Service-life leverage
Longer durability cuts rebuild frequency.
70-80%
Cost potential
Possible over 100 years incl. inflation.
Bottleneck-oriented
The cost loop is structural: build, degrade, repair, rebuild.
When structures fail early, both emissions and budget pressure are generated multiple times. This is exactly where EVERBETON acts.
01
Bottleneck-oriented means optimizing where the largest losses occur today: repairs, rebuilds, and recurring replacement cycles. Key question: what limits long-term technical and economic performance?
02
Durability deficits shorten service life and increase operational risk. In concrete structures, water ingress and durability failures often define the limit.
03
Each rebuild re-opens major material, logistics, and financing effort. Inflation amplifies the nominal burden of future rebuilds.
04
Choosing short-life solutions is often economically unreasonable and climatically avoidable across the life cycle. Result: increase service life instead of paying repeatedly for damage recovery.
Cycle model (simplified)
Every additional rebuild repeats cost and emissions.
| Scenario | Value |
|---|---|
| Baseline | 1.00x |
| With EVERBETON | 1.00x |
| Savings | 0.0% |
| Scenario | Value |
|---|---|
| Baseline | 1.00x |
| With EVERBETON | 1.00x |
| Savings | 0.0% |
Quantify impact
The models are intentionally simple and expose the leverage of service life, rebuild cycles, and inflation.
Compares rebuild counts and resulting total CO2 emissions over a fixed horizon.
Time horizon: 100 years
Relative CO2 saved
50.0%
Fewer rebuild cycles directly reduce total emissions.
Baseline rebuilds
2
Rebuilds with EVERBETON
1
Core inputs
Advanced assumptions
Simplified model. Real emissions depend on mix design, cement share, logistics, and execution. Use project-specific data for decisions.
Nominal cost model including inflation: initial build plus all required rebuilds within the horizon.
Relative savings
72.9%
€2,691,588
Main lever: fewer rebuilds. Every avoided replacement removes a major future nominal cost block.
Baseline total cost
€3,691,588
Total cost with EVERBETON
€1,000,000
Core inputs
Advanced assumptions
| Event | Year | Nominal cost |
|---|---|---|
| Initial build | 0 | €1,000,000 |
| Rebuild | 50 | €2,691,588 |
| Event | Year | Nominal cost |
|---|---|---|
| Initial build | 0 | €1,000,000 |
Simplified nominal model without discounting and without operational costs. Designed to expose rebuild leverage.
Մինչև նկուղներից ենթակառուցվածքներ. Everbeton-ը նախատեսված է պահանջկոտ կառուցվածքների համար։
Հաշվարկեք Everbeton-ի պահանջվող քանակը՝ ըստ բետոնի ծավալի և ցեմենտի պարունակության։
Արդյունք
Հաշվարկը հիմնված է դասերի համար բնորոշ ցեմենտի պարունակության վրա։
Sustainability
Conventional concrete has a service life of about 50 years. With Everbeton you extend this to over 200 years - meaning less demolition, less new construction, and a significantly lower ecological footprint.
By quadrupling concrete service life, resources are conserved and less CO2 is caused by new construction.
Structures don't need to be renovated or replaced every 50 years - saving material and energy.
Long-term savings through reduced maintenance and refurbishment costs across generations.
Ideal for preserving historic structures without complex and costly restoration.
Lifecycle impact
Planning certainty rises while costs and risk decline.
More certainty, less risk
Fewer unplanned interventions stabilize budgets and reduce operational risk.
WU vs Everbeton
Drag the slider to compare typical WU concrete against Everbeton treated concrete under hydrostatic pressure.


Lifecycle
Compare the lifecycle of standard concrete versus Everbeton across decades.
Benefits
Based on over 60 years of independent reports, tests, and expert assessments. Certified to DIN EN 934-2:2012.
Օպտիմացված միկրոկառուցվածք՝ կայուն հոսունությամբ։
Կարծր մակերեսներ՝ առանց փոշոտման և ճաքոտման։
Բարձր կոհեզիա և ավելի քիչ խոռոչներ։
Ավելի արագ ֆինիշ և լավ մշակելիություն։
Քիչ աղային արտահոսքեր և բարձր քլորիդակայունություն։
Բարձր դիմացկունություն սառեցման/հալեցման ցիկլերում։
How it works
Կոպոլիմերային կազմը արձագանքում է պորտլանդцемենտի հետ և մշտապես խտացնում է կապիլյարները։
Water-soluble components such as calcium hydroxide are converted into insoluble minerals (tricalcium silicate and tricalcium alumino-silicate). These grow as fine microcrystals into the capillaries and reliably prevent water ingress.
Macropores are reduced to hydrophobic micropores. Concrete remains diffusion-open (breathable) without condensate formation.
Reference projects
Selected flagship projects that show where durability matters most.
Switzerland
Type
Infrastructure
Year
2016
Concrete volume
2.3 Mio m³
6+
Mio m³ protected
12
Countries
Real-world impact
Less downtime, fewer closures, and more predictable maintenance cycles for operators and the public.

Every lane closure costs time and money. Longer service life means fewer roadworks and fewer jams.
Everbeton extends service life and reduces disruptive repair cycles.

Denser concrete and reduced ingress help keep structures stable under moisture and chloride exposure.
Capillaries are sealed, moisture stays out, and reinforcement is protected.

Reduced renovation cycles mean fewer blocked routes and a more reliable urban infrastructure.
Fewer interventions keep cities accessible and budgets stable over decades.
FAQ
Straightforward responses to the most common questions from planners and contractors.
Contact
Have questions about Everbeton or need individual advice? Our expert team is happy to help.
Phone
+49 69 000 000
technik@everbeton.de
Address
Ernst-Zindel-Straße 8, 06847 Dessau-Roßlau
25-year warranty on all professionally executed Everbeton structures, plus on-site assistance including training, instruction, or phone consultation.