AquiPor Technologies — Nanoscale Permeable Concrete

Product · Water Management

Product · InnDex 22 · Claimed, not yet evidenced · High specification risk

Nanoscale permeable concrete aggregate designed to resist clogging in stormwater infiltration applications.

AquiPor Inside embeds a proprietary nanoscale permeable aggregate into standard concrete to create a porous matrix intended to maintain long-term infiltration performance. It addresses conventional permeable concrete's susceptibility to sediment clogging and hydraulic bypass—a common failure mode in stormwater management. The claimed mechanism relies on sub-micron porosity geometry to reject sediment while maintaining permeability.

AquiPor embeds a proprietary nanoscale permeable aggregate into standard concrete to maintain long-term hydraulic performance in stormwater infiltration applications — targeting the documented and costly failure mode of conventional permeable concrete, which clogs progressively under real sediment loads and loses its designed function. The problem it addresses is real and well understood in stormwater engineering, and a solution that genuinely extended service life and reduced maintenance frequency would carry meaningful infrastructure value. The evidence currently available is four small demonstration sites with no performance data beyond two to three years, no municipal contracts, no third-party specification adoption, and no path through ASTM or stormwater design standards that has been publicly evidenced. The proprietary nanoscale aggregate composition is undisclosed, which makes independent replication and quality control assessment impossible, and the long-term environmental questions around nanomaterial durability and leaching have not been publicly characterised. Pilot projects are scheduled for 2026–2027 but have not yet reported. If the nanoscale porosity degrades or clogs through biological growth or chemical precipitation, remediation may be costlier than removing and reinstalling standard permeable concrete. A specifier should track AquiPor as a promising approach to a genuine problem, but the current evidence does not support use on a project with performance guarantee requirements.

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Reality check

Company self-reports 97.2% particulate and 82% tire-wear toxin filtration via unnamed third-party testing, but no test reports, peer-review, or independent lab validation are publicly available. Claims infrastructure-grade compressive strength with no published structural data. Three StartEngine crowdfunding rounds (2023–present) raised ~$2.4M against a self-assessed $65.6M valuation—valuation-to-capital ratio is unusually high and signals pre-revenue or very early revenue stage. Four small demo installations mentioned without specification, location, or performance outcome documentation. 'Slated for 2026–2027' language for pilot projects indicates no current real-world performance data. No municipal or commercial adoption evidence found. Website metadata shows recent updates (Oct 2025) but no technical publications, certifications (ASTM, NSF), or third-party endorsements are evident.

#permeable_concrete #stormwater_infiltration #nanomaterials #clogging_resistance #low_impact_development

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