For Canadian long-term care (LTC) procurement professionals, selecting the right underpad requires balancing absorbency performance, resident skin health, environmental commitments, and budget constraints. Two surface materials — polylactic acid (PLA) and standard polypropylene (PP) — offer distinctly different value propositions. This comparison examines performance across the metrics that matter in Canadian LTC facilities.
Absorbency Mechanisms and SAP Content
Both PLA-surface and polypropylene underpads rely on sodium polyacrylate superabsorbent polymer (SAP) as the primary absorbent layer. The surface material does not determine total absorbency — SAP loading does. A typical 60 x 90 cm underpad for moderate-to-heavy incontinence contains 12–18 g of SAP, providing a laboratory-rated capacity of 1,200–1,800 mL. In practice, Canadian LTC facilities report 800–1,200 mL of real-world retention, comfortably covering overnight use. Both PLA and PP underpad constructions achieve identical SAP grammage, meaning total absorbency capacity is a specification procurement teams control through product tier selection rather than a differentiator between surface materials.
PLA vs Polypropylene Fluid Acquisition Speed
Acquisition speed differs measurably between the two surfaces. Polypropylene, a petroleum-derived nonwoven with hydrophobic fibres, channels fluid rapidly downward, achieving acquisition times of 2–4 seconds in standardised testing. PLA, a biopolymer from fermented corn starch, is more hydrophilic, slowing initial strike-through to 4–7 seconds depending on nonwoven construction. Advancements in PLA processing — including apertured-film laminates and gradient-density fibre bonding — have narrowed this gap. Canadian LTC facilities trialling modern PLA-surface underpads report acquisition within one second of comparable PP products — a clinically negligible difference for continent residents and manageable for high-output cases with appropriate change intervals.
Skin Health Considerations
Incontinence-associated dermatitis affects an estimated 40–50% of incontinent LTC residents. Polypropylene's rapid fluid transfer keeps the skin-contact surface drier between voids, a recognised advantage for IAD prevention. PLA's slower acquisition means moisture resides at the surface marginally longer, potentially increasing skin maceration risk in immobile residents with frequent voids. Counterbalancing this, PLA carries no residual petroleum-processing compounds, which some procurement teams consider relevant for residents with sensitive skin. A hybrid approach — PLA-surface underpads for continent residents requiring positional protection and PP underpads for incontinent residents — is gaining traction in Ontario LTC homes.
Odour Control Performance
The SAP core neutralises ammonia-forming bacteria when urine is sequestered, so both materials provide comparable baseline odour control when changed at appropriate intervals. Canadian LTC operators report no statistically significant difference in odour perception between well-designed PLA and PP underpads when change protocols of every 4–6 hours are followed.
Cost per Change Analysis
Cost per change — not unit price — is the relevant metric. PLA-surface underpads carry a wholesale premium of 8–15% over equivalent polypropylene products. For a 100-bed LTC home using approximately 80 underpads per day, the annual cost difference between a $0.45 PLA underpad and a $0.39 PP underpad is roughly $1,750, or 2.3% of total incontinence supply spend — a manageable trade-off for facilities prioritising sustainability metrics. Standardising on a single underpad type further reduces SKU complexity and storage fragmentation.
Environmental Impact Comparison
This is where the two materials diverge most sharply. Polypropylene has a carbon footprint of approximately 2.7 kg CO₂ per kg of nonwoven fabric. PLA, from annually renewable corn starch, emits roughly 1.4 kg CO₂ per kg — a 48% reduction. PLA is commercially compostable in industrial facilities (ASTM D6400 certified), while PP persists in landfills for centuries. For Canadian LTC homes subject to evolving single-use plastic regulations — including the proposed Canada Single-Use Plastics Prohibition Regulations — adopting PLA-surface underpads positions facilities ahead of compliance timelines. Only the surface layer differs; the SAP core, fluff pulp, and polyethylene backsheet remain conventional, so PLA-surface underpads reduce total plastic content by 15–20% per unit.
LTC Procurement Recommendations
For Canadian LTC homes conducting a product evaluation, the following framework is recommended: (1) Tier residents by continence level — reserve rapid-acquisition PP underpads for high-output residents and deploy PLA-surface underpads for continent residents needing brief protection or for facilities with sustainability mandates. (2) Run a 30-day trial comparing both surface types on a single unit. Several Ontario LTC operators found PLA-surface underpads acceptable for 60–70% of their resident population. (3) Evaluate total cost of ownership including waste disposal fees. For procurement teams ready to trial, the CliniEco Underpad 60x90cm (10-Pack, PLA Surface) offers industry-standard SAP loading and a compostable PLA topsheet. Compare it against your current polypropylene underpad and request a facility sample to conduct your own evidence-based evaluation.
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