Discs were stacked (10 layers) and hot‑pressed at 130 °C for 5 min to form cylindrical PCM blocks (diameter = 50 mm, height = 20 mm).
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Key attributes of PPPE‑097 include:
A prototype solar‑thermal water‑heating system employing PPPE‑097 demonstrated a compared with a conventional water‑tank. The results suggest that PPPE‑097 is a promising candidate for scalable TES in residential and industrial contexts.
It seems like you've provided a code or identifier, "PPPE-097," which could refer to a wide range of things depending on the context, such as a product code, a document ID, a code for a specific piece of media, or anything else that might be cataloged or identified in such a manner. Discs were stacked (10 layers) and hot‑pressed at
| Technique | Instrument | Parameters | |-----------|------------|------------| | Differential Scanning Calorimetry (DSC) | TA Instruments Q2000 | Heating/cooling rate 5 °C min⁻¹ (30‑80 °C) | | Thermogravimetric Analysis (TGA) | Mettler‑Toledo TGA/DSC 1 | 10 °C min⁻¹ under N₂ | | Thermal Conductivity (steady‑state) | Hot Disk TPS 2500 | 0.5 W power, 10 s measurement | | Scanning Electron Microscopy (SEM) | FEI Nova NanoSEM 450 | 5 kV, gold‑sputtered | | Mechanical Compression Test | Instron 5969 | 10 mm min⁻¹, 0‑30 % strain | | Cycling Test | Custom thermostatic chamber | 1000 cycles, 10 °C min⁻¹ ramp, 52 °C setpoint |
Paraffin waxes are among the most widely studied organic PCMs due to their high latent heat, chemical inertness, and non‑toxicity. However, paraffin suffers from and shape‑instability (liquid leakage) during cycling, limiting practical deployment [4]. Numerous strategies—nanofiller incorporation, polymer encapsulation, and composite formation—have been pursued to overcome these shortcomings [5‑8].
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The masterbatch was blended with the paraffin blend (45 wt %) in a Brabender mixer at 150 °C for 7 min (30 rpm), yielding a homogeneous PP‑paraffin‑f‑GNP mixture.