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February 11, 2026Sustainability0 citationsOpen Access

Fabrication and Performance Evaluation of Recyclable Material-Based Parabolic Solar Concentrators

FKFikret Şinasi KazancıoğluFAFaraz Afsharı

Key Points

  • The aim is to design and evaluate the performance of inexpensive, recyclable parabolic solar concentrators.
  • Designed parabolic solar concentrators using recyclable materials.
  • Tested three reflector types: aluminum foil, Plexiglass mirror tiles, and hybrid configuration.
  • Introduced a foldable tripod-mounted receiver for better stability and alignment.
  • Plexiglass mirror tiles showed better thermal performance than aluminum foil.
  • The hybrid design reached a maximum receiver temperature of 53 °C under tested conditions.
  • The findings support developing portable solar concentrators using low-cost materials.

Abstract

This study presents the design and experimental evaluation of a low-cost parabolic solar concentrator fabricated primarily from recyclable materials. Three reflector configurations—aluminum foil, Plexiglass mirror tiles, and a hybrid design with a peripheral aluminum foil strip—were experimentally assessed to examine their effects on solar concentration performance. A novel foldable and adjustable tripod-mounted receiver was introduced to improve focal alignment, portability, and mechanical stability by isolating the receiver load from the dish structure. Results indicate that Plexiglass mirror tiles significantly enhance thermal performance compared to aluminum foil, while the hybrid configuration achieved the highest receiver temperature of 53 °C under controlled radiation conditions. The findings demonstrate that efficient and portable parabolic solar concentrators can be developed using inexpensive and recyclable materials for small-scale solar thermal applications.

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Cite This Study

Kazancıoğlu et al. (2026) studied this question.

synapsesocial.com/papers/698c1bdc267fb587c655de50https://doi.org/10.3390/su18041748
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