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medium and high temperature photothermal solution-0

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Medium and High Temperature Photothermal Solution

Nov.26.2025

Parabolic trough systems use long, curved mirrors to concentrate sunlight onto a receiver tube running along their focal line. A heat transfer fluid (e.g., thermal oil) inside the tube is heated to high temperatures (150°C - 400°C). This hot fluid is then used directly or via a heat exchanger to provide thermal energy for industrial processes.This technology provides process heat for various industries, including:Food & Beverage: Pasteurization, sterilization, and drying;Textiles: Dyeing, bleaching, and fabric drying;Chemicals: Distillation, evaporation, and pre-heating;Mining & Minerals: Ore processing and leaching;Paper & Pulp: Steam generation for pulping and drying.


Parabolic trough systems use long, curved mirrors to concentrate sunlight onto a receiver tube running along their focal line. A heat transfer fluid1.pngParabolic trough systems use long, curved mirrors to concentrate sunlight onto a receiver tube running along their focal line. A heat transfer fluid2.jpg

Parabolic trough systems use long, curved mirrors to concentrate sunlight onto a receiver tube running along their focal line. A heat transfer fluid3.jpgParabolic trough systems use long, curved mirrors to concentrate sunlight onto a receiver tube running along their focal line. A heat transfer fluid4.jpg

Parabolic trough systems use long, curved mirrors to concentrate sunlight onto a receiver tube running along their focal line. A heat transfer fluid5.jpgParabolic trough systems use long, curved mirrors to concentrate sunlight onto a receiver tube running along their focal line. A heat transfer fluid6.jpg

Parabolic trough systems use long, curved mirrors to concentrate sunlight onto a receiver tube running along their focal line. A heat transfer fluid7.pngParabolic trough systems use long, curved mirrors to concentrate sunlight onto a receiver tube running along their focal line. A heat transfer fluid8.png

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