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คณะอุตสาหกรรมอาหาร
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วิทยาลัยเทคโนโลยีและนวัตกรรมวัสดุ
This project aims to develop a nanofilm that effectively blocks near-infrared radiation, possesses self-cleaning properties, and maintains transparency to allow natural light into buildings, thereby reducing energy consumption from cooling. The prototype has potential applications in the glass or automotive film industries.

This work presents the development of a multipurpose plasma water generator using atmospheric pressure plasma technology. An array-based plasma generation system was designed to enhance the efficiency of producing Plasma Activated Water (PAW), ensuring consistent quality and supporting diverse applications. The device can be operated through an automated control system integrated with IoT connectivity, enabling remote command, status monitoring, and real-time performance tracking. This improves convenience, reduces chemical usage, and enables effective and safe applications in agriculture, sterilization, water treatment, and various industrial processes.