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วิทยาลัยอุตสาหกรรมการบินนานาชาติ
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วิทยาลัยเทคโนโลยีและนวัตกรรมวัสดุ
Oil and grease pollution is an urgent environmental problem severely affecting aquatic ecosystems and mangrove forests, particularly in the Mani Rat Canal area, Samut Sakhon Province, where no effective solution currently exists. This research aims to develop a "high-efficiency oil-trapping buoy using superhydrophobic membrane technology" by synthesizing cattail flowers into Carbon Nanofiber material for capturing oil and grease, combined with waste PET plastic collected from mangrove areas as the primary structural material. This approach not only addresses water pollution but also enables the recovered oil to be further processed and utilized, representing an environmentally friendly solution that promotes sustainable resource management.

คณะวิศวกรรมศาสตร์
This research develops a "Smart Battery Management System (BMS) Demonstration Kit for Electric Vehicles" — a scaled-down prototype that measures battery cell voltage, current, and temperature while precisely controlling cell balancing and charge-discharge processes, supported by a real-time dashboard. The kit integrates LSTM and GRU AI models for accurate prediction of battery voltage and State of Charge (SoC) under varying load conditions, enabling early anomaly detection and predictive maintenance. Designed for exhibition displays and as a teaching resource for higher education and vocational institutions, this demonstration kit delivers meaningful impact across education, research, and innovation development in Thailand's electric vehicle industry.