Metallic nanoparticles embedded in cellulose nanocrystal (MNPs/CNC) films were prepared by solution casting for antimicrobial and fungus in edible peel fruit. MNPs/CNC was synthesized by ultrasonic waves. The as-synthesized was characterized by the chemical characteristics by the transmission electron microscope (TEM), X-ray photoelectron spectroscopy (XPS), X-ray diffraction analysis (XRD), Fourier transform infrared spectrometer (FT-IR), zeta potential analyzer, and UV-visible spectrophotometer. MNPs/CNC films had high potential in antimicrobial and fungus. Therefore, MNPs/CNC can be used to wrap edible peeled fruit to inhibit the growth of microorganisms, which can effectively extend the shelf life of fruits.
ประเทศไทยเป็นหนึ่งในผู้ส่งออกผลไม้รายสำคัญของโลก โดยเฉพาะผลไม้ที่รับประทานแบบไม่ปอกเปลือก ซึ่งผลไม้เหล่านี้มีแนวโน้มเสื่อมคุณภาพหรือเกิดการเน่าเสียระหว่างการขนส่ง อันเป็นผลมาจากการปนเปื้อนของเชื้อราและแบคทีเรียที่สามารถพบได้จากปัจจัยหลายประการ เช่น สภาพแวดล้อมในการเพาะปลูก องค์ประกอบของดิน หรือกระบวนการขนส่ง เชื้อจุลินทรีย์เหล่านี้สามารถเจริญเติบโตได้โดยใช้น้ำตาลจากผลไม้เป็นแหล่งพลังงาน ซึ่งส่งผลให้โครงสร้างของเนื้อผลไม้เปลี่ยนแปลง ความสดลดลง และกระตุ้นกระบวนการเน่าเสียให้เกิดขึ้นเร็วขึ้น งานวิจัยนี้จึงได้สังเคราะห์ฟิล์มเซลลูโลสนาโนคริสตัลที่ฝังอนุภาคนาโนโลหะสำหรับการยับยั้งจุลชีพบนผลไม้ที่รับประทานแบบไม่ปอกเปลือก สำหรับใช้เป็นบรรจุภัณฑ์อัจฉริยะ เพื่อช่วยยืดอายุการเก็บรักษา ลดอัตราการเน่าเสีย และรักษาคุณภาพของผลไม้ให้ยาวนานขึ้น

คณะวิศวกรรมศาสตร์
During the recent years, PM2.5 concentration is rising above the safety exposure limit in Thailand. PM2.5 could have originated from various sources such as exhaust fumes, open air burning, wildfire, etc. This concludes that all cities or places would have different PM source contributions. Most studies regarding the PM source findings were done based on chemical analysis. Our research team would like to predict the PM sources physically by nanostructures analysis. These methods would require the PM dust to be collected in a limited amount of time and dry. The use of paper filters may cause contamination from filter material which may cause errors in result evaluation. Our team suggests using Electrostatic Precipitator (ESP) where electrostatics is used to capture PM dust. This research mainly focuses on designing and building the ESP system for PM collection whereas the requirement is to collect at least 100 mg of PM dust within 1 day which would be adequate for nanostructure analysis. The study revealed that the customized ESP system could achieve of up to 80% collecting efficiency (which is more than the commercial ESP that we previously used), there’s a also a parametric study of relationships between flow velocity and collecting efficiency where collecting efficiency is inversely proportional to flow velocity. The suggested air velocity is not to exceed 2 m/s. However, there’re still more room for improvement of the ESP system for PM collection such as the convenience of PM collection process which resulted from the ESP construction geometry and sizes.

วิทยาลัยนวัตกรรมการผลิตขั้นสูง
Smart Agriculture has rapidly developed in recent years, particularly with the integration of robotics and automation technologies to improve production efficiency and reduce costs, thereby enhancing the quality of current agricultural practices. A key innovation in this area is the rail-based robotic arm, designed to enhance work efficiency using a rail system with high precision and effectiveness. The application of this robotic arm covers various processes, such as planting, sorting, maintenance, harvesting, and resource management, allowing continuous operation and reducing human labor in repetitive and high-risk tasks. Studies have shown that the use of rail-based robotic arms in agriculture can significantly improve work efficiency, reduce production costs, and effectively mitigate environmental impact. By using robots in agricultural processes, it is possible to reduce contamination, lower the risk of crop damage, and make agriculture more sustainable. Additionally, it can increase accuracy in operations on limited spaces or farms with diverse crops. From these findings, it can be concluded that adopting rail-based robotic arm technology in agriculture not only enhances long-term production efficiency but also promotes sustainable agriculture and maximizes resource use, meeting future agricultural demands

คณะวิศวกรรมศาสตร์
The project uses artificial intelligence (AI) and deep learning to develop a smart police system (Smart Police) to analyze the identity of individuals and vehicles suspected of involvement in crimes. The system uses CCTV cameras to detect people with concealed weapons and track vehicles involved in crimes. The system also sends alerts to the police when a crime is detected. The Smart Police system is a collaboration between the Faculty of Engineering, King Mongkut's Institute of Technology Ladkrabang, the Provincial Police Region 2, the Chachoengsao Foundation for Development, and the Smart City Office of Chachoengsao Province. The system is designed to prevent and deter crime, increase public safety and order, and build a network of cooperation between the government, the private sector, and the community. The system is currently under development, but it has the potential to be a valuable tool for law enforcement. The system could help to reduce crime and improve public safety in Chachoengsao Province and other parts of Thailand.