A solution for optimizing and scaling up lipid extraction from fermentation broths using advanced pilot-scale technologies to improve efficiency and yield. The approach combines sample analysis, process design, pilot tri...
Lambton College presents an AI-driven optimization platform for fermentation-based manufacturing, enhancing yield, efficiency, and product consistency through real-time adaptive control. It leverages machine learning to ...
Lambton College's predictive AI model optimizes food formulations by integrating multisource datasets and machine learning. It predicts taste, texture, and quality while ensuring compliance and safety, enhancing R&D effi...
This innovative solution combines biochar application with precision irrigation to enhance water retention, reduce irrigation needs, and boost crop yields in commercial agriculture. Field validation aims to demonstrate i...
Innovative biodegradable cationic polymers designed for superior delivery of active ingredients, ensuring eco-friendly and efficient application across industrial, agricultural, and consumer sectors by overcoming existin...
Revolutionizing cocoa processing with a novel centrifugal impact method that enhances nib purity and yield while minimizing energy use and shell contamination. This innovative approach significantly improves separation e...
This innovative process utilizes microbial fermentation to convert unrefined lactose streams, like whey permeate, into valuable short-chain fatty acids (SCFAs) such as acetate, propionate, and butyrate. It supports bioec...
Design and fabrication of custom aluminum cylindrical batteries using electrochemistry and battery production laboratory capabilities. The work supports iterative prototype development and validation through testing of e...
A flexible coil coating pilot unit designed and constructed for testing and scaling coating processes under real-world conditions, bridging the gap between lab-scale and industrial implementation.
Explore the impact of various fat extraction methods on peroxide values to enhance lipid stability. This research identifies optimal techniques to reduce oxidation, ensuring quality in food and industrial applications.
Lambton College offers advanced testing services using its weatherometer to evaluate and enhance the long-term durability of polyolefin materials. This service accelerates aging tests to simulate real-world stressors, ai...
A cutting-edge protocol for optimizing Agrobacterium-mediated transformation, focusing on single-copy T-DNA insertions. This approach enhances transformation efficiency, reduces somaclonal variation, and is adaptable acr...
A novel testing framework combining microbial cultivation and electrochemical monitoring to predict microbially induced corrosion (MIC) in coated materials. This approach simulates environmental conditions to enhance pre...
A predictive model designed to optimize injection molding using recycled resins, enhancing production efficiency and product quality by forecasting cycle time impacts based on variable resin ratios and conditions.