Research platform leveraging metal-organic frameworks (MOFs) to selectively remove organic compounds from coconut water while preserving sugars and electrolytes. Potential applications in food and beverage processing, water purification, and natural product refinement.
This research explores the use of metal-organic frameworks (MOFs), a class of porous, crystalline materials, to selectively adsorb organic compounds from coconut water while leaving beneficial sugars and electrolytes intact. The goal is to develop a targeted purification approach for coconut water and similar aqueous natural products, enabling producers to remove undesirable organic species without stripping out the nutrients that give these products their value. The work builds on well-established principles of selective adsorption and the researcher's prior experience with porous adsorbents such as activated carbon, zeolites, and silicalite.
The proposed approach centers on tailoring the pore size and surface chemistry of MOFs to discriminate between target organic molecules and the sugars and electrolytes that should remain in solution.
This is an early-stage, laboratory-scale research effort. The core hypothesis is supported by published literature and the researcher's prior hands-on experience synthesizing and testing porous adsorbents, but the specific application to coconut water has not yet been validated. The next steps involve feedstock characterization, MOF synthesis, and controlled adsorption experiments to demonstrate selectivity for organic compounds over sugars and electrolytes. The current readiness level is appropriate for collaborative feasibility studies and sponsored research with industry partners interested in beverage processing, water treatment, or natural product purification.
Miami University is a comprehensive public research university in Oxford, Ohio, known for a strong undergraduate focus alongside applied, collaborative research. Industry engagement centers on co-ops and internships, industry-sponsored capstone design, and open maker and prototyping spaces that support rapid iteration with faculty and student teams. Proximity to Cincinnati and Dayton puts partners near Fortune 500 headquarters, advanced manufacturing suppliers, and a dense logistics network, enabling frequent site visits and efficient scale-up. Research is supported by competitive federal and state funding, including awards from the National Science Foundation and the National Institutes of Health. A dedicated technology transfer office supports IP, licensing, and startup formation, linking companies to regional commercialization resources.