Bong-yeon Jeong
Ewha Womans University · 環境科学
研究室紹介
Professor Bong-yeon Jeong's research lab specializes in advanced membrane technologies and sustainable water treatment solutions, focusing on the removal and recovery of emerging contaminants and valuable resources from water and wastewater. Key research directions include the development of functional membranes for ammonia recovery, volatile fatty acid extraction, and the advanced degradation of persistent pollutants like PFAS using photo/electrochemical and photocatalytic methods. The lab emphasizes innovative materials design—such as electrically conductive membranes and multifunctional membrane contactors—aimed at achieving energy efficiency, resource recovery, and environmental remediation.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15Per and polyfluoroalkyl substances (PFAS), legacy chemicals used in firefighting and the manufacturing of many industrial and consumer goods, are widely found in groundwater resources, along with other regulated compounds, such as chlorinated solvents. Due to their strong C-F bonds, these molecules are extremely recalcitrant, requiring advanced treatment methods for effective remediation, with hydrated electrons shown to be able to defluorinated these compounds. A combined photo/electrochemical
The growth of mineral crystals on surfaces is a challenge across multiple industrial processes. Membrane-based desalination processes, in particular, are plagued by crystal growth (known as scaling), which restricts the flow of water through the membrane, can cause membrane wetting in membrane distillation, and can lead to the physical destruction of the membrane material. Scaling occurs when supersaturated conditions develop along the membrane surface due to the passage of water through the mem
Ammonia is considered a contaminant to be removed from wastewater. However, ammonia is a valuable commodity chemical used as the primary feedstock for fertilizer manufacturing. Here we describe a simple and low-cost ammonia gas stripping membrane capable of recovering ammonia from wastewater. The material is composed of an electrically conducting porous carbon cloth coupled to a porous hydrophobic polypropylene support, that together form an electrically conductive membrane (ECM). When a cathodi
The current review covers removal of contaminants of emerging concern by membranes in water and wastewater since our much cited review in 2018. This review offers a wide-ranging examination of membrane technologies—in particular, forward osmosis, reverse osmosis, nanofiltration, ultrafiltration, and microfiltration—as potent solutions that can be used to target contaminants of emerging concern (CECs) in water and wastewater treatment. Emphasizing the urgency of preserving water quality amid incr
Recovery of carbon-based resources from waste is a critical need for achieving carbon neutrality and reducing fossil carbon extraction. We demonstrate a new approach for extracting volatile fatty acids (VFAs) using a multifunctional direct heated and pH swing membrane contactor. The membrane is a multilayer laminate composed of a carbon fiber (CF) bound to a hydrophobic membrane and sealed with a layer of polydimethylsiloxane (PDMS); this CF is used as a resistive heater to provide a thermal dri
Research Areas
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