Jong-soo Choi
Ewha Womans University · 環境科学
研究室紹介
Professor Jong-soo Choi's research lab specializes in environmental remediation and sustainable materials development, focusing on advanced adsorbents and treatment technologies for water and air pollution control. Key research directions include the synthesis and application of nanomaterials—such as zero-valent iron nanoparticles and MXenes—for the removal of hazardous pollutants like dyes, explosives (TNT, RDX), radionuclides (Th(IV), U(VI)), and airborne dust particles. The lab also investigates low-impact urban drainage systems and innovative dust suppression techniques using biopolymers, emphasizing practical environmental engineering solutions. Their work integrates materials science, environmental chemistry, and hydrological modeling to address critical challenges in water safety, air quality, and nuclear waste management.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15The presence of dyes in waterbodies poses severe problems in human and aquatic creatures, and the development of treatment methods for the removal of these pollutants is of utmost importance. This research study investigates the elimination of methylene blue (MB) from an aqueous solution using zero-valent iron nanoparticles synthesized from sweet lime pulp waste (nZVISLP). The purity, chemical composition, and crystalline size of nZVISLP were investigated using microscopic and spectroscopic stud
An analysis of the impact of a low impact development (LID) on runoff was performed using a Storm Water Management Model 5 (SWMM5)-LID model. The SWMM5 package has been developed to facilitate the analysis of the hydrologic impacts of LID facilities. Continuous simulation of urban stormwater runoff from the district which included the LID design was conducted. In order to examine the impact of runoff in the LID district the first, second and third highest ranked flood events over the past 38 yea
Environmental context Explosive organic compounds such as 2,4,6-trinitrotoluene (TNT) and hexahydro-1,3,5-trinitro-1,3,5-triazine (RDX) are major constituents of ammunition materials. These compounds are of environmental concern because they can have a significant impact on ecosystems and humans. Through investigations of adsorption kinetics, isotherms and thermodynamics, we demonstrate the suitability of pseudographitic carbon for removing TNT and RDX from groundwater, and additionally confirm