Yonsei University · Environmental Science
이 교수의 연구실은 환경 오염 물질인 미세플라스틱과 중금속의 환경 행동 및 제거 기술에 중점을 두고 있으며, 나노복합재료와 고분자 기반 센서를 활용한 오염물질 정밀 감지 기술 개발도 진행하고 있습니다. 특히, 산업 폐수 및 농업 폐수에서 발생하는 농약, 중금속, 유기오염물질의 제거를 위한 고성능 촉매 및 정제 기술을 연구하고 있습니다. 또한, 환경 친화적인 자원 재활용 기반의 수처리 기술과 지속 가능한 자원 순환 모델 개발도 함께 추진하고 있습니다.
Figures are computed from collected data and may differ slightly.
Microplastics, the microscopic plastics, are fragments of any type of plastic that are being produced today as plastic waste originating from anthropogenic activities. Such microplastics are discharged into the environment, and they enter back into the human body through different means. The microplastics spread in the environment due to environmental factors and the inherent properties of microplastics, such as density, hydrophobicity, and recalcitrance, and then eventually enter the water envi
Heavy metals in food and water sources are potentially harmful to humans. Determination of these pollutants is critical for improving safety. Effective recognition systems are a contemporary challenge; several novel technologies for the quick, easy, selective, and sensitive determination of these compounds are in demand. Metal-organic framework (MOF)-based sensors and biosensors have crucial applications in identifying these potentially harmful substances. Here, we review electrochemical and opt
In this study, ZnCr layered double hydroxide (LDH), ZnCr LDH/carbon nanotube (CNT), and ZnCr LDH/Biochar (BC) were synthesized and characterized by various analyses. The successful synthesis and the great crystallinity of the samples were consented by XRD analysis. SEM and TEM were applied to study the morphology of the synthesized samples. The simultaneous presence of C, Zn, and Cr elements was well confirmed by EDX and dot mapping analyses demonstrating the successful preparation of nanocompos
Microplastics are regarded as vectors of hazardous contaminants due to their ability to adsorb xenobiotic chemicals. This has led to increased interest in the risk of previously neglected microplastic contaminants in the aquatic environment. Here, we assessed the possibility of transferring chemical contaminants to microplastics by evaluating the adsorption performance of (in)organic pollutants on various types of microplastics (polystyrene, PS; polyethylene terephthalate, PET; high-density poly
Metribuzin is an herbicide that easily contaminates ground and surface water. Herein, La-doped ZnFe layered double hydroxide (LDH) was synthesized for the first time and used for the degradation of metribuzin via ultrasonic (US) assisted peroxydisulfate (PDS) activation. The synthesized LDH had a lamellar structure, an average thickness of 26 nm, and showed mesoporous characteristics, including specific surface area 110.93 m<sup>2</sup> g<sup>-1</sup>, pore volume 0.27 cm<sup>3</sup> g<sup>-1</s
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