정지훈 교수
Jihoon Chung
한양대학교 산공학과 · 공학
연구실 소개
정지훈 교수의 연구실은 고성능 자석 소재 및 청정 에너지 기술을 핵심으로 연구를 진행하고 있습니다. 특히 높은 자화율을 가진 Nd₂Fe₁₄B 희토류 자기소재의 저에너지 합성 공정과, 수소 연소를 통한 가스터빈 시스템의 효율성 향상 기술에 초점을 맞추고 있으며, 연료전지와 마이크로 가스터빈을 융합한 고효율 하이브리드 전력 시스템 및 탄소 포집 기술의 통합도 함께 연구하고 있습니다. 이는 기후 변화 대응을 위한 지속 가능한 에너지 솔루션 개발에 기여하고자 하는 목표를 담고 있습니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
15The Nd2Fe14B alloy has been successfully synthesized by nitrate-citrate auto-combustion followed by the reduction and diffusion process with low energy consumption. H3BO3, Fe(NO3)3·9H2O, and Nd(NO3)3·6H2O were used as precursors and citric acid was used as the chelating ligand of metal ions. Ammonia water was used to adjust pH to 7. CaH2 was used as a reducing agent for the reduction and diffusion process. NdFeO3 and Fe2O3 were produced during auto-combustion of gel. The combustion process of th
Nd<sub>2</sub>Fe<sub>14</sub>B hard phase magnetic nanoparticles were successfully synthesized using a chemical synthesis route followed by a reduction and diffusion process without consuming a large amount of energy.
The effect of hydrogen co-firing on the performance and operating conditions of gas turbines (GTs) and gas turbine combined cycles (GTCCs) was investigated. Two operating scenarios were applied, and off-design analyses were conducted for three GTs with different turbine inlet temperatures (TITs). In the first scenario, the TIT was kept constant. As the hydrogen co-firing ratio increases, the pressure ratio of GT increased, and the power outputs of both GT and GTCC increased. With 100 % hydrogen
The demand for clean energy continues to increase as the human society becomes more aware of environmental challenges such as global warming. Various power systems based on high-temperature fuel cells have been proposed, especially hybrid systems combining a fuel cell with a gas turbine (GT), and research on carbon capture and storage (CCS) technology to prevent the emission of greenhouse gases is already underway. This study suggests a new method to innovatively enhance the efficiency of a molt
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