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300MW급 IGCC를 위한 건식 분류층 석탄 가스화 공정의 동적 상태 모사
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  • 300MW급 IGCC를 위한 건식 분류층 석탄 가스화 공정의 동적 상태 모사
저자명
김미영,주용진,최인규,이중원,Kim. Mi-Yeong,Joo. Yong-Jin,Choi. In-Kyu,Lee. Joong-Won
간행물명
한국수소 및 신에너지학회 논문집
권/호정보
2010년|21권 5호|pp.460-469 (10 pages)
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한국수소및신에너지학회
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

To develop coal gasfication system, many studies have been actively conducted to describe the simulation of steady state. Now, it is necessary to study the gasification system not only in steady state but also in dynamic state to elucidate abnormal condition such as start-up, shut-down, disturbance, and develop control logic. In this study, a model was proposed with process simulation in dynamic state being conducted using a chemical process simulation tool, where a heat and mass transfer model in the gasifier is incorporated, The proposed model was verified by comparison of the results of the simulation with those available from NETL (National Energy Technology Laboratory) report under steady state condition. The simulation results were that the coal gas efficiency was 80.7%, gas thermal efficiency was 95.4%, which indicated the error was under 1 %. Also, the compositions of syngas were similar to those of the NETL report. Controlled variables of the proposed model was verified by increasing oxygen flow rate to gasifier in order to validate the dynamic state of the system. As a result, trends of major process variables were resonable when oxygen flow rate increased by 5% from the steady state value. Coal flow rate to gasifier and quench gas flow rate were increased, and flow rate of liquid slag was also increased. The proposed model in this study is able to be used for the prediction of gasification of various coals and dynamic analysis of coal gasification.