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고재욱 翰林大學校 泰東古典硏究所 1993 泰東古典硏究 Vol.10 No.-
지금까지 우리는 김정희의 실학사상 속에 나타난 학문관과 理氣觀을 그가 영향 받은 네 사람의 청대 고증학자와의 관계 속에서 살펴보았다. 그는 실학사상의 제3기 실사구시파의 대표적 인물로서 우리는 그의 사상 속에서는 경세치용이나 이용후생 사상은 찾아볼 수 없었다. 그러나 비록 그에게는 청대 고증학의 영향으로 인해 학문 방법상 절충적 성격이 나타나긴 하지만 그는 북학파를 중심으로 한 선배 실학자들의 실증적 연구방법을 계승하고 그를 통해 金右, 典故, 書藝 등에 격조 높은 학문성을 보여 주었다. 이 점에서 김정희는 조선후기 실학사에서 근대적 학문 태도를 뿌리내리는데 큰 공적을 이루었다고 할 수 있다. 더욱이 우리는 그의 학문은 방법면에서는 고증학적 비중이 크지만 학문의 목적은 고증학에만 국한되지 않고 非正統志向에 의한 주자학 극복의 의지를 바탕으로 하여 원시 유학의 실제성과 윤리성을 추구하려 했던 점에서 실사구시파로서의 의의를 찾을 수 있을 것이다.
고영민,이내우,최재욱,우희철,신학기 한국산업안전학회 2002 한국안전학회지 Vol.17 No.1
Among the disposal techniques of inorganic wastewater sludges from industries, most of sludges were dealed with buring underground inefficiently. But we have tried to recycle the resources that exhausted inorganic sludges were properly blended to certain ratioes to make lightweight aggregate, that means manufacturing of it can be possible through blending of various components, drying, sintering, cooling and crushing to certain sizes that are needed by consumers. As disposal method of inorganic wastewater sludge is changed to environmentally fraternative method, this method could be very useful to make lightweight aggregates for decoration of building and the other so many purposes of those usages. That could be economically useful due to expected income for buring costs of ordinary disposal method from industries and sales income after manufacturing it. The second important profit is saving foreign currency from purchasing self-developed lightweight aggregate instead of importing expensive foreign product. This product will be also very impressive to user because of the fraternative lightweight to be composed of apatite structure that is important part of human body.
중대산업사고 예방을 위한 종합위험관리체제(IRMS) 구축에 관한 연구
권혁면,성대현,김재현,임대식,김기영,편무욱,문일,고재욱,이영순,윤인섭 한국안전학회 2003 한국안전학회지 Vol.18 No.3
The Process Safety Management (PSM) by the Law of Industry, Safety and Health has been performed for preventing major accidents of chemical plants since 1996. In terms of preventing chemical accidents more precisely, it is essential to develop a tool for quantitative risk assessment. For this, KOSHA (Korea Occupational Safety and Health Agency) developed an Integrated Risk Management System (IRMS) . The system is designed to assimilate data on chemical plant hazards from external database, to integrate these data with location information (topographic and demographic), and to make them user-friendly accessible. The system consists of several main functions: display of five major Korean petrochemical complex layout, display of equipment layout with its information utilizing the external database, zonation of the hazard effected area with consequence analyses, the most probable accident scenario generation, accident/incident database and calculation of frequency of accident using equipment reliability database, etc. The highlight of IRMS is to provide the risk contours using GIS(Geographical Information System) technology. IRMS is intended to manage hazardous installation more systematically and effectively, to reduce the number of accident remarkably, further minimizing production loss in the plant. The system is now under application to about 500 PSM sites as well as and emergency authorities in Korea by KOSHA (Korea Occupational Safety and Health Agency)
Risk Based Inspection 기법을 이용한 화학공장의 안전성 향상에 관한 연구
노용해,유진환,서재민,임차순,고재욱 한국산업안전학회 2002 한국안전학회지 Vol.17 No.3
The RBI technique proposed by API is composed of three steps. The qualitative RBI method can be used for the purpose of screening the components with high risk. And, the quantitative RBI method employs complex risk evaluation model for predicting component risk in a quantitative manner. The inspection program can be optimized based on the results obtained by these RBI technique. The forementioned RBI technique has been applied to a common hydrodesulfurizer unit and the technique is critically evaluated for studying its benefits and limitations, which is the main issue of this thesis. It's conducted that the RBI method can provide a method for defining and measuring the component risk, and also provide a powerful tool for managing many of the important elements of a process plant.